-
1
-
-
24344491888
-
MyoD and the transcriptional control of myogenesis
-
Berkes C.A., Tapscott S.J. MyoD and the transcriptional control of myogenesis. Semin. Cell Dev. Biol. 2005, 16:585-595.
-
(2005)
Semin. Cell Dev. Biol.
, vol.16
, pp. 585-595
-
-
Berkes, C.A.1
Tapscott, S.J.2
-
2
-
-
0037278616
-
The formation of skeletal muscle: from somite to limb
-
Buckingham M., Bajard L., Chang T., Daubas P., Hadchouel J., Meilhac S., Montarras D., Rocancourt D., Relaix F. The formation of skeletal muscle: from somite to limb. J. Anat. 2003, 202:59-68.
-
(2003)
J. Anat.
, vol.202
, pp. 59-68
-
-
Buckingham, M.1
Bajard, L.2
Chang, T.3
Daubas, P.4
Hadchouel, J.5
Meilhac, S.6
Montarras, D.7
Rocancourt, D.8
Relaix, F.9
-
3
-
-
32544457732
-
Global and gene-specific analyses show distinct roles for Myod and Myog at a common set of promoters
-
Cao Y., Kumar R.M., Penn B.H., Berkes C.A., Kooperberg C., Boyer L.A., Young R.A., Tapscott S.J. Global and gene-specific analyses show distinct roles for Myod and Myog at a common set of promoters. EMBO J. 2006, 25:502-511.
-
(2006)
EMBO J.
, vol.25
, pp. 502-511
-
-
Cao, Y.1
Kumar, R.M.2
Penn, B.H.3
Berkes, C.A.4
Kooperberg, C.5
Boyer, L.A.6
Young, R.A.7
Tapscott, S.J.8
-
4
-
-
0036744815
-
The regulation of Notch signaling controls satellite cell activation and cell fate determination in postnatal myogenesis
-
Conboy I.M., Rando T.A. The regulation of Notch signaling controls satellite cell activation and cell fate determination in postnatal myogenesis. Dev. Cell 2002, 3:397-409.
-
(2002)
Dev. Cell
, vol.3
, pp. 397-409
-
-
Conboy, I.M.1
Rando, T.A.2
-
5
-
-
0032841707
-
In vivo satellite cell activation via Myf5 and MyoD in regenerating mouse skeletal muscle
-
Cooper R.N., Tajbakhsh S., Mouly V., Cossu G., Buckingham M., Butler-Browne G.S. In vivo satellite cell activation via Myf5 and MyoD in regenerating mouse skeletal muscle. J. Cell Sci. 1999, 112(Pt 17):2895-2901.
-
(1999)
J. Cell Sci.
, vol.112
, Issue.PART 17
, pp. 2895-2901
-
-
Cooper, R.N.1
Tajbakhsh, S.2
Mouly, V.3
Cossu, G.4
Buckingham, M.5
Butler-Browne, G.S.6
-
6
-
-
0030093588
-
Regulatory factors in the control of muscle development
-
Dauncey M.J., Gilmour R.S. Regulatory factors in the control of muscle development. Proc. Nutr. Soc. 1996, 55:543-559.
-
(1996)
Proc. Nutr. Soc.
, vol.55
, pp. 543-559
-
-
Dauncey, M.J.1
Gilmour, R.S.2
-
7
-
-
35748951646
-
Target gene selectivity of the myogenic basic helix-loop-helix transcription factor myogenin in embryonic muscle
-
Davie J.K., Cho J.H., Meadows E., Flynn J.M., Knapp J.R., Klein W.H. Target gene selectivity of the myogenic basic helix-loop-helix transcription factor myogenin in embryonic muscle. Dev. Biol. 2007, 311:650-664.
-
(2007)
Dev. Biol.
, vol.311
, pp. 650-664
-
-
Davie, J.K.1
Cho, J.H.2
Meadows, E.3
Flynn, J.M.4
Knapp, J.R.5
Klein, W.H.6
-
8
-
-
35348851409
-
De-phosphorylation of MyoD is linking nerve-evoked activity to fast myosin heavy chain expression in rodent adult skeletal muscle
-
Ekmark M., Rana Z.A., Stewart G., Hardie D.G., Gundersen K. De-phosphorylation of MyoD is linking nerve-evoked activity to fast myosin heavy chain expression in rodent adult skeletal muscle. J. Physiol. 2007, 584:637-650.
