-
1
-
-
0021891869
-
The mitochondrial electron transport chain and oxidative phosphorylation system
-
Hatefi Y. The mitochondrial electron transport chain and oxidative phosphorylation system. Annu. Rev. Biochem. 1985, 54:1015-1069.
-
(1985)
Annu. Rev. Biochem.
, vol.54
, pp. 1015-1069
-
-
Hatefi, Y.1
-
2
-
-
0025343842
-
Regulation of oxidative phosphorylation in the mammalian cell
-
Balaban R.S. Regulation of oxidative phosphorylation in the mammalian cell. Am. J. Physiol. Cell Physiol. 1990, 258:C377-C389.
-
(1990)
Am. J. Physiol. Cell Physiol.
, vol.258
-
-
Balaban, R.S.1
-
4
-
-
0033060854
-
The mitochondrial genome: structure, transcription, translation and replication
-
Taanman J.W. The mitochondrial genome: structure, transcription, translation and replication. Biochim. Biophys. Acta Bioenerg. 1999, 1410:103-123.
-
(1999)
Biochim. Biophys. Acta Bioenerg.
, vol.1410
, pp. 103-123
-
-
Taanman, J.W.1
-
5
-
-
23844558266
-
A mitochondrial paradigm of metabolic and degenerative diseases, aging, and cancer: a dawn for evolutionary medicine
-
Wallace D.C. A mitochondrial paradigm of metabolic and degenerative diseases, aging, and cancer: a dawn for evolutionary medicine. Annu. Rev. Genet. 2005, 39:359-407.
-
(2005)
Annu. Rev. Genet.
, vol.39
, pp. 359-407
-
-
Wallace, D.C.1
-
6
-
-
33845744837
-
Initiation and beyond: multiple functions of the human mitochondrial transcription machinery
-
Bonawitz N.D., Clayton D.A., Shadel G.S. Initiation and beyond: multiple functions of the human mitochondrial transcription machinery. Mol. Cell 2006, 24:813-825.
-
(2006)
Mol. Cell
, vol.24
, pp. 813-825
-
-
Bonawitz, N.D.1
Clayton, D.A.2
Shadel, G.S.3
-
7
-
-
42049114034
-
Transcriptional paradigms in mammalian mitochondrial biogenesis and function
-
Scarpulla R.C. Transcriptional paradigms in mammalian mitochondrial biogenesis and function. Physiol. Rev. 2008, 88:611-638.
-
(2008)
Physiol. Rev.
, vol.88
, pp. 611-638
-
-
Scarpulla, R.C.1
-
8
-
-
67949123336
-
Biogenesis of mitochondrial membrane proteins
-
Becker T., Gebert M., Pfanner N., van der L.M. Biogenesis of mitochondrial membrane proteins. Curr. Opin. Cell Biol. 2009, 21:484-493.
-
(2009)
Curr. Opin. Cell Biol.
, vol.21
, pp. 484-493
-
-
Becker, T.1
Gebert, M.2
Pfanner, N.3
van der, L.M.4
-
9
-
-
56349124605
-
Assembly of the oxidative phosphorylation system in humans: what we have learned by studying its defects
-
Fernandez-Vizarra E., Tiranti V., Zeviani M. Assembly of the oxidative phosphorylation system in humans: what we have learned by studying its defects. Biochim. Biophys. Acta 2009, 1793:200-211.
-
(2009)
Biochim. Biophys. Acta
, vol.1793
, pp. 200-211
-
-
Fernandez-Vizarra, E.1
Tiranti, V.2
Zeviani, M.3
-
10
-
-
0024278674
-
Postnatal development of rat liver mitochondrial functions
-
Valcarce C., Navarrete R.M., Encabo P., Loeches E., Satrustegui J., Cuezva J.M. Postnatal development of rat liver mitochondrial functions. J. Biol. Chem. 1988, 263:7767-7775.
-
(1988)
J. Biol. Chem.
, vol.263
, pp. 7767-7775
-
-
Valcarce, C.1
Navarrete, R.M.2
Encabo, P.3
Loeches, E.4
Satrustegui, J.5
Cuezva, J.M.6
-
11
-
-
0014198263
-
Biochemical adaptations in muscle. Effects of exercise on mitochondrial oxygen uptake and respiratory enzyme activity in skeletal muscle
-
Holloszy J.O. Biochemical adaptations in muscle. Effects of exercise on mitochondrial oxygen uptake and respiratory enzyme activity in skeletal muscle. J. Biol. Chem. 1967, 242:2278-2282.
-
(1967)
J. Biol. Chem.
, vol.242
, pp. 2278-2282
-
-
Holloszy, J.O.1
-
12
-
-
0023664063
-
Adaptation of skeletal muscle to increased contractile activity
-
Williams R.S., Garcia-Moll M., Mellor J., Salmons S., Harlan W. Adaptation of skeletal muscle to increased contractile activity. J. Biol. Chem. 1987, 262:2764-2767.
-
(1987)
J. Biol. Chem.
, vol.262
, pp. 2764-2767
-
-
Williams, R.S.1
Garcia-Moll, M.2
Mellor, J.3
Salmons, S.4
Harlan, W.5
-
13
-
-
0001260029
-
The action of thyroid hormones at the cell level
-
Tata J.R., Ernster L., Lindberg O., Arrhenius E., Pederson S., Hedman R. The action of thyroid hormones at the cell level. Biochem. J. 1963, 86:408-428.
-
(1963)
Biochem. J.
, vol.86
, pp. 408-428
-
-
Tata, J.R.1
Ernster, L.2
Lindberg, O.3
Arrhenius, E.4
Pederson, S.5
Hedman, R.6
-
14
-
-
0016636764
-
Effect of thyroid hormone administration on synthesis and degradation of cytochrome c in rat liver
-
Booth F.W., Holloszy J.O. Effect of thyroid hormone administration on synthesis and degradation of cytochrome c in rat liver. Arch. Biochem. Biophys. 1975, 167:674-677.
-
(1975)
Arch. Biochem. Biophys.
, vol.167
, pp. 674-677
-
-
Booth, F.W.1
Holloszy, J.O.2
-
15
-
-
0034668852
-
Mitochondrial uncoupling proteins: from mitochondria to the regulation of energy balance
-
Ricquier D., Bouillaud F. Mitochondrial uncoupling proteins: from mitochondria to the regulation of energy balance. J. Physiol. 2000, 529:3-10.
-
(2000)
J. Physiol.
, vol.529
, pp. 3-10
-
-
Ricquier, D.1
Bouillaud, F.2
-
16
-
-
0347989317
-
Brown adipose tissue: function and physiological significance
-
Cannon B., Nedergaard J. Brown adipose tissue: function and physiological significance. Physiol. Rev. 2004, 84:277-359.
-
(2004)
Physiol. Rev.
, vol.84
, pp. 277-359
-
-
Cannon, B.1
Nedergaard, J.2
-
17
-
-
33645011201
-
Nuclear control of respiratory gene expression in mammalian cells
-
Scarpulla R.C. Nuclear control of respiratory gene expression in mammalian cells. J. Cell. Biochem. 2006, 97:673-683.
-
(2006)
J. Cell. Biochem.
, vol.97
, pp. 673-683
-
-
Scarpulla, R.C.1
-
18
-
-
1542373685
-
Transcriptional regulatory circuits controlling mitochondrial biogenesis and function
-
Kelly D.P., Scarpulla R.C. Transcriptional regulatory circuits controlling mitochondrial biogenesis and function. Genes Dev. 2004, 18:357-368.
-
(2004)
Genes Dev.
, vol.18
, pp. 357-368
-
-
Kelly, D.P.1
Scarpulla, R.C.2
-
19
-
-
26444545461
-
Is nuclear respiratory factor 2 a master transcriptional coordinator for all ten nuclear-encoded cytochrome c oxidase subunits in neurons?
-
Ongwijitwat S., Wong-Riley M.T. Is nuclear respiratory factor 2 a master transcriptional coordinator for all ten nuclear-encoded cytochrome c oxidase subunits in neurons?. Gene 2005, 360:65-77.
