-
1
-
-
77956172813
-
Physiological role of autophagy as an intracellular recycling system: With an emphasis on nutrient metabolism
-
Kuma, A., and Mizushima, N. (2010) Physiological role of autophagy as an intracellular recycling system: with an emphasis on nutrient metabolism. Semin. Cell Dev. Biol. 21, 683-690
-
(2010)
Semin. Cell Dev. Biol.
, vol.21
, pp. 683-690
-
-
Kuma, A.1
Mizushima, N.2
-
2
-
-
78649704325
-
Autophagy and metabolism
-
Rabinowitz, J. D., and White, E. (2010) Autophagy and metabolism. Science 330, 1344-1348
-
(2010)
Science
, vol.330
, pp. 1344-1348
-
-
Rabinowitz, J.D.1
White, E.2
-
3
-
-
84863393597
-
Exercise-induced BCL2-regulated autophagy is required for muscle glucose homeostasis
-
He, C., Bassik, M. C., Moresi, V., Sun, K., Wei, Y., Zou, Z., An, Z., Loh, J., Fisher, J., Sun, Q., Korsmeyer, S., Packer, M., May, H. I., Hill, J. A., Virgin, H. W., Gilpin, C., Xiao, G., Bassel-Duby, R., Scherer, P. E., and Levine, B. (2012) Exercise-induced BCL2-regulated autophagy is required for muscle glucose homeostasis. Nature 481, 511-515
-
(2012)
Nature
, vol.481
, pp. 511-515
-
-
He, C.1
Bassik, M.C.2
Moresi, V.3
Sun, K.4
Wei, Y.5
Zou, Z.6
An, Z.7
Loh, J.8
Fisher, J.9
Sun, Q.10
Korsmeyer, S.11
Packer, M.12
May, H.I.13
Hill, J.A.14
Virgin, H.W.15
Gilpin, C.16
Xiao, G.17
Bassel-Duby, R.18
Scherer, P.E.19
Levine, B.20
more..
-
4
-
-
77956400005
-
Defective hepatic autophagy in obesity promotes ER stress and causes insulin resistance
-
Yang, L., Li, P., Fu, S., Calay, E. S., and Hotamisligil, G. S. (2010) Defective hepatic autophagy in obesity promotes ER stress and causes insulin resistance. Cell Metab. 11, 467-478
-
(2010)
Cell Metab.
, vol.11
, pp. 467-478
-
-
Yang, L.1
Li, P.2
Fu, S.3
Calay, E.S.4
Hotamisligil, G.S.5
-
5
-
-
73949124173
-
Adipose-specific deletion of autophagy-related gene 7 (atg7) in mice reveals a role in adipogenesis
-
Zhang, Y., Goldman, S., Baerga, R., Zhao, Y., Komatsu, M., and Jin, S. (2009) Adipose-specific deletion of autophagy-related gene 7 (atg7) in mice reveals a role in adipogenesis. Proc. Natl. Acad. Sci. U.S.A. 106, 19860-19865
-
(2009)
Proc. Natl. Acad. Sci. U.S.A.
, vol.106
, pp. 19860-19865
-
-
Zhang, Y.1
Goldman, S.2
Baerga, R.3
Zhao, Y.4
Komatsu, M.5
Jin, S.6
-
6
-
-
70449448312
-
Autophagy regulates adipose mass and differentiation in mice
-
Singh, R., Xiang, Y., Wang, Y., Baikati, K., Cuervo, A. M., Luu, Y. K., Tang, Y., Pessin, J. E., Schwartz, G. J., and Czaja, M. J. (2009) Autophagy regulates adipose mass and differentiation in mice. J. Clin. Invest. 119, 3329-3339
-
(2009)
J. Clin. Invest.
, vol.119
, pp. 3329-3339
-
-
Singh, R.1
Xiang, Y.2
Wang, Y.3
Baikati, K.4
Cuervo, A.M.5
Luu, Y.K.6
Tang, Y.7
Pessin, J.E.8
Schwartz, G.J.9
Czaja, M.J.10
-
7
-
-
11144245626
-
The role of autophagy during the early neonatal starvation period
-
Kuma, A., Hatano, M., Matsui, M., Yamamoto, A., Nakaya, H., Yoshimori, T., Ohsumi, Y., Tokuhisa, T., and Mizushima, N. (2004) The role of autophagy during the early neonatal starvation period. Nature 432, 1032-1036
-
(2004)
Nature
, vol.432
, pp. 1032-1036
-
-
Kuma, A.1
Hatano, M.2
Matsui, M.3
Yamamoto, A.4
Nakaya, H.5
Yoshimori, T.6
Ohsumi, Y.7
Tokuhisa, T.8
Mizushima, N.9
-
8
-
-
21044455137
-
Impairment of starvation-induced and constitutive autophagy in Atg7-deficient mice
-
Komatsu, M., Waguri, S., Ueno, T., Iwata, J., Murata, S., Tanida, I., Ezaki, J., Mizushima, N., Ohsumi, Y., Uchiyama, Y., Kominami, E., Tanaka, K., and Chiba, T. (2005) Impairment of starvation-induced and constitutive autophagy in Atg7-deficient mice. J. Cell Biol. 169, 425-434
-
(2005)