-
(2007)
J. Physiol.
, vol.584
, pp. 637-650
-
-
Ekmark, M.1
Rana, Z.A.2
Stewart, G.3
Hardie, D.G.4
Gundersen, K.5
-
9
-
-
0026593562
-
Regulatory elements that control the lineage-specific expression of myoD
-
Goldhamer D.J., Faerman A., Shani M., Emerson C.P. Regulatory elements that control the lineage-specific expression of myoD. Science 1992, 256:538-542.
-
(1992)
Science
, vol.256
, pp. 538-542
-
-
Goldhamer, D.J.1
Faerman, A.2
Shani, M.3
Emerson, C.P.4
-
10
-
-
65249118328
-
Myostatin regulates fiber-type composition of skeletal muscle by regulating MEF2 and MyoD gene expression
-
Hennebry A., Berry C., Siriett V., O'Callaghan P., Chau L., Watson T., Sharma M., Kambadur R. Myostatin regulates fiber-type composition of skeletal muscle by regulating MEF2 and MyoD gene expression. Am. J. Physiol. Cell Physiol. 2009, 296:C525-C534.
-
(2009)
Am. J. Physiol. Cell Physiol.
, vol.296
-
-
Hennebry, A.1
Berry, C.2
Siriett, V.3
O'Callaghan, P.4
Chau, L.5
Watson, T.6
Sharma, M.7
Kambadur, R.8
-
11
-
-
67649867943
-
Progenitors of skeletal muscle satellite cells express the muscle determination gene, MyoD
-
Kanisicak O., Mendez J.J., Yamamoto S., Yamamoto M., Goldhamer D.J. Progenitors of skeletal muscle satellite cells express the muscle determination gene, MyoD. Dev. Biol. 2009, 332:131-141.
-
(2009)
Dev. Biol.
, vol.332
, pp. 131-141
-
-
Kanisicak, O.1
Mendez, J.J.2
Yamamoto, S.3
Yamamoto, M.4
Goldhamer, D.J.5
-
12
-
-
53349165616
-
Meat quality is associated with muscle metabolic status but not contractile myofiber type composition in premature pigs
-
Li X., Yang X., Shan B., Shi J., Xia D., Wegner J., Zhao R. Meat quality is associated with muscle metabolic status but not contractile myofiber type composition in premature pigs. Meat Sci. 2009, 81:218-223.
-
(2009)
Meat Sci.
, vol.81
, pp. 218-223
-
-
Li, X.1
Yang, X.2
Shan, B.3
Shi, J.4
Xia, D.5
Wegner, J.6
Zhao, R.7
-
13
-
-
45249105110
-
An update on MyoD evolution in teleosts and a proposed consensus nomenclature to accommodate the tetraploidization of different vertebrate genomes
-
Macqueen D.J., Johnston I.A. An update on MyoD evolution in teleosts and a proposed consensus nomenclature to accommodate the tetraploidization of different vertebrate genomes. PLoS ONE 2008, 3:e1567.
-
(2008)
PLoS ONE
, vol.3
-
-
Macqueen, D.J.1
Johnston, I.A.2
-
14
-
-
41049096342
-
Controlled differentiation of myoblast cells into fast and slow muscle fibers
-
Matsuoka Y., Inoue A. Controlled differentiation of myoblast cells into fast and slow muscle fibers. Cell Tissue Res. 2008, 332:123-132.
-
(2008)
Cell Tissue Res.
, vol.332
, pp. 123-132
-
-
Matsuoka, Y.1
Inoue, A.2
-
15
-
-
35548949872
-
Pbx homeodomain proteins direct Myod activity to promote fast-muscle differentiation
-
Maves L., Waskiewicz A.J., Paul B., Cao Y., Tyler A., Moens C.B., Tapscott S.J. Pbx homeodomain proteins direct Myod activity to promote fast-muscle differentiation. Development 2007, 134:3371-3382.