-
(2005)
Gene
, vol.360
, pp. 65-77
-
-
Ongwijitwat, S.1
Wong-Riley, M.T.2
-
20
-
-
41249086496
-
Nuclear respiratory factor 1 regulates all ten nuclear-encoded subunits of cytochrome c oxidase in neurons
-
Dhar S.S., Ongwijitwat S., Wong-Riley M.T. Nuclear respiratory factor 1 regulates all ten nuclear-encoded subunits of cytochrome c oxidase in neurons. J. Biol. Chem. 2008, 283:3120-3129.
-
(2008)
J. Biol. Chem.
, vol.283
, pp. 3120-3129
-
-
Dhar, S.S.1
Ongwijitwat, S.2
Wong-Riley, M.T.3
-
21
-
-
0028049078
-
Differential regulation of respiratory chain subunits by a CREB-dependent signal transduction pathway. Role of cyclic AMP in cytochrome c and COXIV gene expression
-
Gopalakrishnan L., Scarpulla R.C. Differential regulation of respiratory chain subunits by a CREB-dependent signal transduction pathway. Role of cyclic AMP in cytochrome c and COXIV gene expression. J. Biol. Chem. 1994, 269:105-113.
-
(1994)
J. Biol. Chem.
, vol.269
, pp. 105-113
-
-
Gopalakrishnan, L.1
Scarpulla, R.C.2
-
22
-
-
0034724861
-
Sequential serum-dependent activation of CREB and NRF-1 leads to enhanced mitochondrial respiration through the induction of cytochrome c
-
Herzig R.P., Scacco S., Scarpulla R.C. Sequential serum-dependent activation of CREB and NRF-1 leads to enhanced mitochondrial respiration through the induction of cytochrome c. J. Biol. Chem. 2000, 275:13134-13141.
-
(2000)
J. Biol. Chem.
, vol.275
, pp. 13134-13141
-
-
Herzig, R.P.1
Scacco, S.2
Scarpulla, R.C.3
-
23
-
-
33749630419
-
PGC-1-related coactivator (PRC): immediate early expression and characterization of a CREB/NRF-1 binding domain associated with cytochrome c promoter occupancy and respiratory growth
-
Vercauteren K., Pasko R.A., Gleyzer N., Marino V.M., Scarpulla R.C. PGC-1-related coactivator (PRC): immediate early expression and characterization of a CREB/NRF-1 binding domain associated with cytochrome c promoter occupancy and respiratory growth. Mol. Cell. Biol. 2006, 26:7409-7419.
-
(2006)
Mol. Cell. Biol.
, vol.26
, pp. 7409-7419
-
-
Vercauteren, K.1
Pasko, R.A.2
Gleyzer, N.3
Marino, V.M.4
Scarpulla, R.C.5
-
24
-
-
0031041464
-
Regulation of murine cytochrome oxidase Vb gene expression in different tissues and during myogenesis-role of a YY-1 factor-binding negative enhancer
-
Basu A., Lenka N., Mullick J., Avadhani N.G. Regulation of murine cytochrome oxidase Vb gene expression in different tissues and during myogenesis-role of a YY-1 factor-binding negative enhancer. J. Biol. Chem. 1997, 272:5899-5908.
-
(1997)
J. Biol. Chem.
, vol.272
, pp. 5899-5908
-
-
Basu, A.1
Lenka, N.2
Mullick, J.3
Avadhani, N.G.4
-
25
-
-
0030899375
-
Structural organization and promoter analysis of the bovine cytochrome c oxidase subunit VIIc gene-a functional role for YY1
-
Seelan R.S., Grossman L.I. Structural organization and promoter analysis of the bovine cytochrome c oxidase subunit VIIc gene-a functional role for YY1. J. Biol. Chem. 1997, 272:10175-10181.
-
(1997)
J. Biol. Chem.
, vol.272
, pp. 10175-10181
-
-
Seelan, R.S.1
Grossman, L.I.2
-
26
-
-
0028799005
-
Structural characterization and regulatory element analysis of the heart isoform of cytochrome c oxidase VIa
-
Wan B., Moreadith R.W. Structural characterization and regulatory element analysis of the heart isoform of cytochrome c oxidase VIa. J. Biol. Chem. 1995, 270:26433-26440.
-
(1995)
J. Biol. Chem.
, vol.270
, pp. 26433-26440
-
-
Wan, B.1
Moreadith, R.W.2
-
27
-
-
45549087482
-
Nuclear respiratory factor 1 controls myocyte enhancer factor 2A transcription to provide a mechanism for coordinate expression of respiratory chain subunits
-
Ramachandran B., Yu G., Gulick T. Nuclear respiratory factor 1 controls myocyte enhancer factor 2A transcription to provide a mechanism for coordinate expression of respiratory chain subunits. J. Biol. Chem. 2008, 283:11935-11946.
-
(2008)
J. Biol. Chem.
, vol.283
, pp. 11935-11946
-
-
Ramachandran, B.1
Yu, G.2
Gulick, T.3
-
28
-
-
4644231528
-
Nuclear receptor signaling and cardiac energetics
-
Huss J.M., Kelly D.P. Nuclear receptor signaling and cardiac energetics. Circ. Res. 2004, 95:568-578.
-
(2004)
Circ. Res.
, vol.95
, pp. 568-578
-
-
Huss, J.M.1
Kelly, D.P.2
-
29
-
-
2342592545
-
The estrogen-related receptor α (ERRα) functions in PPARgamma coactivator 1α (PGC-1α)-induced mitochondrial biogenesis
-
Schreiber S.N., Emter R., Hock M.B., Knutti D., Cardenas J., Podvinec M., Oakeley E.J., Kralli A. The estrogen-related receptor α (ERRα) functions in PPARgamma coactivator 1α (PGC-1α)-induced mitochondrial biogenesis. Proc. Natl. Acad. Sci. U. S. A. 2004, 101:6472-6477.
-
(2004)
Proc. Natl. Acad. Sci. U. S. A.
, vol.101
, pp. 6472-6477
-
-
Schreiber, S.N.1
Emter, R.2
Hock, M.B.3
Knutti, D.4
Cardenas, J.5
Podvinec, M.6
Oakeley, E.J.7
Kralli, A.8
-
30
-
-
2342477730
-
Errα and Gabpa/b specify PGC-1α-dependent oxidative phosphorylation gene expression that is altered in diabetic muscle
-
Mootha V.K., Handschin C., Arlow D., Xie X.H., St Pierre J., Sihag S., Yang W.L., Altshuler D., Puigserver P., Patterson N., Willy P.J., Schulman I.G., Heyman R.A., Lander E.S., Spiegelman B.M. Errα and Gabpa/b specify PGC-1α-dependent oxidative phosphorylation gene expression that is altered in diabetic muscle. Proc. Natl. Acad. Sci. U. S. A. 2004, 101:6570-6575.
-
(2004)
Proc. Natl. Acad. Sci. U. S. A.
, vol.101
, pp. 6570-6575
-
-
Mootha, V.K.1
Handschin, C.2
Arlow, D.3
Xie, X.H.4
St Pierre, J.5
Sihag, S.6
Yang, W.L.7
Altshuler, D.8
Puigserver, P.9
Patterson, N.10
Willy, P.J.11
Schulman, I.G.12
Heyman, R.A.13
Lander, E.S.14
Spiegelman, B.M.15
-
31
-
-
53849088227
-
Transcriptional control of energy homeostasis by the estrogen-related receptors
-
Giguere V. Transcriptional control of energy homeostasis by the estrogen-related receptors. Endocr. Rev. 2008, 29:677-696.
-
(2008)
Endocr. Rev.
, vol.29
, pp. 677-696
-
-
Giguere, V.1
-
32
-
-
0037439054
-
C-MYC apoptotic function is mediated by NRF-1 target genes
-
Morrish F., Giedt C., Hockenbery D. C-MYC apoptotic function is mediated by NRF-1 target genes. Genes Dev. 2003, 17:240-255.
-
(2003)
Genes Dev.