J. Cell Biol.
, vol.169
, pp. 425-434
-
-
Komatsu, M.1
Waguri, S.2
Ueno, T.3
Iwata, J.4
Murata, S.5
Tanida, I.6
Ezaki, J.7
Mizushima, N.8
Ohsumi, Y.9
Uchiyama, Y.10
Kominami, E.11
Tanaka, K.12
Chiba, T.13
-
9
-
-
3843079663
-
Glycogen autophagy
-
Kotoulas, O. B., Kalamidas, S. A., and Kondomerkos, D. J. (2004) Glycogen autophagy. Microsc. Res. Tech. 64, 10-20
-
(2004)
Microsc. Res. Tech.
, vol.64
, pp. 10-20
-
-
Kotoulas, O.B.1
Kalamidas, S.A.2
Kondomerkos, D.J.3
-
10
-
-
79959952405
-
Liver autophagy contributes to the maintenance of blood glucose and amino acid levels
-
Ezaki, J., Matsumoto, N., Takeda-Ezaki, M., Komatsu, M., Takahashi, K., Hiraoka, Y., Taka, H., Fujimura, T., Takehana, K., Yoshida, M., Iwata, J., Tanida, I., Furuya, N., Zheng, D. M., Tada, N., Tanaka, K., Kominami, E., and Ueno, T. (2011) Liver autophagy contributes to the maintenance of blood glucose and amino acid levels. Autophagy 7, 727-736
-
(2011)
Autophagy
, vol.7
, pp. 727-736
-
-
Ezaki, J.1
Matsumoto, N.2
Takeda-Ezaki, M.3
Komatsu, M.4
Takahashi, K.5
Hiraoka, Y.6
Taka, H.7
Fujimura, T.8
Takehana, K.9
Yoshida, M.10
Iwata, J.11
Tanida, I.12
Furuya, N.13
Zheng, D.M.14
Tada, N.15
Tanaka, K.16
Kominami, E.17
Ueno, T.18
-
11
-
-
0026537433
-
Adaptations of glucose and fatty acid metabolism during perinatal period and suckling-weaning transition
-
Girard, J., Ferré, P., Pégorier, J. P., and Duée, P. H. (1992) Adaptations of glucose and fatty acid metabolism during perinatal period and suckling-weaning transition. Physiol. Rev. 72, 507-562
-
(1992)
Physiol. Rev.
, vol.72
, pp. 507-562
-
-
Girard, J.1
Ferré, P.2
Pégorier, J.P.3
Duée, P.H.4
-
12
-
-
84873665112
-
Regulation of mTORC1 by the Rag GTPases is necessary for neonatal autophagy and survival
-
Efeyan, A., Zoncu, R., Chang, S., Gumper, I., Snitkin, H., Wolfson, R. L., Kirak, O., Sabatini, D. D., and Sabatini, D. M. (2013) Regulation of mTORC1 by the Rag GTPases is necessary for neonatal autophagy and survival. Nature 493, 679-683
-
(2013)
Nature
, vol.493
, pp. 679-683
-
-
Efeyan, A.1
Zoncu, R.2
Chang, S.3
Gumper, I.4
Snitkin, H.5
Wolfson, R.L.6
Kirak, O.7
Sabatini, D.D.8
Sabatini, D.M.9
-
13
-
-
0038839340
-
The quantities of protein lost by the various organs and tissues of the body during a fast
-
Addis, T., Poo, L. J., and Lew, W. (1936) The quantities of protein lost by the various organs and tissues of the body during a fast. J. Biol. Chem. 115, 111-116
-
(1936)
J. Biol. Chem.
, vol.115
, pp. 111-116
-
-
Addis, T.1
Poo, L.J.2
Lew, W.3
-
14
-
-
0018746575
-
Glucagon-induced autophagy and proteolysis in rat liver: Mediation by selective deprivation of intracellular amino acids
-
Schworer, C. M., and Mortimore, G. E. (1979) Glucagon-induced autophagy and proteolysis in rat liver: mediation by selective deprivation of intracellular amino acids. Proc. Natl. Acad. Sci. U.S.A. 76, 3169-3173
-
(1979)
Proc. Natl. Acad. Sci. U.S.A.