-
(2007)
Development
, vol.134
, pp. 3371-3382
-
-
Maves, L.1
Waskiewicz, A.J.2
Paul, B.3
Cao, Y.4
Tyler, A.5
Moens, C.B.6
Tapscott, S.J.7
-
16
-
-
0036333788
-
The meso-angioblast: a multipotent, self-renewing cell that originates from the dorsal aorta and differentiates into most mesodermal tissues
-
Minasi M.G.MR., De Angelis L., Borello U., Berarducci B., Innocenzi A., Caprioli A., Sirabella D., Baiocchi M., De Maria R., Boratto R., Jaffredo T., Broccoli V., Bianco P., Cossu G. The meso-angioblast: a multipotent, self-renewing cell that originates from the dorsal aorta and differentiates into most mesodermal tissues. Development 2002, 129:2773-2783.
-
(2002)
Development
, vol.129
, pp. 2773-2783
-
-
Minasi, M.G.M.R.1
De Angelis, L.2
Borello, U.3
Berarducci, B.4
Innocenzi, A.5
Caprioli, A.6
Sirabella, D.7
Baiocchi, M.8
De Maria, R.9
Boratto, R.10
Jaffredo, T.11
Broccoli, V.12
Bianco, P.13
Cossu, G.14
-
17
-
-
44649179781
-
Comparative in silico analysis identifies bona fide MyoD binding sites within the myocyte stress 1 gene promoter
-
Ounzain S., Dacwag C.S., Samani N.J., Imbalzano A.N., Chong N.W. Comparative in silico analysis identifies bona fide MyoD binding sites within the myocyte stress 1 gene promoter. BMC Mol. Biol. 2008, 9:50.
-
(2008)
BMC Mol. Biol.
, vol.9
, pp. 50
-
-
Ounzain, S.1
Dacwag, C.S.2
Samani, N.J.3
Imbalzano, A.N.4
Chong, N.W.5
-
18
-
-
4644220664
-
A MyoD-generated feed-forward circuit temporally patterns gene expression during skeletal muscle differentiation
-
Penn B.H., Bergstrom D.A., Dilworth F.J., Bengal E., Tapscott S.J. A MyoD-generated feed-forward circuit temporally patterns gene expression during skeletal muscle differentiation. Genes Dev. 2004, 18:2348-2353.
-
(2004)
Genes Dev.
, vol.18
, pp. 2348-2353
-
-
Penn, B.H.1
Bergstrom, D.A.2
Dilworth, F.J.3
Bengal, E.4
Tapscott, S.J.5
-
19
-
-
0023969084
-
The aerobic capacity of locomotory muscles in the tufted duck, Aythya fuligula
-
Turner D.L., Butler P.J. The aerobic capacity of locomotory muscles in the tufted duck, Aythya fuligula. J. Exp. Biol. 1988, 135:445-460.
-
(1988)
J. Exp. Biol.
, vol.135
, pp. 445-460
-
-
Turner, D.L.1
Butler, P.J.2
-
20
-
-
4644327203
-
New SNPs in the coding and 5' flanking regions of porcine MYOD1 (MYF3) and MYF5 genes
-
Urbanski P., Kuryl J. New SNPs in the coding and 5' flanking regions of porcine MYOD1 (MYF3) and MYF5 genes. J. Appl. Genet. 2004, 45:325-329.
-
(2004)
J. Appl. Genet.
, vol.45
, pp. 325-329
-
-
Urbanski, P.1
Kuryl, J.2
-
21
-
-
0034440770
-
Delayed embryonic development of mouse masseter muscle correlates with delayed MyoD family expression
-
Yamane A., Ohnuki Y., Saeki Y. Delayed embryonic development of mouse masseter muscle correlates with delayed MyoD family expression. J. Dent. Res. 2000, 79:1933-1936.
-
(2000)
J. Dent. Res.
, vol.79
, pp. 1933-1936
-
-
Yamane, A.1
Ohnuki, Y.2
Saeki, Y.3
-
22
-
-
63049120997
-
MyoD and E-protein heterodimers switch rhabdomyosarcoma cells from an arrested myoblast phase to a differentiated state
-
Yang Z., MacQuarrie K.L., Analau E., Tyler A.E., Dilworth F.J., Cao Y., Diede S.J., Tapscott S.J. MyoD and E-protein heterodimers switch rhabdomyosarcoma cells from an arrested myoblast phase to a differentiated state. Genes Dev. 2009, 23:694-707.
-
(2009)
Genes Dev.
, vol.23
, pp. 694-707
-
-
Yang, Z.1
MacQuarrie, K.L.2
Analau, E.3
Tyler, A.E.4
Dilworth, F.J.5
Cao, Y.6
Diede, S.J.7
Tapscott, S.J.8
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