, vol.17
, pp. 240-255
-
-
Morrish, F.1
Giedt, C.2
Hockenbery, D.3
-
33
-
-
21744442902
-
Myc stimulates nuclearly encoded mitochondrial genes and mitochondrial biogenesis
-
Li F., Wang Y., Zeller K.I., Potter J.J., Wonsey D.R., O'Donnell K.A., Kim J.W., Yustein J.T., Lee L.A., Dang C.V. Myc stimulates nuclearly encoded mitochondrial genes and mitochondrial biogenesis. Mol. Cell. Biol. 2005, 25:6225-6234.
-
(2005)
Mol. Cell. Biol.
, vol.25
, pp. 6225-6234
-
-
Li, F.1
Wang, Y.2
Zeller, K.I.3
Potter, J.J.4
Wonsey, D.R.5
O'Donnell, K.A.6
Kim, J.W.7
Yustein, J.T.8
Lee, L.A.9
Dang, C.V.10
-
34
-
-
34247614521
-
HIF-1 inhibits mitochondrial biogenesis and cellular respiration in VHL-deficient renal cell carcinoma by repression of C-MYC activity
-
Zhang H., Gao P., Fukuda R., Kumar G., Krishnamachary B., Zeller K.I., Dang C.V., Semenza G.L. HIF-1 inhibits mitochondrial biogenesis and cellular respiration in VHL-deficient renal cell carcinoma by repression of C-MYC activity. Cancer Cell 2007, 11:407-420.
-
(2007)
Cancer Cell
, vol.11
, pp. 407-420
-
-
Zhang, H.1
Gao, P.2
Fukuda, R.3
Kumar, G.4
Krishnamachary, B.5
Zeller, K.I.6
Dang, C.V.7
Semenza, G.L.8
-
35
-
-
0029061518
-
Identification of the promoter of the human von Hippel-Lindau disease tumor suppressor gene
-
Kuzmin I., Duh F.M., Latif F., Geil L., Zbar B., Lerman M.I. Identification of the promoter of the human von Hippel-Lindau disease tumor suppressor gene. Oncogene 1995, 10:2185-2194.
-
(1995)
Oncogene
, vol.10
, pp. 2185-2194
-
-
Kuzmin, I.1
Duh, F.M.2
Latif, F.3
Geil, L.4
Zbar, B.5
Lerman, M.I.6
-
36
-
-
0031011211
-
A mouse model for mitochondrial myopathy and cardiomyopathy resulting from a deficiency in the heart/muscle isoform of the adenine nucleotide translocator
-
Graham B.H., Waymire K.G., Cottrell B., Trounce I.A., MacGregor G.R., Wallace D.C. A mouse model for mitochondrial myopathy and cardiomyopathy resulting from a deficiency in the heart/muscle isoform of the adenine nucleotide translocator. Nat. Genet. 1997, 16:226-234.
-
(1997)
Nat. Genet.
, vol.16
, pp. 226-234
-
-
Graham, B.H.1
Waymire, K.G.2
Cottrell, B.3
Trounce, I.A.4
MacGregor, G.R.5
Wallace, D.C.6
-
37
-
-
0033553435
-
Up-regulation of nuclear and mitochondrial genes in the skeletal muscle of mice lacking the heart muscle isoform of the adenine nucleotide translocator
-
Murdock D.G., Boone B.E., Esposito L.A., Wallace D.C. Up-regulation of nuclear and mitochondrial genes in the skeletal muscle of mice lacking the heart muscle isoform of the adenine nucleotide translocator. J. Biol. Chem. 1999, 274:14429-14433.
-
(1999)
J. Biol. Chem.
, vol.274
, pp. 14429-14433
-
-
Murdock, D.G.1
Boone, B.E.2
Esposito, L.A.3
Wallace, D.C.4
-
38
-
-
56349140990
-
Mouse models of oxidative phosphorylation defects: powerful tools to study the pathobiology of mitochondrial diseases
-
Torraco A., Diaz F., Vempati U.D., Moraes C.T. Mouse models of oxidative phosphorylation defects: powerful tools to study the pathobiology of mitochondrial diseases. Biochim. Biophys. Acta 2009, 1793:171-180.
-
(2009)
Biochim. Biophys. Acta
, vol.1793
, pp. 171-180
-
-
Torraco, A.1
Diaz, F.2
Vempati, U.D.3
Moraes, C.T.4
-
39
-
-
0031930319
-
Mitochondrial transcription factor A is necessary for mtDNA maintenance and embryogenesis in mice
-
Larsson N.G., Wang J.M., Wilhelmsson H., Oldfors A., Rustin P., Lewandoski M., Barsh G.S., Clayton D.A. Mitochondrial transcription factor A is necessary for mtDNA maintenance and embryogenesis in mice. Nat. Genet. 1998, 18:231-236.
-
(1998)
Nat. Genet.
, vol.18
, pp. 231-236
-
-
Larsson, N.G.1
Wang, J.M.2
Wilhelmsson, H.3
Oldfors, A.4
Rustin, P.5
Lewandoski, M.6
Barsh, G.S.7
Clayton, D.A.8
-
40
-
-
26444432919
-
Mitochondrial DNA polymerase γ is essential for mammalian embryogenesis
-
Hance N., Ekstrand M.I., Trifunovic A. Mitochondrial DNA polymerase γ is essential for mammalian embryogenesis. Hum. Mol. Genet. 2005, 14:1775-1783.
-
(2005)
Hum. Mol. Genet.
, vol.14
, pp. 1775-1783
-
-
Hance, N.1
Ekstrand, M.I.2
Trifunovic, A.3
-
41
-
-
34447539564
-
MTERF3 is a negative regulator of mammalian mtDNA transcription
-
Park C.B., sin-Cayuela J., Camara Y., Shi Y., Pellegrini M., Gaspari M., Wibom R., Hultenby K., Erdjument-Bromage H., Tempst P., Falkenberg M., Gustafsson C.M., Larsson N.G. MTERF3 is a negative regulator of mammalian mtDNA transcription. Cell 2007, 130:273-285.
-
(2007)
Cell
, vol.130
, pp. 273-285
-
-
Park, C.B.1
sin-Cayuela, J.2
Camara, Y.3
Shi, Y.4
Pellegrini, M.5
Gaspari, M.6
Wibom, R.7
Hultenby, K.8
Erdjument-Bromage, H.9
Tempst, P.10
Falkenberg, M.11
Gustafsson, C.M.12
Larsson, N.G.13
-
42
-
-
63449105579
-
Methylation of 12S rRNA is necessary for in vivo stability of the small subunit of the mammalian mitochondrial ribosome
-
Metodiev M.D., Lesko N., Park C.B., Camara Y., Shi Y., Wibom R., Hultenby K., Gustafsson C.M., Larsson N.G. Methylation of 12S rRNA is necessary for in vivo stability of the small subunit of the mammalian mitochondrial ribosome. Cell Metab. 2009, 9:386-397.
-
(2009)
Cell Metab.
, vol.9
, pp. 386-397
-
-
Metodiev, M.D.1
Lesko, N.2
Park, C.B.3
Camara, Y.4
Shi, Y.5
Wibom, R.6
Hultenby, K.7
Gustafsson, C.M.8
Larsson, N.G.9
-
43
-
-
0032924872
-
Dilated cardiomyopathy and atrioventricular conduction blocks induced by heart-specific inactivation of mitochondrial DNA gene expression
-
Wang J., Wilhelmsson H., Graff C., Li H., Oldfors A., Rustin P., Bruning J.C., Kahn C.R., Clayton D.A., Barsh G.S., Thoren P., Larsson N.-G. Dilated cardiomyopathy and atrioventricular conduction blocks induced by heart-specific inactivation of mitochondrial DNA gene expression. Nat. Genet. 1999, 21:133-137.
-
(1999)
Nat. Genet.
, vol.21
, pp. 133-137
-
-
Wang, J.1
Wilhelmsson, H.2
Graff, C.3
Li, H.4
Oldfors, A.5
Rustin, P.6
Bruning, J.C.7
Kahn, C.R.8
Clayton, D.A.9
Barsh, G.S.10
Thoren, P.11
Larsson, N.-G.12
-
44
-
-
0035169827
-
Mitochondrial DNA instability and peri-implantation lethality associated with targeted disruption of nuclear respiratory factor 1 in mice
-
Huo L., Scarpulla R.C. Mitochondrial DNA instability and peri-implantation lethality associated with targeted disruption of nuclear respiratory factor 1 in mice. Mol. Cell. Biol. 2001, 21:644-654.