, vol.76
, pp. 3169-3173
-
-
Schworer, C.M.1
Mortimore, G.E.2
-
15
-
-
1542289063
-
Amino acids and insulin control autophagic proteolysis through different signaling pathways in relation to mTOR in isolated rat hepatocytes
-
Kanazawa, T., Taneike, I., Akaishi, R., Yoshizawa, F., Furuya, N., Fujimura, S., and Kadowaki, M. (2004) Amino acids and insulin control autophagic proteolysis through different signaling pathways in relation to mTOR in isolated rat hepatocytes. J. Biol. Chem. 279, 8452-8459
-
(2004)
J. Biol. Chem.
, vol.279
, pp. 8452-8459
-
-
Kanazawa, T.1
Taneike, I.2
Akaishi, R.3
Yoshizawa, F.4
Furuya, N.5
Fujimura, S.6
Kadowaki, M.7
-
16
-
-
71449091240
-
Hepatic autophagy is suppressed in the presence of insulin resistance and hyperinsulinemia: Inhibition of FoxO1-dependent expression of key autophagy genes by insulin
-
Liu, H. Y., Han, J., Cao, S. Y., Hong, T., Zhuo, D., Shi, J., Liu, Z., and Cao, W. (2009) Hepatic autophagy is suppressed in the presence of insulin resistance and hyperinsulinemia: inhibition of FoxO1-dependent expression of key autophagy genes by insulin. J. Biol. Chem. 284, 31484-31492
-
(2009)
J. Biol. Chem.
, vol.284
, pp. 31484-31492
-
-
Liu, H.Y.1
Han, J.2
Cao, S.Y.3
Hong, T.4
Zhuo, D.5
Shi, J.6
Liu, Z.7
Cao, W.8
-
17
-
-
0023065242
-
Intracellular protein catabolism and its control during nutrient deprivation and supply
-
Mortimore, G. E., and Pösö, A. R. (1987) Intracellular protein catabolism and its control during nutrient deprivation and supply. Annu. Rev. Nutr. 7, 539-564
-
(1987)
Annu. Rev. Nutr.
, vol.7
, pp. 539-564
-
-
Mortimore, G.E.1
Pösö, A.R.2
-
18
-
-
84859488137
-
Myonectin (CTRP15), a novel myokine that links skeletal muscle to systemic lipid homeostasis
-
Seldin, M. M., Peterson, J. M., Byerly, M. S., Wei, Z., and Wong, G. W. (2012) Myonectin (CTRP15), a novel myokine that links skeletal muscle to systemic lipid homeostasis. J. Biol. Chem. 287, 11968-11980
-
(2012)
J. Biol. Chem.
, vol.287
, pp. 11968-11980
-
-
Seldin, M.M.1
Peterson, J.M.2
Byerly, M.S.3
Wei, Z.4
Wong, G.W.5
-
19
-
-
3142668924
-
A family of Acrp30/adiponectin structural and functional paralogs
-
Wong, G. W., Wang, J., Hug, C., Tsao, T. S., and Lodish, H. F. (2004) A family of Acrp30/adiponectin structural and functional paralogs. Proc. Natl. Acad. Sci. U.S.A. 101, 10302-10307
-
(2004)
Proc. Natl. Acad. Sci. U.S.A.
, vol.101
, pp. 10302-10307
-
-
Wong, G.W.1
Wang, J.2
Hug, C.3
Tsao, T.S.4
Lodish, H.F.5
-
20
-
-
58249117645
-
Identification and characterization of CTRP9, a novel secreted glycoprotein, from adipose tissue that reduces serum glucose in mice and forms heterotrimers with adiponectin
-
Wong, G. W., Krawczyk, S. A., Kitidis-Mitrokostas, C., Ge, G., Spooner, E., Hug, C., Gimeno, R., and Lodish, H. F. (2009) Identification and characterization of CTRP9, a novel secreted glycoprotein, from adipose tissue that reduces serum glucose in mice and forms heterotrimers with adiponectin. FASEB J. 23, 241-258
-
(2009)
FASEB J.
, vol.23
, pp. 241-258
-
-
Wong, G.W.1
Krawczyk, S.A.2
Kitidis-Mitrokostas, C.3
Ge, G.4
Spooner, E.5
Hug, C.6
Gimeno, R.7
Lodish, H.F.8
-
21
-
-
58149315989
-
Molecular, biochemical and functional characterizations of C1q/TNF family members: Adipose-tissue-selective expression patterns, regulation by PPAR-γ agonist, cysteine-mediated oligomerizations, combinatorial associations and metabolic functions
-
Wong, G. W., Krawczyk, S. A., Kitidis-Mitrokostas, C., Revett, T., Gimeno, R., and Lodish, H. F. (2008) Molecular, biochemical and functional characterizations of C1q/TNF family members: adipose-tissue-selective expression patterns, regulation by PPAR-γ agonist, cysteine-mediated oligomerizations, combinatorial associations and metabolic functions. Biochem. J. 416, 161-177
-
(2008)
Biochem. J.
