AbstractThe MADS-box transcription factor MEF2 is expressed specifically in developing cardiac, somatic, and visceral muscle cell lineages during Drosophila embryogenesis and is required for myoblast differentiation and muscle morphogenesis. To define the mechanisms that regulate Mef2 transcription, we have analyzed the Mef2 upstream region for sequences sufficient to recapitulate the expression pattern of the gene in Drosophila embryos. Here we describe a complex enhancer located 5.8 kb upstream of the Drosophila Mef2 gene that controls transcription in cardial cells of the dorsal vessel, a subset of somatic muscle founder cells, and the visceral muscle cells. The core of this enhancer contains two evolutionarily conserved binding sites fo...
AbstractUnderstanding the regulatory circuitry controlling myogenesis is critical to understanding d...
AbstractThe D-mef2 gene encodes a MADS domain transcription factor expressed in differentiated muscl...
The transcriptional regulation of muscle development involves several complex processes that must wo...
AbstractThe MADS-box transcription factor MEF2 is expressed specifically in developing cardiac, soma...
The myocyte enhancer factor (MEF)-2 family of transcription factors has been implicated in the regul...
The myocyte enhancer factor (MEF)-2 family of transcription factors has been implicated in the regul...
Expression of the MADS domain transcription factor Myocyte Enhancer Factor 2 (MEF2) is regulated by ...
<div><p>Expression of the MADS domain transcription factor Myocyte Enhancer Factor 2 (MEF2) is regul...
The development of cardiac and somatic muscle is coordinated by many factors that are highly conserv...
AbstractThe myocyte enhancer factor-2 (MEF2) transcription factor plays a central role in the activa...
AbstractThe myocyte enhancer factor-2 (MEF2) transcription factor plays a central role in the activa...
Cell differentiation is controlled by key transcription factors, and a major question is how they or...
Cell differentiation is controlled by key transcription factors, and a major question is how they or...
AbstractThe D-mef2 gene encodes a MADS domain transcription factor expressed in differentiated muscl...
Cell differentiation is controlled by key transcription factors, and a major question is how they or...
AbstractUnderstanding the regulatory circuitry controlling myogenesis is critical to understanding d...
AbstractThe D-mef2 gene encodes a MADS domain transcription factor expressed in differentiated muscl...
The transcriptional regulation of muscle development involves several complex processes that must wo...
AbstractThe MADS-box transcription factor MEF2 is expressed specifically in developing cardiac, soma...
The myocyte enhancer factor (MEF)-2 family of transcription factors has been implicated in the regul...
The myocyte enhancer factor (MEF)-2 family of transcription factors has been implicated in the regul...
Expression of the MADS domain transcription factor Myocyte Enhancer Factor 2 (MEF2) is regulated by ...
<div><p>Expression of the MADS domain transcription factor Myocyte Enhancer Factor 2 (MEF2) is regul...
The development of cardiac and somatic muscle is coordinated by many factors that are highly conserv...
AbstractThe myocyte enhancer factor-2 (MEF2) transcription factor plays a central role in the activa...
AbstractThe myocyte enhancer factor-2 (MEF2) transcription factor plays a central role in the activa...
Cell differentiation is controlled by key transcription factors, and a major question is how they or...
Cell differentiation is controlled by key transcription factors, and a major question is how they or...
AbstractThe D-mef2 gene encodes a MADS domain transcription factor expressed in differentiated muscl...
Cell differentiation is controlled by key transcription factors, and a major question is how they or...
AbstractUnderstanding the regulatory circuitry controlling myogenesis is critical to understanding d...
AbstractThe D-mef2 gene encodes a MADS domain transcription factor expressed in differentiated muscl...
The transcriptional regulation of muscle development involves several complex processes that must wo...