-
(2001)
Mol. Cell. Biol.
, vol.21
, pp. 644-654
-
-
Huo, L.1
Scarpulla, R.C.2
-
45
-
-
2942709643
-
The ETS transcription factor GABPα is essential for early embryogenesis
-
Ristevski S., O'Leary D.A., Thornell A.P., Owen M.J., Kola I., Hertzog P.J. The ETS transcription factor GABPα is essential for early embryogenesis. Mol. Cell. Biol. 2004, 24:5844-5849.
-
(2004)
Mol. Cell. Biol.
, vol.24
, pp. 5844-5849
-
-
Ristevski, S.1
O'Leary, D.A.2
Thornell, A.P.3
Owen, M.J.4
Kola, I.5
Hertzog, P.J.6
-
46
-
-
0032880120
-
Targeted disruption of mouse yin yang 1 transcription factor results in peri-implantation lethality
-
Donohoe M.E., Zhang X., McGinnis L., Biggers J., Li E., Shi Y. Targeted disruption of mouse yin yang 1 transcription factor results in peri-implantation lethality. Mol. Cell. Biol. 1999, 19:7237-7244.
-
(1999)
Mol. Cell. Biol.
, vol.19
, pp. 7237-7244
-
-
Donohoe, M.E.1
Zhang, X.2
McGinnis, L.3
Biggers, J.4
Li, E.5
Shi, Y.6
-
47
-
-
0242580188
-
Reduced fat mass in mice lacking orphan nuclear receptor estrogen-related receptor α
-
Luo J., Sladek R., Carrier J., Bader J., Richard D., Giguere V. Reduced fat mass in mice lacking orphan nuclear receptor estrogen-related receptor α. Mol. Biol. Cell 2003, 23:7947-7956.
-
(2003)
Mol. Biol. Cell
, vol.23
, pp. 7947-7956
-
-
Luo, J.1
Sladek, R.2
Carrier, J.3
Bader, J.4
Richard, D.5
Giguere, V.6
-
48
-
-
0028997684
-
Targeted disruption of the alpha isoform of the peroxisome proliferator-activated receptor gene in mice results in abolishment of the pleiotropic effects of peroxisome proliferators
-
Lee S.S., Pineau T., Drago J., Lee E.J., Owens J.W., Kroetz D.L., Fernandez-Salguero P.M., Westphal H., Gonzalez F.J. Targeted disruption of the alpha isoform of the peroxisome proliferator-activated receptor gene in mice results in abolishment of the pleiotropic effects of peroxisome proliferators. Mol. Cell. Biol. 1995, 15:3012-3022.
-
(1995)
Mol. Cell. Biol.
, vol.15
, pp. 3012-3022
-
-
Lee, S.S.1
Pineau, T.2
Drago, J.3
Lee, E.J.4
Owens, J.W.5
Kroetz, D.L.6
Fernandez-Salguero, P.M.7
Westphal, H.8
Gonzalez, F.J.9
-
49
-
-
33846604723
-
Orphan nuclear receptor estrogen-related receptor alpha is essential for adaptive thermogenesis
-
Villena J.A., Hock M.B., Chang W.Y., Barcas J.E., Giguere V., Kralli A. Orphan nuclear receptor estrogen-related receptor alpha is essential for adaptive thermogenesis. Proc. Natl. Acad. Sci. U. S. A. 2007, 104:1418-1423.
-
(2007)
Proc. Natl. Acad. Sci. U. S. A.
, vol.104
, pp. 1418-1423
-
-
Villena, J.A.1
Hock, M.B.2
Chang, W.Y.3
Barcas, J.E.4
Giguere, V.5
Kralli, A.6
-
50
-
-
52249090234
-
ERRalpha: a metabolic function for the oldest orphan
-
Villena J.A., Kralli A. ERRalpha: a metabolic function for the oldest orphan. Trends Endocrinol. Metab. 2008, 19:269-276.
-
(2008)
Trends Endocrinol. Metab.
, vol.19
, pp. 269-276
-
-
Villena, J.A.1
Kralli, A.2
-
51
-
-
0027315650
-
A null c-myc mutation causes lethality before 10.5days of gestation in homozygotes and reduced fertility in heterozygous female mice
-
Davis A.C., Wims M., Spotts G.D., Hann S.R., Bradley A. A null c-myc mutation causes lethality before 10.5days of gestation in homozygotes and reduced fertility in heterozygous female mice. Genes Dev. 1993, 7:671-682.
-
(1993)
Genes Dev.
, vol.7
, pp. 671-682
-
-
Davis, A.C.1
Wims, M.2
Spotts, G.D.3
Hann, S.R.4
Bradley, A.5
-
52
-
-
43549098260
-
The oncogene c-Myc coordinates regulation of metabolic networks to enable rapid cell cycle entry
-
Morrish F., Neretti N., Sedivy J.M., Hockenbery D.M. The oncogene c-Myc coordinates regulation of metabolic networks to enable rapid cell cycle entry. Cell Cycle 2008, 7:1054-1066.
-
(2008)
Cell Cycle
, vol.7
, pp. 1054-1066
-
-
Morrish, F.1
Neretti, N.2
Sedivy, J.M.3
Hockenbery, D.M.4
-
53
-
-
0032549811
-
A cold-inducible coactivator of nuclear receptors linked to adaptive thermogenesis
-
Puigserver P., Wu Z., Park C.W., Graves R., Wright M., Spiegelman B.M. A cold-inducible coactivator of nuclear receptors linked to adaptive thermogenesis. Cell 1998, 92:829-839.
-
(1998)
Cell
, vol.92
, pp. 829-839
-
-
Puigserver, P.1
Wu, Z.2
Park, C.W.3
Graves, R.4
Wright, M.5
Spiegelman, B.M.6
-
54
-
-
37349110355
-
Metabolic adaptations through the PGC-1 alpha and SIRT1 pathways
-
Rodgers J.T., Lerin C., Gerhart-Hines Z., Puigserver P. Metabolic adaptations through the PGC-1 alpha and SIRT1 pathways. FEBS Lett. 2008, 582:46-53.
-
(2008)
FEBS Lett.
, vol.582
, pp. 46-53
-
-
Rodgers, J.T.1
Lerin, C.2
Gerhart-Hines, Z.3
Puigserver, P.4
-
55
-
-
58149240182
-
Minireview: the PGC-1 coactivator networks: chromatin-remodeling and mitochondrial energy metabolism
-
Lin J.D. Minireview: the PGC-1 coactivator networks: chromatin-remodeling and mitochondrial energy metabolism. Mol. Endocrinol. 2009, 23:2-10.
-
(2009)
Mol. Endocrinol.
, vol.23
, pp. 2-10
-
-
Lin, J.D.1
-
56
-
-
0033538473
-
Mechanisms controlling mitochondrial biogenesis and function through the thermogenic coactivator PGC-1
-
Wu Z., Puigserver P., Andersson U., Zhang C., Adelmant G., Mootha V., Troy A., Cinti S., Lowell B., Scarpulla R.C., Spiegelman B.M. Mechanisms controlling mitochondrial biogenesis and function through the thermogenic coactivator PGC-1. Cell 1999, 98:115-124.
-
(1999)
Cell
, vol.98
, pp. 115-124
-
-
Wu, Z.1
Puigserver, P.2
Andersson, U.3
Zhang, C.4
Adelmant, G.5
Mootha, V.6
Troy, A.7
Cinti, S.8
Lowell, B.9
Scarpulla, R.C.10
Spiegelman, B.M.11
-
57
-
-
34247554887
-
Genome-wide orchestration of cardiac functions by the orphan nuclear receptors ERRalpha and gamma
-
Dufour C.R., Wilson B.J., Huss J.M., Kelly D.P., Alaynick W.A., Downes M., Evans R.M., Blanchette M., Giguere V. Genome-wide orchestration of cardiac functions by the orphan nuclear receptors ERRalpha and gamma. Cell Metab. 2007, 5:345-356.
-
(2007)
Cell Metab.