, vol.416
, pp. 161-177
-
-
Wong, G.W.1
Krawczyk, S.A.2
Kitidis-Mitrokostas, C.3
Revett, T.4
Gimeno, R.5
Lodish, H.F.6
-
22
-
-
84855511415
-
CTRP1 protein enhances fatty acid oxidation via AMP-activated protein kinase (AMPK) activation and acetyl-CoA carboxylase (ACC) inhibition
-
Peterson, J. M., Aja, S., Wei, Z., and Wong, G. W. (2012) CTRP1 protein enhances fatty acid oxidation via AMP-activated protein kinase (AMPK) activation and acetyl-CoA carboxylase (ACC) inhibition. J. Biol. Chem. 287, 1576-1587
-
(2012)
J. Biol. Chem.
, vol.287
, pp. 1576-1587
-
-
Peterson, J.M.1
Aja, S.2
Wei, Z.3
Wong, G.W.4
-
23
-
-
78650052319
-
C1q/TNF-related pro-tein- 3 (CTRP3), a novel adipokine that regulates hepatic glucose output
-
Peterson, J. M., Wei, Z., and Wong, G. W. (2010) C1q/TNF-related pro-tein- 3 (CTRP3), a novel adipokine that regulates hepatic glucose output. J. Biol. Chem. 285, 39691-39701
-
(2010)
J. Biol. Chem.
, vol.285
, pp. 39691-39701
-
-
Peterson, J.M.1
Wei, Z.2
Wong, G.W.3
-
24
-
-
84858953557
-
C1q/TNF-related protein-12 (CTRP12), a novel adipokine that improves insulin sensitivity and glycemic control in mouse models of obesity and diabetes
-
Wei, Z., Peterson, J. M., Lei, X., Cebotaru, L., Wolfgang, M. J., Baldeviano, G. C., and Wong, G. W. (2012) C1q/TNF-related protein-12 (CTRP12), a novel adipokine that improves insulin sensitivity and glycemic control in mouse models of obesity and diabetes. J. Biol. Chem. 287, 10301-10315
-
(2012)
J. Biol. Chem.
, vol.287
, pp. 10301-10315
-
-
Wei, Z.1
Peterson, J.M.2
Lei, X.3
Cebotaru, L.4
Wolfgang, M.J.5
Baldeviano, G.C.6
Wong, G.W.7
-
25
-
-
79955533795
-
Metabolic regulation by C1q/TNF-related protein-13 (CTRP13): Activation of AMP-activated protein kinase and suppression of fatty acid-induced JNK signaling
-
Wei, Z., Peterson, J. M., and Wong, G. W. (2011) Metabolic regulation by C1q/TNF-related protein-13 (CTRP13): activation of AMP-activated protein kinase and suppression of fatty acid-induced JNK signaling. J. Biol. Chem. 286, 15652-15665
-
(2011)
J. Biol. Chem.
, vol.286
, pp. 15652-15665
-
-
Wei, Z.1
Peterson, J.M.2
Wong, G.W.3
-
26
-
-
84880980654
-
CTRP3 attenuates diet-induced hepatic steatosis by regulating triglyceride metabolism
-
Peterson, J.M., Seldin, M. M., Wei, Z., Aja, S., and Wong, G. W. (2013) CTRP3 attenuates diet-induced hepatic steatosis by regulating triglyceride metabolism. Am. J. Physiol. Gastrointest. Liver Physiol. 305, G214-G224
-
(2013)
Am. J. Physiol. Gastrointest. Liver Physiol.
, vol.305
-
-
Peterson, J.M.1
Seldin, M.M.2
Wei, Z.3
Aja, S.4
Wong, G.W.5
-
27
-
-
84876719217
-
A central role for C1q/TNF-related protein 13 (CTRP13) in modulating food intake and body weight
-
Byerly, M. S., Swanson, R., Wei, Z., Seldin, M. M., McCulloh, P. S., and Wong, G. W. (2013) A central role for C1q/TNF-related protein 13 (CTRP13) in modulating food intake and body weight. PLoS ONE 8, e62862
-
(2013)
PLoS ONE
, vol.8
-
-
Byerly, M.S.1
Swanson, R.2
Wei, Z.3
Seldin, M.M.4
McCulloh, P.S.5
Wong, G.W.6
-
28
-
-
0023392945
-
High-efficiency transformation of mammalian cells by plasmid DNA
-
Chen, C., and Okayama, H. (1987) High-efficiency transformation of mammalian cells by plasmid DNA. Mol. Cell. Biol. 7, 2745-2752
-
(1987)
Mol. Cell. Biol.
, vol.7
, pp. 2745-2752
-
-
Chen, C.1
Okayama, H.2
-
29
-
-
44949231424
-
Analyzing real-time PCR data by the comparative CT method
-
Schmittgen, T. D., and Livak, K. J. (2008) Analyzing real-time PCR data by the comparative CT method. Nat. Protoc. 3, 1101-1108
-
(2008)
Nat. Protoc.
