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Regulation of Muscle Cell Growth and Differentiation by the Myod Family of Helix-Loop-Helix Proteins

1992
The skeletal muscle cell system provides a powerful model for exploring the mechanistic basis for the antagonism between cell growth and differentiation. The recent identification of the MyoD family of muscle-specific transcription factors now offers opportunities to dissect at the molecular level of the mechanisms through which defined cell type ...
L, Li, E N, Olson
openaire   +2 more sources

Affinity of synthetic peptide fragments of MyoD for Id1 protein and their biological effects in several cancer cells

Journal of Peptide Science, 2010
AbstractMyoD is a DNA‐binding protein capable of specific interactions that involve the helix–loop–helix (HLH) domain. The HLH motif of MyoD can form oligomers with the HLH motif of Id1 (the inhibitor of DNA‐binding proteins) that folds into a highly stable helical conformation stabilized by the self‐association.
Chiu-Heng, Chen   +4 more
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EID-2, a novel member of the EID family of p300-binding proteins inhibits transactivation by MyoD

Gene, 2003
Skeletal muscle differentiation has been shown to be dependent on the expression of Rb and p300. We recently cloned a novel inhibitor of muscle differentiation called EID-1, which interacted with both of these factors. In a database search for related molecules, we have cloned and characterized a new EID-1 family member, EID-2.
Aimin, Ji   +3 more
openaire   +2 more sources

Regulation of MyoD gene transcription and protein function by the transforming domains of the adenovirus E1A oncoprotein.

Oncogene, 1993
It has been demonstrated that the adenovirus E1A gene products inhibit myogenic differentiation in the mouse C2 muscle cell line. During myogenic differentiation, cell growth and tissue-specific gene expression are mutually exclusive. Since E1A exerts multiple effects on different cellular pathways through alteration of cell growth control and ...
Maurizia Caruso   +3 more
openaire   +3 more sources

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