, vol.5
, pp. 345-356
-
-
Dufour, C.R.1
Wilson, B.J.2
Huss, J.M.3
Kelly, D.P.4
Alaynick, W.A.5
Downes, M.6
Evans, R.M.7
Blanchette, M.8
Giguere, V.9
-
58
-
-
37349090082
-
Role of RIP140 in metabolic tissues: connections to disease
-
White R., Morganstein D., Christian M., Seth A., Herzog B., Parker M.G. Role of RIP140 in metabolic tissues: connections to disease. FEBS Lett. 2008, 582:39-45.
-
(2008)
FEBS Lett.
, vol.582
, pp. 39-45
-
-
White, R.1
Morganstein, D.2
Christian, M.3
Seth, A.4
Herzog, B.5
Parker, M.G.6
-
59
-
-
33845948962
-
RIP140 expression is stimulated by estrogen-related receptor alpha during adipogenesis
-
Nichol D., Christian M., Steel J.H., White R., Parker M.G. RIP140 expression is stimulated by estrogen-related receptor alpha during adipogenesis. J. Biol. Chem. 2006, 281:32140-32147.
-
(2006)
J. Biol. Chem.
, vol.281
, pp. 32140-32147
-
-
Nichol, D.1
Christian, M.2
Steel, J.H.3
White, R.4
Parker, M.G.5
-
60
-
-
31044432605
-
Suppression of oxidative metabolism and mitochondrial biogenesis by the transcriptional corepressor RIP140 in mouse adipocytes
-
Powelka A.M., Seth A., Virbasius J.V., Kiskinis E., Nicoloro S.M., Guilherme A., Tang X., Straubhaar J., Cherniack A.D., Parker M.G., Czech M.P. Suppression of oxidative metabolism and mitochondrial biogenesis by the transcriptional corepressor RIP140 in mouse adipocytes. J. Clin. Invest. 2006, 116:125-136.
-
(2006)
J. Clin. Invest.
, vol.116
, pp. 125-136
-
-
Powelka, A.M.1
Seth, A.2
Virbasius, J.V.3
Kiskinis, E.4
Nicoloro, S.M.5
Guilherme, A.6
Tang, X.7
Straubhaar, J.8
Cherniack, A.D.9
Parker, M.G.10
Czech, M.P.11
-
61
-
-
55849147331
-
A functional interaction between RIP140 and PGC-1alpha regulates the expression of the lipid droplet protein CIDEA
-
Hallberg M., Morganstein D.L., Kiskinis E., Shah K., Kralli A., Dilworth S.M., White R., Parker M.G., Christian M. A functional interaction between RIP140 and PGC-1alpha regulates the expression of the lipid droplet protein CIDEA. Mol. Cell. Biol. 2008, 28:6785-6795.
-
(2008)
Mol. Cell. Biol.
, vol.28
, pp. 6785-6795
-
-
Hallberg, M.1
Morganstein, D.L.2
Kiskinis, E.3
Shah, K.4
Kralli, A.5
Dilworth, S.M.6
White, R.7
Parker, M.G.8
Christian, M.9
-
62
-
-
0033803048
-
Peroxisome proliferator-activated receptor γ coactivator-1 promotes cardiac mitochondrial biogenesis
-
Lehman J.J., Barger P.M., Kovacs A., Saffitz J.E., Medeiros D.M., Kelly D.P. Peroxisome proliferator-activated receptor γ coactivator-1 promotes cardiac mitochondrial biogenesis. J. Clin. Invest. 2000, 106:847-856.
-
(2000)
J. Clin. Invest.
, vol.106
, pp. 847-856
-
-
Lehman, J.J.1
Barger, P.M.2
Kovacs, A.3
Saffitz, J.E.4
Medeiros, D.M.5
Kelly, D.P.6
-
63
-
-
0033859843
-
The mechanism of action of thyroid hormones
-
Zhang J., Lazar M.A. The mechanism of action of thyroid hormones. Annu. Rev. Physiol. 2000, 62:439-466.
-
(2000)
Annu. Rev. Physiol.
, vol.62
, pp. 439-466
-
-
Zhang, J.1
Lazar, M.A.2
-
64
-
-
50049118173
-
Activation of the PPAR/PGC-1alpha pathway prevents a bioenergetic deficit and effectively improves a mitochondrial myopathy phenotype
-
Wenz T., Diaz F., Spiegelman B.M., Moraes C.T. Activation of the PPAR/PGC-1alpha pathway prevents a bioenergetic deficit and effectively improves a mitochondrial myopathy phenotype. Cell Metab. 2008, 8:249-256.
-
(2008)
Cell Metab.
, vol.8
, pp. 249-256
-
-
Wenz, T.1
Diaz, F.2
Spiegelman, B.M.3
Moraes, C.T.4
-
65
-
-
34247259630
-
Metabolic control of muscle mitochondrial function and fatty acid oxidation through SIRT1/PGC-1alpha
-
Gerhart-Hines Z., Rodgers J.T., Bare O., Lerin C., Kim S.H., Mostoslavsky R., Alt F.W., Wu Z., Puigserver P. Metabolic control of muscle mitochondrial function and fatty acid oxidation through SIRT1/PGC-1alpha. EMBO J. 2007, 26:1913-1923.
-
(2007)
EMBO J.
, vol.26
, pp. 1913-1923
-
-
Gerhart-Hines, Z.1
Rodgers, J.T.2
Bare, O.3
Lerin, C.4
Kim, S.H.5
Mostoslavsky, R.6
Alt, F.W.7
Wu, Z.8
Puigserver, P.9
-
66
-
-
67650914230
-
AMPK in Health and Disease
-
Steinberg G.R., Kemp B.E. AMPK in Health and Disease. Physiol. Rev. 2009, 89:1025-1078.
-
(2009)
Physiol. Rev.
, vol.89
, pp. 1025-1078
-
-
Steinberg, G.R.1
Kemp, B.E.2
-
67
-
-
34547545892
-
AMP-activated protein kinase (AMPK) action in skeletal muscle via direct phosphorylation of PGC-1alpha
-
Jager S., Handschin C., St-Pierre J., Spiegelman B.M. AMP-activated protein kinase (AMPK) action in skeletal muscle via direct phosphorylation of PGC-1alpha. Proc. Natl. Acad. Sci. U. S. A. 2007, 104:12017-12022.
-
(2007)
Proc. Natl. Acad. Sci. U. S. A.
, vol.104
, pp. 12017-12022
-
-
Jager, S.1
Handschin, C.2
St-Pierre, J.3
Spiegelman, B.M.4
-
68
-
-
67349276169
-
AMPK regulates energy expenditure by modulating NAD+ metabolism and SIRT1 activity
-
Canto C., Gerhart-Hines Z., Feige J.N., Lagouge M., Noriega L., Milne J.C., Elliott P.J., Puigserver P., Auwerx J. AMPK regulates energy expenditure by modulating NAD+ metabolism and SIRT1 activity. Nature 2009, 458:1056-1060.
-
(2009)
Nature
, vol.458
, pp. 1056-1060
-
-
Canto, C.1
Gerhart-Hines, Z.2
Feige, J.N.3
Lagouge, M.4
Noriega, L.5
Milne, J.C.6
Elliott, P.J.7
Puigserver, P.8
Auwerx, J.9
-
69
-
-
77951872309
-
Adiponectin and AdipoR1 regulate PGC-1alpha and mitochondria by Ca(2+) and AMPK/SIRT1
-
Iwabu M., Yamauchi T., Okada-Iwabu M., Sato K., Nakagawa T., Funata M., Yamaguchi M., Namiki S., Nakayama R., Tabata M., Ogata H., Kubota N., Takamoto I., Hayashi Y.K., Yamauchi N., Waki H., Fukayama M., Nishino I., Tokuyama K., Ueki K., Oike Y., Ishii S., Hirose K., Shimizu T., Touhara K., Kadowaki T. Adiponectin and AdipoR1 regulate PGC-1alpha and mitochondria by Ca(2+) and AMPK/SIRT1. Nature 2010, 464:1313-1319.