, vol.3
, pp. 1101-1108
-
-
Schmittgen, T.D.1
Livak, K.J.2
-
31
-
-
1542283812
-
In vivo analysis of autophagy in response to nutrient starvation using transgenic mice expressing a fluorescent autophagosome marker
-
Mizushima, N., Yamamoto, A., Matsui, M., Yoshimori, T., and Ohsumi, Y. (2004) In vivo analysis of autophagy in response to nutrient starvation using transgenic mice expressing a fluorescent autophagosome marker. Mol. Biol. Cell 15, 1101-1111
-
(2004)
Mol. Biol. Cell
, vol.15
, pp. 1101-1111
-
-
Mizushima, N.1
Yamamoto, A.2
Matsui, M.3
Yoshimori, T.4
Ohsumi, Y.5
-
32
-
-
0034703021
-
Leucine limitation induces autophagy and activation of lysosome-dependent proteolysis in C2C12 myotubes through a mammalian target of rapamycin-independent signaling pathway
-
Mordier, S., Deval, C., Béchet, D., Tassa, A., and Ferrara, M. (2000) Leucine limitation induces autophagy and activation of lysosome-dependent proteolysis in C2C12 myotubes through a mammalian target of rapamycin-independent signaling pathway. J. Biol. Chem. 275, 29900-29906
-
(2000)
J. Biol. Chem.
, vol.275
, pp. 29900-29906
-
-
Mordier, S.1
Deval, C.2
Béchet, D.3
Tassa, A.4
Ferrara, M.5
-
33
-
-
80054025654
-
The role of Atg proteins in autophagosome formation
-
Mizushima, N., Yoshimori, T., and Ohsumi, Y. (2011) The role of Atg proteins in autophagosome formation. Annu. Rev. Cell Dev. Biol. 27, 107-132
-
(2011)
Annu. Rev. Cell Dev. Biol.
, vol.27
, pp. 107-132
-
-
Mizushima, N.1
Yoshimori, T.2
Ohsumi, Y.3
-
34
-
-
0032563798
-
A protein conjugation system essential for autophagy
-
Mizushima, N., Noda, T., Yoshimori, T., Tanaka, Y., Ishii, T., George, M. D., Klionsky, D. J., Ohsumi, M., and Ohsumi, Y. (1998) A protein conjugation system essential for autophagy. Nature 395, 395-398
-
(1998)
Nature
, vol.395
, pp. 395-398
-
-
Mizushima, N.1
Noda, T.2
Yoshimori, T.3
Tanaka, Y.4
Ishii, T.5
George, M.D.6
Klionsky, D.J.7
Ohsumi, M.8
Ohsumi, Y.9
-
35
-
-
38049098543
-
The Atg12-Atg5 conjugate has a novel E3-like activity for protein lipidation in autophagy
-
Hanada, T., Noda, N. N., Satomi, Y., Ichimura, Y., Fujioka, Y., Takao, T., Inagaki, F., and Ohsumi, Y. (2007) The Atg12-Atg5 conjugate has a novel E3-like activity for protein lipidation in autophagy. J. Biol. Chem. 282, 37298-37302
-
(2007)
J. Biol. Chem.
, vol.282
, pp. 37298-37302
-
-
Hanada, T.1
Noda, N.N.2
Satomi, Y.3
Ichimura, Y.4
Fujioka, Y.5
Takao, T.6
Inagaki, F.7
Ohsumi, Y.8
-
36
-
-
27944504351
-
p62/SQSTM1 forms protein aggregates degraded by autophagy and has a protective effect on huntingtin-induced cell death
-
Bjørkøy, G., Lamark, T., Brech, A., Outzen, H., Perander, M., Overvatn, A., Stenmark, H., and Johansen, T. (2005) p62/SQSTM1 forms protein aggregates degraded by autophagy and has a protective effect on huntingtin-induced cell death. J. Cell Biol. 171, 603-614
-
(2005)
J. Cell Biol.
, vol.171
, pp. 603-614
-
-
Bjørkøy, G.1
Lamark, T.2
Brech, A.3
Outzen, H.4
Perander, M.5
Overvatn, A.6
Stenmark, H.7
Johansen, T.8
-
37
-
-
81055144784
-
Autophagy: Renovation of cells and tissues
-
Mizushima, N., and Komatsu, M. (2011) Autophagy: renovation of cells and tissues. Cell 147, 728-741
-
(2011)
Cell
, vol.147
, pp. 728-741
-
-
Mizushima, N.1
Komatsu, M.2
-
38
-
-
84862295360
-
Guidelines for the use and interpretation of assays for monitoring autophagy
-
