Virtually all smooth muscle genes analyzed to date contain two or more essential binding sites for serum response factor (SRF) in their control regions. Because SRF is expressed in a wide range of cell types, it alone cannot account for smooth muscle-specific gene expression. We show that myocardin, a cardiac muscle- and smooth muscle-specific transcriptional coactivator of SRF, can activate smooth muscle gene expression in a variety of nonmuscle cell types via its association with SRF. Homodimerization of myocardin is required for maximal transcriptional activity and provides a mechanism for cooperative activation of smooth muscle genes by SRF–myocardin complexes bound to different SRF binding sites. These findings identify myocardin as a ...
Skeletal and smooth muscle can mutually transdifferentiate, but little molecular insight exists as t...
Formation of the vascular system requires differentiation and patterning of endothelial and smooth m...
Formation of the vascular system requires differentiation and patterning of endothelial and smooth m...
Virtually all smooth muscle genes analyzed to date contain two or more essential binding sites for s...
AbstractSerum response factor (SRF) regulates transcription of numerous muscle and growth factor-ind...
AbstractThe Serum Response Factor (SRF) coactivator myocardin stimulates the transcription of multip...
Differentiation of smooth muscle cells is accompanied by the transcriptional activation of an array ...
Differentiation of smooth muscle cells is accompanied by the transcriptional activation of an array ...
AbstractSerum response factor (SRF) regulates transcription of numerous muscle and growth factor-ind...
Vascular smooth muscle cells (VSMCs) play a critical role in the embryonic development and physiolog...
This work explores the role of the myocardin family of serum response factor (SRF) co-factors in smo...
This work explores the role of the myocardin family of serum response factor (SRF) co-factors in smo...
Background—Myocardin (Myocd) is a strong coactivator that binds the serum response factor (SRF) tran...
AbstractThe Serum Response Factor (SRF) coactivator myocardin stimulates the transcription of multip...
Skeletal and smooth muscle can mutually transdifferentiate, but little molecular insight exists as t...
Skeletal and smooth muscle can mutually transdifferentiate, but little molecular insight exists as t...
Formation of the vascular system requires differentiation and patterning of endothelial and smooth m...
Formation of the vascular system requires differentiation and patterning of endothelial and smooth m...
Virtually all smooth muscle genes analyzed to date contain two or more essential binding sites for s...
AbstractSerum response factor (SRF) regulates transcription of numerous muscle and growth factor-ind...
AbstractThe Serum Response Factor (SRF) coactivator myocardin stimulates the transcription of multip...
Differentiation of smooth muscle cells is accompanied by the transcriptional activation of an array ...
Differentiation of smooth muscle cells is accompanied by the transcriptional activation of an array ...
AbstractSerum response factor (SRF) regulates transcription of numerous muscle and growth factor-ind...
Vascular smooth muscle cells (VSMCs) play a critical role in the embryonic development and physiolog...
This work explores the role of the myocardin family of serum response factor (SRF) co-factors in smo...
This work explores the role of the myocardin family of serum response factor (SRF) co-factors in smo...
Background—Myocardin (Myocd) is a strong coactivator that binds the serum response factor (SRF) tran...
AbstractThe Serum Response Factor (SRF) coactivator myocardin stimulates the transcription of multip...
Skeletal and smooth muscle can mutually transdifferentiate, but little molecular insight exists as t...
Skeletal and smooth muscle can mutually transdifferentiate, but little molecular insight exists as t...
Formation of the vascular system requires differentiation and patterning of endothelial and smooth m...
Formation of the vascular system requires differentiation and patterning of endothelial and smooth m...