-
(2010)
Nature
, vol.464
, pp. 1313-1319
-
-
Iwabu, M.1
Yamauchi, T.2
Okada-Iwabu, M.3
Sato, K.4
Nakagawa, T.5
Funata, M.6
Yamaguchi, M.7
Namiki, S.8
Nakayama, R.9
Tabata, M.10
Ogata, H.11
Kubota, N.12
Takamoto, I.13
Hayashi, Y.K.14
Yamauchi, N.15
Waki, H.16
Fukayama, M.17
Nishino, I.18
Tokuyama, K.19
Ueki, K.20
Oike, Y.21
Ishii, S.22
Hirose, K.23
Shimizu, T.24
Touhara, K.25
Kadowaki, T.26
more..
-
70
-
-
0037127204
-
PGC-1β: A novel PGC-1-related transcription coactivator associated with host cell factor
-
Lin J., Puigserver P., Donovan J., Tarr P., Spiegelman B.M. PGC-1β: A novel PGC-1-related transcription coactivator associated with host cell factor. J. Biol. Chem. 2002, 277:1645-1648.
-
(2002)
J. Biol. Chem.
, vol.277
, pp. 1645-1648
-
-
Lin, J.1
Puigserver, P.2
Donovan, J.3
Tarr, P.4
Spiegelman, B.M.5
-
71
-
-
0037134493
-
The PGC-1-related protein PERC is a selective coactivator of estrogen receptor α
-
Kressler D., Schreiber S.N., Knutti D., Kralli A. The PGC-1-related protein PERC is a selective coactivator of estrogen receptor α. J. Biol. Chem. 2002, 277:13918-13925.
-
(2002)
J. Biol. Chem.
, vol.277
, pp. 13918-13925
-
-
Kressler, D.1
Schreiber, S.N.2
Knutti, D.3
Kralli, A.4
-
72
-
-
0033638283
-
Direct coupling of transcription and mRNA processing through the thermogenic coactivator PGC-1
-
Monsalve M., Wu Z., Adelmant G., Puigserver P., Fan M., Spiegelman B.M. Direct coupling of transcription and mRNA processing through the thermogenic coactivator PGC-1. Mol. Cell 2000, 6:307-316.
-
(2000)
Mol. Cell
, vol.6
, pp. 307-316
-
-
Monsalve, M.1
Wu, Z.2
Adelmant, G.3
Puigserver, P.4
Fan, M.5
Spiegelman, B.M.6
-
73
-
-
0038682372
-
Characterization of the human, mouse and rat PGC1β (peroxisome-proliferator-activated receptor-gamma co-activator 1β) gene in vitro and in vivo
-
Meirhaeghe A., Crowley V., Lenaghan C., Lelliott C., Green K., Stewart A., Hart K., Schinner S., Sethi J.K., Yeo G., Brand M.D., Cortright R.N., O'Rahilly S., Montague C., Vidal-Puig A.J. Characterization of the human, mouse and rat PGC1β (peroxisome-proliferator-activated receptor-gamma co-activator 1β) gene in vitro and in vivo. Biochem. J. 2003, 373:155-165.
-
(2003)
Biochem. J.
, vol.373
, pp. 155-165
-
-
Meirhaeghe, A.1
Crowley, V.2
Lenaghan, C.3
Lelliott, C.4
Green, K.5
Stewart, A.6
Hart, K.7
Schinner, S.8
Sethi, J.K.9
Yeo, G.10
Brand, M.D.11
Cortright, R.N.12
O'Rahilly, S.13
Montague, C.14
Vidal-Puig, A.J.15
-
74
-
-
0042232315
-
PGC-1β in the regulation of hepatic glucose and energy metabolism
-
Lin J.D., Tarr P.T., Yang R.J., Rhee J., Puigserver P., Newgard C.B., Spiegelman B.M. PGC-1β in the regulation of hepatic glucose and energy metabolism. J. Biol. Chem. 2003, 278:30843-30848.
-
(2003)
J. Biol. Chem.
, vol.278
, pp. 30843-30848
-
-
Lin, J.D.1
Tarr, P.T.2
Yang, R.J.3
Rhee, J.4
Puigserver, P.5
Newgard, C.B.6
Spiegelman, B.M.7
-
75
-
-
0038036024
-
Bioenergetic analysis of peroxisome proliferator-activated receptor gamma coactivators 1α and 1β (PGC-1α and PGC-1β) in muscle cells
-
St Pierre J., Lin J., Krauss S., Tarr P.T., Yang R.J., Newgard C.B., Spiegelman B.M. Bioenergetic analysis of peroxisome proliferator-activated receptor gamma coactivators 1α and 1β (PGC-1α and PGC-1β) in muscle cells. J. Biol. Chem. 2003, 278:26597-26603.
-
(2003)
J. Biol. Chem.
, vol.278
, pp. 26597-26603
-
-
St Pierre, J.1
Lin, J.2
Krauss, S.3
Tarr, P.T.4
Yang, R.J.5
Newgard, C.B.6
Spiegelman, B.M.7
-
76
-
-
33646124709
-
Complementary action of the PGC-1 coactivators in mitochondrial biogenesis and brown fat differentiation
-
Uldry M., Yang W., St-Pierre J., Lin J., Seale P., Spiegelman B.M. Complementary action of the PGC-1 coactivators in mitochondrial biogenesis and brown fat differentiation. Cell Metab. 2006, 3:333-341.
-
(2006)
Cell Metab.
, vol.3
, pp. 333-341
-
-
Uldry, M.1
Yang, W.2
St-Pierre, J.3
Lin, J.4
Seale, P.5
Spiegelman, B.M.6
-
77
-
-
0037102256
-
Transcriptional co-activator PGC-1α drives the formation of slow-twitch muscle fibres
-
Lin J., Wu H., Tarr P.T., Zhang C.Y., Wu Z.D., Boss O., Michael L.F., Puigserver P., Isotani E., Olson E.N., Lowell B.B., Bassel-Duby R., Spiegelman B.M. Transcriptional co-activator PGC-1α drives the formation of slow-twitch muscle fibres. Nature 2002, 418:797-801.
-
(2002)
Nature
, vol.418
, pp. 797-801
-
-
Lin, J.1
Wu, H.2
Tarr, P.T.3
Zhang, C.Y.4
Wu, Z.D.5
Boss, O.6
Michael, L.F.7
Puigserver, P.8
Isotani, E.9
Olson, E.N.10
Lowell, B.B.11
Bassel-Duby, R.12
Spiegelman, B.M.13
-
78
-
-
33845674997
-
The transcriptional coactivator PGC-1β drives the formation of oxidative type IIX fibers in skeletal muscle
-
Arany Z., Lebrasseur N., Morris C., Smith E., Yang W., Ma Y., Chin S., Spiegelman B.M. The transcriptional coactivator PGC-1β drives the formation of oxidative type IIX fibers in skeletal muscle. Cell Metab. 2007, 5:35-46.
-
(2007)
Cell Metab.
, vol.5
, pp. 35-46
-
-
Arany, Z.1
Lebrasseur, N.2
Morris, C.3
Smith, E.4
Yang, W.5
Ma, Y.6
Chin, S.7
Spiegelman, B.M.8
-
79
-
-
33644660537
-
PGC-1 coactivators: inducible regulators of energy metabolism in health and disease
-
Finck B.N., Kelly D.P. PGC-1 coactivators: inducible regulators of energy metabolism in health and disease. J. Clin. Invest. 2006, 116:615-622.
-
(2006)
J. Clin. Invest.
, vol.116
, pp. 615-622
-
-
Finck, B.N.1
Kelly, D.P.2
-
80
-
-
5344252327
-
Defects in adaptive energy metabolism with CNS-linked hyperactivity in PGC-1α null mice
-
Lin J., Wu P., Tarr P.T., Lindenberg K.S., St-Pierre J., Zhang C., Mootha V.K., Jäger S., Vianna C.R., Reznick R.M., Cui L., Manieri M., Donovan M.X., Wu Z., Cooper M.P., Fan M.L., Rohas L.M., Zavacki A.M., Cinti S., Shulman G.I., Lowell B.B., Krainc D., Spiegelman B.M. Defects in adaptive energy metabolism with CNS-linked hyperactivity in PGC-1α null mice. Cell 2004, 119:121-135.