Klionsky, D. J., Abdalla, F. C., Abeliovich, H., Abraham, R. T., Acevedo-Arozena, A., Adeli, K., Agholme, L., Agnello, M., Agostinis, P., Aguirre-Ghiso, J. A., Ahn, H. J., Ait-Mohamed, O., Ait-Si-Ali, S., Akematsu, T., Akira, S., Al-Younes, H. M., Al-Zeer, M. A., Albert, M. L., Albin, R. L., Alegre-Abarrategui, J., Aleo, M. F., Alirezaei, M., Almasan, A., Almonte-Becerril, M., Amano, A., Amaravadi, R., Amarnath, S., Amer, A. O., Andrieu-Abadie, N., Anantharam, V., Ann, D. K., Anoopkumar-Dukie, S., Aoki, H., Apostolova, N., Arancia, G., Aris, J. P., Asanuma, K., Asare, N. Y., Ashida, H., Askanas, V., Askew, D. S., Auberger, P., Baba, M., Backues, S. K., Baehrecke, E. H., Bahr, B. A., Bai, X. Y., Bailly, Y., Baiocchi, R., Baldini, G., Balduini, W., Ballabio, A., Bamber, B. A., Bampton, E. T., Banhegyi, G., Bartholomew, C. R., Bassham, D. C., Bast, R. C., Batoko, H., Bay, B. H., Beau, I., Bechet, D. M., Begley, T. J., Behl, C., Behrends, C., Bekri, S., Bellaire, B., Bendall, L. J., Benetti, L., Berliocchi, L., Bernardi, H., Bernassola, F., Besteiro, S., Bhatia-Kissova, I., Bi, X., Biard-Piechaczyk, M., Blum, J. S., Boise, L. H., Bonaldo, P., Boone, D. L., Bornhauser, B. C., Bortoluci, K. R., Bossis, I., Bost, F., Bourquin, J. P., Boya, P., Boyer-Guittaut, M., Bozhkov, P. V., Brady, N. R., Brancolini, C., Brech, A., Brenman, J. E., Brennand, A., Bresnick, E. H., Brest, P., Bridges, D., Bristol, M. L., Brookes, P. S., Brown, E. J., Brumell, J. H., Brunetti-Pierri, N., Brunk, U. T., Bulman, D. E., Bultman, S. J., Bultynck, G., Burbulla, L. F., Bursch, W., Butchar, J. P., Buzgariu, W., Bydlowski, S. P., Cadwell, K., Cahova, M., Cai, D., Cai, J., Cai, Q., Calabretta, B., Calvo-Garrido, J., Camougrand, N., Campanella, M., Campos-Salinas, J., Candi, E., Cao, L., Caplan, A. B., Carding, S. R., Cardoso, S. M., Carew, J. S., Carlin, C. R., Carmignac, V., Carneiro, L. A., Carra, S., Caruso, R. A., Casari, G., Casas, C., Castino, R., Cebollero, E., Cecconi, F., Celli, J., Chaachouay, H., Chae, H. J., Chai, C. Y., Chan, D. C., Chan, E. Y., Chang, R. C., Che, C. M., Chen, C. C., Chen, G. C., Chen, G. Q., Chen, M., Chen, Q., Chen, S. S., Chen, W., Chen, X., Chen, Y. G., Chen, Y., Chen, Y. J., Chen, Z., Cheng, A., Cheng, C. H., Cheng, Y., Cheong, H., Cheong, J. H., Cherry, S., Chess-Williams, R., Cheung, Z. H., Chevet, E., Chiang, H. L., Chiarelli, R., Chiba, T., Chin, L. S., Chiou, S. H., Chisari, F. V., Cho, C. H., Cho, D. H., Choi, A. M., Choi, D., Choi, K. S., Choi, M. E., Chouaib, S., Choubey, D., Choubey, V., Chu, C. T., Chuang, T. H., Chueh, S. H., Chun, T., Chwae, Y. J., Chye, M. L., Ciarcia, R., Ciriolo, M. R., Clague, M. J., Clark, R. S., Clarke, P. G., Clarke, R., Codogno, P., Coller, H. A., Colombo, M. I., Comincini, S., Condello, M., Condorelli, F., Cookson, M. R., Coombs, G. H., Coppens, I., Corbalan, R., Cossart, P., Costelli, P., Costes, S., Coto-Montes, A., Couve, E., Coxon, F. P., Cregg, J. M., Crespo, J. L., Cronje, M. J., Cuervo, A. M., Cullen, J. J., Czaja, M. J., D'Amelio, M., Darfeuille-Michaud, A., Davids, L. M., Davies, F. E., De Felici, M., de Groot, J. F., de Haan, C. A., De Martino, L., De Milito, A., De Tata, V., Debnath, J., Degterev, A., Dehay, B., Delbridge, L. M., Demarchi, F., Deng, Y. Z., Dengjel, J., Dent, P., Denton, D., Deretic, V., Desai, S. D., Devenish, R. J., Di Gioacchino, M., Di Paolo, G., Di