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1.
Activation of the myogenin promoter during mouse embryogenesis in the absence of positive autoregulation // Proc. Nat. Acad. Sci. USA, 1995. Vol. 92, N 2.-С.561-565

2.
Alderman Megan A. Diagnostic evaluation of metastatic rhabdomyosarcoma in effusion specimens // Diagn. Cytopathol., 2013. Vol. 41, N 11.-С.955-959

3.
Alderman Megan A. Diagnostic evaluation of metastatic rhabdomyosarcoma in effusion specimens // Diagn. Cytopathol., 2013. Vol. 41, N 11.-С.955-959

4.
Analysis of muscle fibre input dynamics using a myog:GFP transgenic trout model // J. Exp. Biol., 2015. Vol. 218, N 8.-С.1137-1142

5.
Bone morphogenetic protein inhibits differentiation and affects expression of helix-loop-helix regulatory molecules in myoblastic cells // J. Cell Biochem., 1993. Vol. 53, N 1.-С.51-60

6.
Bone morphogenetic protein-2 inhibits terminal differentiation of myogenic cells by suppressing the transcriptional activity of MyoD and myogenin // Exp. Cell Res., 1997. Vol. 230, N 2.-С.324-351

7.
Brennan Thomas J. Mutagenesis of the myogenin basic region identifies an ancient protein motif critical for activation of myogenesis // Pros. Nat. Acad. Sci., 1991. Vol. 88, N 13.-С.5675-5679

8.
Brown E.J. Induction and peak gene expression of insulin-like growth factor II follow that of myogenin during differentiation of BC3Н-1 muscle cells // Biochem. and Biophys. Res. Commun., 1992. Vol. 183, N 3.-С.1084-1089

9.
CARM1 activates Myogenin gene via PCAF in the early differentiation of TPA-induced rhabdomyosarcoma-derived cells // J. Cell. Biochem., 2010. Vol. 110, N 1.-С.162-170

10.
CARM1 activates Myogenin gene via PCAF in the early differentiation of TPA-induced rhabdomyosarcoma-derived cells // J. Cell. Biochem., 2010. Vol. 110, N 1.-С.162-170

11.
Characterisation and expression of myogenesis regulatory factors during in vitro myoblast development and in vivo fasting in the gilthead sea bream (Sparus aurata) // Compar. Biochem. and Physiol. A, 2014. Vol. 167.-С.90-99

12.
Colmenares Transformation-defective v-ski induces MyoD and myogenin expression but not myotube formation // Mol. and Cell. Biol., 1991. Vol. 11, N 2.-С.1167-1170

13.
Cross-talk between transcriptional regulation by thyroid hormone and myogenin: New aspects of the Ca{2+}-dependent expression of the fast-type sarcoplasmic reticulum Ca{2+}-ATPase // Biochem. J., 1998. Vol. 329, N 1.-С.131-136

14.
Differentiation of H9-c2 cardiomyoblasts: The role of adenylate cyclase system // J. Cell. Physiol., 2004. Vol. 198, N 3.-С.408-416

15.
Differentiation of H9-c2 cardiomyoblasts: The role of adenylate cyclase system // J. Cell. Physiol., 2004. Vol. 198, N 3.-С.408-416

16.
Dominov Janice A. POU homeodomain genes and myogenesis // Dev. Genet., 1996. Vol. 19, N 2.-С.108-118

17.
Falcone Inhibition of differentiation in myoblasts transformed by viral oncogenes is not necessarily mediated by down-regulation of MyoD and myogenin gene expression // J. Cell. Biochem., 1991, Suppl. 15 с.-С.23

18.
Grounds Miranda D. Expression of myodi and myogenin in thymic cells in vivo // J. Cell. Biochem., 1991, Suppl. 15 с.-С.38

19.
Growth factor dependent regulation of the muscle differentiation program // FASEB Journal, 1990. Vol. 4, N 7.-С.2009

20.
Hashimoto N. Role of myogenin in myogenesis in vitro // Zool. Sci., 1995. Vol. 12, N 6 Suppl..-С.78

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