-
(2004)
Cell
, vol.119
, pp. 121-135
-
-
Lin, J.1
Wu, P.2
Tarr, P.T.3
Lindenberg, K.S.4
St-Pierre, J.5
Zhang, C.6
Mootha, V.K.7
Jäger, S.8
Vianna, C.R.9
Reznick, R.M.10
Cui, L.11
Manieri, M.12
Donovan, M.X.13
Wu, Z.14
Cooper, M.P.15
Fan, M.L.16
Rohas, L.M.17
Zavacki, A.M.18
Cinti, S.19
Shulman, G.I.20
Lowell, B.B.21
Krainc, D.22
Spiegelman, B.M.23
more..
-
81
-
-
21144446106
-
PGC-1α deficiency causes multi-system energy metabolic derangements: muscle dysfunction, abnormal weight control and hepatic steatosis
-
Leone T.C., Lehman J.J., Finck B.N., Schaeffer P.J., Wende A.R., Boudina S., Courtois M., Wozniak D.F., Sambandam N., Bernal-Mizrachi C., Chen Z., Holloszy J.O., Medeiros D.M., Schmidt R.E., Saffitz J.E., Abel E.D., Semenkovich C.F., Kelly D.P. PGC-1α deficiency causes multi-system energy metabolic derangements: muscle dysfunction, abnormal weight control and hepatic steatosis. PLoS Biol. 2005, 3:672-687.
-
(2005)
PLoS Biol.
, vol.3
, pp. 672-687
-
-
Leone, T.C.1
Lehman, J.J.2
Finck, B.N.3
Schaeffer, P.J.4
Wende, A.R.5
Boudina, S.6
Courtois, M.7
Wozniak, D.F.8
Sambandam, N.9
Bernal-Mizrachi, C.10
Chen, Z.11
Holloszy, J.O.12
Medeiros, D.M.13
Schmidt, R.E.14
Saffitz, J.E.15
Abel, E.D.16
Semenkovich, C.F.17
Kelly, D.P.18
-
82
-
-
22144434964
-
Transcriptional coactivator PGC-1α controls the energy state and contractile function of cardiac muscle
-
Arany Z., He H., Lin J., Hoyer K., Handschin C., Toka O., Ahmad F., Matsui T., Chin S., Wu P.H., Rybkin I.I., Shelton J.M., Manieri M., Cinti S., Schoen F.J., Bassel-Duby R., Rosenzweig A., Ingwall J.S., Spiegelman B.M. Transcriptional coactivator PGC-1α controls the energy state and contractile function of cardiac muscle. Cell Metab. 2005, 1:259-271.
-
(2005)
Cell Metab.
, vol.1
, pp. 259-271
-
-
Arany, Z.1
He, H.2
Lin, J.3
Hoyer, K.4
Handschin, C.5
Toka, O.6
Ahmad, F.7
Matsui, T.8
Chin, S.9
Wu, P.H.10
Rybkin, I.I.11
Shelton, J.M.12
Manieri, M.13
Cinti, S.14
Schoen, F.J.15
Bassel-Duby, R.16
Rosenzweig, A.17
Ingwall, J.S.18
Spiegelman, B.M.19
-
83
-
-
35648937073
-
Skeletal muscle fiber-type switching, exercise intolerance and myopathy in PGC-1alpha muscle-specific knockout animals
-
Handschin C., Chin S., Li P., Liu F., Maratos-Flier E., Lebrasseur N.K., Yan Z., Spiegelman B.M. Skeletal muscle fiber-type switching, exercise intolerance and myopathy in PGC-1alpha muscle-specific knockout animals. J. Biol. Chem. 2007, 282:30014-30021.
-
(2007)
J. Biol. Chem.
, vol.282
, pp. 30014-30021
-
-
Handschin, C.1
Chin, S.2
Li, P.3
Liu, F.4
Maratos-Flier, E.5
Lebrasseur, N.K.6
Yan, Z.7
Spiegelman, B.M.8
-
84
-
-
33751022208
-
Ablation of PGC-1β results in defective mitochondrial activity, thermogenesis, hepatic function, and cardiac performance
-
Lelliott C.J., Medina-Gomez G., Petrovic N., Kis A., Feldmann H.M., Bjursell M., Parker N., Curtis K., Campbell M., Hu P., Zhang D., Litwin S.E., Zaha V.G., Fountain K.T., Boudina S., Jimenez-Linan M., Blount M., Lopez M., Meirhaeghe A., Bohlooly Y., Storlien L., Stromstedt M., Snaith M., Oresic M., Abel E.D., Cannon B., Vidal-Puig A. Ablation of PGC-1β results in defective mitochondrial activity, thermogenesis, hepatic function, and cardiac performance. PLoS Biol. 2006, 4:2042-2056.
-
(2006)
PLoS Biol.
, vol.4
, pp. 2042-2056
-
-
Lelliott, C.J.1
Medina-Gomez, G.2
Petrovic, N.3
Kis, A.4
Feldmann, H.M.5
Bjursell, M.6
Parker, N.7
Curtis, K.8
Campbell, M.9
Hu, P.10
Zhang, D.11
Litwin, S.E.12
Zaha, V.G.13
Fountain, K.T.14
Boudina, S.15
Jimenez-Linan, M.16
Blount, M.17
Lopez, M.18
Meirhaeghe, A.19
Bohlooly, Y.20
Storlien, L.21
Stromstedt, M.22
Snaith, M.23
Oresic, M.24
Abel, E.D.25
Cannon, B.26
Vidal-Puig, A.27
more..
-
85
-
-
34247590356
-
PGC-1beta controls mitochondrial metabolism to modulate circadian activity, adaptive thermogenesis, and hepatic steatosis
-
Sonoda J., Mehl I.R., Chong L.W., Nofsinger R.R., Evans R.M. PGC-1beta controls mitochondrial metabolism to modulate circadian activity, adaptive thermogenesis, and hepatic steatosis. Proc. Natl. Acad. Sci. U. S. A. 2007, 104:5223-5228.
-
(2007)
Proc. Natl. Acad. Sci. U. S. A.
, vol.104
, pp. 5223-5228
-
-
Sonoda, J.1
Mehl, I.R.2
Chong, L.W.3
Nofsinger, R.R.4
Evans, R.M.5
-
86
-
-
33751400561
-
Hypomorphic mutation of PGC-1beta causes mitochondrial dysfunction and liver insulin resistance
-
Vianna C.R., Huntgeburth M., Coppari R., Choi C.S., Lin J., Krauss S., Barbatelli G., Tzameli I., Kim Y.B., Cinti S., Shulman G.I., Spiegelman B.M., Lowell B.B. Hypomorphic mutation of PGC-1beta causes mitochondrial dysfunction and liver insulin resistance. Cell Metab. 2006, 4:453-464.
-
(2006)
Cell Metab.
, vol.4
, pp. 453-464
-
-
Vianna, C.R.1
Huntgeburth, M.2
Coppari, R.3
Choi, C.S.4
Lin, J.5
Krauss, S.6
Barbatelli, G.7
Tzameli, I.8
Kim, Y.B.9
Cinti, S.10
Shulman, G.I.11
Spiegelman, B.M.12
Lowell, B.B.13
-
87
-
-
47549114849
-
Transcriptional coactivators PGC-1alpha and PGC-lbeta control overlapping programs required for perinatal maturation of the heart
-
Lai L., Leone T.C., Zechner C., Schaeffer P.J., Kelly S.M., Flanagan D.P., Medeiros D.M., Kovacs A., Kelly D.P. Transcriptional coactivators PGC-1alpha and PGC-lbeta control overlapping programs required for perinatal maturation of the heart. Genes Dev. 2010, 22:1948-1961.
-
(2010)
Genes Dev.
, vol.22
, pp. 1948-1961
-
-
Lai, L.1
Leone, T.C.2
Zechner, C.3
Schaeffer, P.J.4
Kelly, S.M.5
Flanagan, D.P.6
Medeiros, D.M.7
Kovacs, A.8
Kelly, D.P.9
-
89
-
-
0035016566
-
PGC-1-related coactivator, a novel, serum-inducible coactivator of nuclear respiratory factor 1-dependent transcription in mammalian cells
-
Andersson U., Scarpulla R.C. PGC-1-related coactivator, a novel, serum-inducible coactivator of nuclear respiratory factor 1-dependent transcription in mammalian cells. Mol. Cell. Biol. 2001, 21:3738-3749.