Pietro, C., Diaz-Araya, G., Diaz-Laviada, I., Diaz-Meco, M. T., Diaz-Nido, J., Dikic, I., Dinesh-Kumar, S. P., Ding, W. X., Distelhorst, C. W., Diwan, A., Djavaheri-Mergny, M., Dokudovskaya, S., Dong, Z., Dorsey, F. C., Dosenko, V., Dowling, J. J., Doxsey, S., Dreux, M., Drew, M. E., Duan, Q., Duchosal, M. A., Duff, K., Dugail, I., Durbeej, M., Duszenko, M., Edelstein, C. L., Edinger, A. L., Egea, G., Eichinger, L., Eissa, N. T., Ekmekcioglu, S., El-Deiry, W. S., Elazar, Z., Elgendy, M., Ellerby, L. M., Eng, K. E., Engelbrecht, A. M., Engelender, S., Erenpreisa, J., Escalante, R., Esclatine, A., Eskelinen, E. L., Espert, L., Espina, V., Fan, H., Fan, J., Fan, Q. W., Fan, Z., Fang, S., Fang, Y., Fanto, M., Fanzani, A., Farkas, T., Farre, J. C., Faure, M., Fechheimer, M., Feng, C. G., Feng, J., Feng, Q., Feng, Y., Fesus, L., Feuer, R., Figueiredo-Pereira, M. E., Fimia, G. M., Fingar, D. C., Finkbeiner, S., Finkel, T., Finley, K. D., Fiorito, F., Fisher, E. A., Fisher, P. B., Flajolet, M., Florez-McClure, M. L., Florio, S., Fon, E. A., Fornai, F., Fortunato, F., Fotedar, R., Fowler, D. H., Fox, H. S., Franco, R., Frankel, L. B., Fransen, M., Fuentes, J. M., Fueyo, J., Fujii, J., Fujisaki, K., Fujita, E., Fukuda, M., Furukawa, R. H., Gaestel, M., Gailly, P., Gajewska, M., Galliot, B., Galy, V., Ganesh, S., Ganetzky, B., Ganley, I. G., Gao, F. B., Gao, G. F., Gao, J., Garcia, L., Garcia-Manero, G., Garcia-Marcos, M., Garmyn, M., Gartel, A. L. (2012) Guidelines for the use and interpretation of assays for monitoring autophagy. Autophagy 8, 445-544
-
(2012)
Autophagy
, vol.8
, pp. 445-544
-
-
Klionsky, D.J.1
Abdalla, F.C.2
Abeliovich, H.3
Abraham, R.T.4
Acevedo-Arozena, A.5
Adeli, K.6
Agholme, L.7
Agnello, M.8
Agostinis, P.9
Aguirre-Ghiso, J.A.10
Ahn, H.J.11
Ait-Mohamed, O.12
Ait-Si-Ali, S.13
Akematsu, T.14
Akira, S.15
Al-Younes, H.M.16
Al-Zeer, M.A.17
Albert, M.L.18
Albin, R.L.19
Alegre-Abarrategui, J.20
Aleo, M.F.21
Alirezaei, M.22
Almasan, A.23
Almonte-Becerril, M.24
Amano, A.25
Amaravadi, R.26
Amarnath, S.27
Amer, A.O.28
Andrieu-Abadie, N.29
Anantharam, V.30
Ann, D.K.31
Anoopkumar-Dukie, S.32
Aoki, H.33
Apostolova, N.34
Arancia, G.35
Aris, J.P.36
Asanuma, K.37
Asare, N.Y.38
Ashida, H.39
Askanas, V.40
Askew, D.S.41
Auberger, P.42
Baba, M.43
Backues, S.K.44
Baehrecke, E.H.45
Bahr, B.A.46
Bai, X.Y.47
Bailly, Y.48
Baiocchi, R.49
Baldini, G.50
Balduini, W.51
Ballabio, A.52
Bamber, B.A.53
Bampton, E.T.54
Banhegyi, G.55
Bartholomew, C.R.56
Bassham, D.C.57
Bast Jr., R.C.58
Batoko, H.59
Bay, B.H.60
Beau, I.61
Bechet, D.M.62
Begley, T.J.63
Behl, C.64
Behrends, C.65
Bekri, S.66
Bellaire, B.67
Bendall, L.J.68
Benetti, L.69
Berliocchi, L.70
Bernardi, H.71
Bernassola, F.72
Besteiro, S.73
Bhatia-Kissova, I.74
Bi, X.75
Biard-Piechaczyk, M.76
Blum, J.S.77
Boise, L.H.78
Bonaldo, P.79
Boone, D.L.80
Bornhauser, B.C.81
Bortoluci, K.R.82
Bossis, I.83
Bost, F.84
Bourquin, J.P.85
Boya, P.86
Boyer-Guittaut, M.87
Bozhkov, P.V.88
Brady, N.R.89
Brancolini, C.90
Brech, A.91
Brenman, J.E.92
Brennand, A.93
Bresnick, E.H.94
Brest, P.95
Bridges, D.96
Bristol, M.L.97
Brookes, P.S.98
Brown, E.J.99
more..
-
39
-
-
27644466759
-
Autophagy and signaling: Their role in cell survival and cell death
-
Codogno, P., and Meijer, A. J. (2005) Autophagy and signaling: their role in cell survival and cell death. Cell Death Differ. 12, 1509-1518
-
(2005)
Cell Death Differ.
, vol.12
, pp. 1509-1518
-
-
Codogno, P.1
Meijer, A.J.2
-
40
-
-
79551598347
-
AMPK and mTOR regulate autophagy through direct phosphorylation of Ulk1
-
Kim, J., Kundu, M., Viollet, B., and Guan, K. L. (2011) AMPK and mTOR regulate autophagy through direct phosphorylation of Ulk1. Nat. Cell Biol. 13, 132-141
-
(2011)
Nat. Cell Biol.