-
(2001)
Mol. Cell. Biol.
, vol.21
, pp. 3738-3749
-
-
Andersson, U.1
Scarpulla, R.C.2
-
90
-
-
45549103553
-
PGC-1-related Coactivator Complexes with HCF-1 and NRF-2β in Mediating NRF-2(GABP)-dependent Respiratory Gene Expression
-
Vercauteren K., Gleyzer N., Scarpulla R.C. PGC-1-related Coactivator Complexes with HCF-1 and NRF-2β in Mediating NRF-2(GABP)-dependent Respiratory Gene Expression. J. Biol. Chem. 2008, 283:12102-12111.
-
(2008)
J. Biol. Chem.
, vol.283
, pp. 12102-12111
-
-
Vercauteren, K.1
Gleyzer, N.2
Scarpulla, R.C.3
-
91
-
-
13444306450
-
Control of mitochondrial transcription specificity factors (TFB1M and TFB2M) by nuclear respiratory factors (NRF-1 and NRF-2) and PGC-1 family coactivators
-
Gleyzer N., Vercauteren K., Scarpulla R.C. Control of mitochondrial transcription specificity factors (TFB1M and TFB2M) by nuclear respiratory factors (NRF-1 and NRF-2) and PGC-1 family coactivators. Mol. Cell. Biol. 2005, 25:1354-1366.
-
(2005)
Mol. Cell. Biol.
, vol.25
, pp. 1354-1366
-
-
Gleyzer, N.1
Vercauteren, K.2
Scarpulla, R.C.3
-
92
-
-
0025769412
-
Primary response genes induced by growth factors and tumor promoters
-
Herschman H.R. Primary response genes induced by growth factors and tumor promoters. Annu. Rev. Biochem. 1991, 60:281-319.
-
(1991)
Annu. Rev. Biochem.
, vol.60
, pp. 281-319
-
-
Herschman, H.R.1
-
93
-
-
0031972479
-
Serum- and polypeptide growth factor-inducible gene expression in mouse fibroblasts
-
Winkles J.A. Serum- and polypeptide growth factor-inducible gene expression in mouse fibroblasts. Prog. Nucleic Acid Res. Mol. Biol. 1998, 58:41-78.
-
(1998)
Prog. Nucleic Acid Res. Mol. Biol.
, vol.58
, pp. 41-78
-
-
Winkles, J.A.1
-
94
-
-
57649148823
-
Nuclear control of respiratory chain expression by nuclear respiratory factors and PGC-1-related coactivator
-
Scarpulla R.C. Nuclear control of respiratory chain expression by nuclear respiratory factors and PGC-1-related coactivator. Ann. N. Y. Acad. Sci. 2008, 1147:321-334.
-
(2008)
Ann. N. Y. Acad. Sci.
, vol.1147
, pp. 321-334
-
-
Scarpulla, R.C.1
-
95
-
-
0141645408
-
PGC-1-related coactivator and targets are upregulated in thyroid oncocytoma
-
Savagner F., Mirebeau D., Jacques C., Guyetant S., Morgan C., Franc B., Reynier P., Malthièry Y. PGC-1-related coactivator and targets are upregulated in thyroid oncocytoma. Biochem. Biophys. Res. Commun. 2003, 310:779-784.
-
(2003)
Biochem. Biophys. Res. Commun.
, vol.310
, pp. 779-784
-
-
Savagner, F.1
Mirebeau, D.2
Jacques, C.3
Guyetant, S.4
Morgan, C.5
Franc, B.6
Reynier, P.7
Malthièry, Y.8
-
96
-
-
0034651597
-
The novel coactivator C1 (HCF) coordinates multiprotein enhancer formation and mediates transcription activation by GABP
-
Vogel J.L., Kristie T.M. The novel coactivator C1 (HCF) coordinates multiprotein enhancer formation and mediates transcription activation by GABP. EMBO J. 2000, 19:683-690.
-
(2000)
EMBO J.
, vol.19
, pp. 683-690
-
-
Vogel, J.L.1
Kristie, T.M.2
-
97
-
-
0025167974
-
A cellular factor binds to the herpes simplex virus type 1 transactivator Vmw65 and is required for Vmw65-dependent protein-DNA complex assembly with Oct-1
-
Xiao P., Capone J.P. A cellular factor binds to the herpes simplex virus type 1 transactivator Vmw65 and is required for Vmw65-dependent protein-DNA complex assembly with Oct-1. Mol. Cell. Biol. 1990, 10:4974-4977.
-
(1990)
Mol. Cell. Biol.
, vol.10
, pp. 4974-4977
-
-
Xiao, P.1
Capone, J.P.2
-
98
-
-
0030915297
-
A single point mutation in HCF causes temperature-sensitive cell-cycle arrest and disrupts VP16 function
-
Goto H., Motomura S., Wilson A.C., Freiman R.N., Nakabeppu Y., Fukushima M., Herr W., Nishimoto T. A single point mutation in HCF causes temperature-sensitive cell-cycle arrest and disrupts VP16 function. Genes Dev. 1997, 11:726-737.
-
(1997)
Genes Dev.
, vol.11
, pp. 726-737
-
-
Goto, H.1
Motomura, S.2
Wilson, A.C.3
Freiman, R.N.4
Nakabeppu, Y.5
Fukushima, M.6
Herr, W.7
Nishimoto, T.8
-
99
-
-
75149134754
-
Estrogen-related receptor alpha and PGC-1-related coactivator constitute a novel complex mediating the biogenesis of functional mitochondria
-
Mirebeau-Prunier D., Le P.S., Jacques C., Gueguen N., Poirier J., Malthiery Y., Savagner F. Estrogen-related receptor alpha and PGC-1-related coactivator constitute a novel complex mediating the biogenesis of functional mitochondria. FEBS J. 2010, 277:713-725.
-
(2010)
FEBS J.
, vol.277
, pp. 713-725
-
-
Mirebeau-Prunier, D.1
Le, P.S.2
Jacques, C.3
Gueguen, N.4
Poirier, J.5
Malthiery, Y.6
Savagner, F.7
-
100
-
-
0029874964
-
Use of fibroblast and lymphoblast cultures for detection of respiratory chain defects
-
Robinson B.H. Use of fibroblast and lymphoblast cultures for detection of respiratory chain defects. Methods Enzymol. 1996, 264:454-464.
-
(1996)
Methods Enzymol.
, vol.264
, pp. 454-464
-
-
Robinson, B.H.1
-
101
-
-
59049089797
-
Short hairpin RNA-mediated silencing of PRC (PGC-1-related coactivator) results in a severe respiratory chain deficiency associated with the proliferation of aberrant mitochondria
-
Vercauteren K., Gleyzer N., Scarpulla R.C. Short hairpin RNA-mediated silencing of PRC (PGC-1-related coactivator) results in a severe respiratory chain deficiency associated with the proliferation of aberrant mitochondria. J. Biol. Chem. 2009, 284:2307-2319.
-
(2009)
J. Biol. Chem.
, vol.284
, pp. 2307-2319
-
-
Vercauteren, K.1
Gleyzer, N.2
Scarpulla, R.C.3
-
102
-
-
71049170134
-
PGC-1-related coactivator modulates mitochondrial-nuclear crosstalk through endogenous nitric oxide in a cellular model of oncocytic thyroid tumours
-
Raharijaona M., Le P.S., Poirier J., Mirebeau-Prunier D., Rouxel C., Jacques C., Fontaine J.F., Malthiery Y., Houlgatte R., Savagner F. PGC-1-related coactivator modulates mitochondrial-nuclear crosstalk through endogenous nitric oxide in a cellular model of oncocytic thyroid tumours. PLoS One. 2009, 4:e7964.
-
(2009)
PLoS One.
, vol.4
-
-
Raharijaona, M.1
Le, P.S.2
Poirier, J.3
Mirebeau-Prunier, D.4
Rouxel, C.5
Jacques, C.6
Fontaine, J.F.7
Malthiery, Y.8
Houlgatte, R.9
Savagner, F.10
|