, vol.13
, pp. 132-141
-
-
Kim, J.1
Kundu, M.2
Viollet, B.3
Guan, K.L.4
-
41
-
-
66449083078
-
ULK1·ATG13·FIP200 complex mediates mTOR signaling and is essential for autophagy
-
Ganley, I. G., Lam du, H., Wang, J., Ding, X., Chen, S., and Jiang, X. (2009) ULK1·ATG13·FIP200 complex mediates mTOR signaling and is essential for autophagy. J. Biol. Chem. 284, 12297-12305
-
(2009)
J. Biol. Chem.
, vol.284
, pp. 12297-12305
-
-
Ganley, I.G.1
Lam Du, H.2
Wang, J.3
Ding, X.4
Chen, S.5
Jiang, X.6
-
42
-
-
0036629251
-
Cell cycle and death control: Long live Forkheads
-
Burgering, B. M., and Kops, G. J. (2002) Cell cycle and death control: long live Forkheads. Trends Biochem. Sci. 27, 352-360
-
(2002)
Trends Biochem. Sci.
, vol.27
, pp. 352-360
-
-
Burgering, B.M.1
Kops, G.J.2
-
43
-
-
36448968532
-
FoxO3 coordinately activates protein degradation by the autophagic/lysosomal and proteasomal pathways in atrophying muscle cells
-
Zhao, J., Brault, J. J., Schild, A., Cao, P., Sandri, M., Schiaffino, S., Lecker, S. H., and Goldberg, A. L. (2007) FoxO3 coordinately activates protein degradation by the autophagic/lysosomal and proteasomal pathways in atrophying muscle cells. Cell Metab. 6, 472-483
-
(2007)
Cell Metab.
, vol.6
, pp. 472-483
-
-
Zhao, J.1
Brault, J.J.2
Schild, A.3
Cao, P.4
Sandri, M.5
Schiaffino, S.6
Lecker, S.H.7
Goldberg, A.L.8
-
44
-
-
36448940798
-
FoxO3 controls autophagy in skeletal muscle in vivo
-
Mammucari, C., Milan, G., Romanello, V., Masiero, E., Rudolf, R., Del Piccolo, P., Burden, S. J., Di Lisi, R., Sandri, C., Zhao, J., Goldberg, A. L., Schiaffino, S., and Sandri, M. (2007) FoxO3 controls autophagy in skeletal muscle in vivo. Cell Metab. 6, 458-471
-
(2007)
Cell Metab.
, vol.6
, pp. 458-471
-
-
Mammucari, C.1
Milan, G.2
Romanello, V.3
Masiero, E.4
Rudolf, R.5
Del Piccolo, P.6
Burden, S.J.7
Di Lisi, R.8
Sandri, C.9
Zhao, J.10
Goldberg, A.L.11
Schiaffino, S.12
Sandri, M.13
-
45
-
-
67649467294
-
Dynamics and diversity in autophagy mechanisms: Lessons from yeast
-
Nakatogawa, H., Suzuki, K., Kamada, Y., and Ohsumi, Y. (2009) Dynamics and diversity in autophagy mechanisms: lessons from yeast. Nat. Rev. Mol. Cell Biol. 10, 458-467
-
(2009)
Nat. Rev. Mol. Cell Biol.
, vol.10
, pp. 458-467
-
-
Nakatogawa, H.1
Suzuki, K.2
Kamada, Y.3
Ohsumi, Y.4
-
46
-
-
77956416339
-
Autophagy in mammalian development and differentiation
-
Mizushima, N., and Levine, B. (2010) Autophagy in mammalian development and differentiation. Nat. Cell Biol. 12, 823-830
-
(2010)
Nat. Cell Biol.
, vol.12
, pp. 823-830
-
-
Mizushima, N.1
Levine, B.2
-
47
-
-
78651276331
-
The physiological regulation of glucose flux into muscle in vivo
-
Wasserman, D. H., Kang, L., Ayala, J. E., Fueger, P. T., and Lee-Young, R. S. (2011) The physiological regulation of glucose flux into muscle in vivo. J Exp. Biol. 214, 254-262
-
(2011)
J Exp. Biol.
, vol.214
, pp. 254-262
-
-
Wasserman, D.H.1
Kang, L.2
Ayala, J.E.3
Fueger, P.T.4
Lee-Young, R.S.5
-
48
-
-
0033126490
-
Banting Lecture 1997. Control of glucose uptake and release by the liver in vivo
-
Cherrington, A. D. (1999) Banting Lecture 1997. Control of glucose uptake and release by the liver in vivo. Diabetes 48, 1198-1214
-
(1999)
Diabetes
, vol.48
, pp. 1198-1214
-
-
Cherrington, A.D.1
-
49
-
-
0019997185
-
Effects of wheel running on food intake and weight gain of male and female rats
-
Tokuyama, K., Saito, M., and Okuda, H. (1982) Effects of wheel running on food intake and weight gain of male and female rats. Physiol. Behav. 28, 899-903
-
(1982)
Physiol. Behav.
, vol.28
, pp. 899-903
-
-
Tokuyama, K.1
Saito, M.2
Okuda, H.3
|