Expression of the MADS domain transcription factor Myocyte Enhancer Factor 2 (MEF2) is regulated by numerous and overlapping enhancers which tightly control its transcription in the mesoderm. To understand how Mef2 expression is controlled in the heart, we identified a late stage Mef2 cardiac enhancer that is active in all heart cells beginning at stage 14 of embryonic development. This enhancer is regulated by the NK-homeodomain transcription factor Tinman, and the GATA transcription factor Pannier through both direct and indirect interactions with the enhancer. Since Tinman, Pannier and MEF2 are evolutionarily conserved from Drosophila to vertebrates, and since their vertebrate homologs can convert mouse fibroblast cells to cardiomyocytes...
Drosophila heart development is initiated by bilaterally symmetrical primordia to form a simple tubu...
AbstractHeart formation in vertebrates and fruit flies requires signaling by bone morphogenetic prot...
<div><p>The NK homeodomain factor Tinman is a crucial regulator of early mesoderm patterning and, to...
<div><p>Expression of the MADS domain transcription factor Myocyte Enhancer Factor 2 (MEF2) is regul...
AbstractThe MADS-box transcription factor MEF2 is expressed specifically in developing cardiac, soma...
The development of cardiac and somatic muscle is coordinated by many factors that are highly conserv...
AbstractDuring Drosophila embryogenesis, the homeobox gene tinman is expressed in the dorsal mesoder...
AbstractThe MADS-box transcription factor MEF2 is expressed specifically in developing cardiac, soma...
In Drosophila, heart progenitors arise from bilaterally symmetric positions in the dorsal mesoderm w...
<p>(A)Diagram of the <i>Mef2</i> gene and its cardiac enhancers. The most distal enhancer (-6877/-63...
Summary: The Drosophila homeobox gene tinman plays a critical role in subdividing the early meso...
In Drosophila, heart progenitors arise from bilaterally symmetric positions in the dorsal mesoderm w...
AbstractHeart formation in vertebrates and fruit flies requires signaling by bone morphogenetic prot...
The NK homeodomain factor Tinman is a crucial regulator of early mesoderm patterning and, together w...
The NK homeodomain factor Tinman is a crucial regulator of early mesoderm patterning and, together w...
Drosophila heart development is initiated by bilaterally symmetrical primordia to form a simple tubu...
AbstractHeart formation in vertebrates and fruit flies requires signaling by bone morphogenetic prot...
<div><p>The NK homeodomain factor Tinman is a crucial regulator of early mesoderm patterning and, to...
<div><p>Expression of the MADS domain transcription factor Myocyte Enhancer Factor 2 (MEF2) is regul...
AbstractThe MADS-box transcription factor MEF2 is expressed specifically in developing cardiac, soma...
The development of cardiac and somatic muscle is coordinated by many factors that are highly conserv...
AbstractDuring Drosophila embryogenesis, the homeobox gene tinman is expressed in the dorsal mesoder...
AbstractThe MADS-box transcription factor MEF2 is expressed specifically in developing cardiac, soma...
In Drosophila, heart progenitors arise from bilaterally symmetric positions in the dorsal mesoderm w...
<p>(A)Diagram of the <i>Mef2</i> gene and its cardiac enhancers. The most distal enhancer (-6877/-63...
Summary: The Drosophila homeobox gene tinman plays a critical role in subdividing the early meso...
In Drosophila, heart progenitors arise from bilaterally symmetric positions in the dorsal mesoderm w...
AbstractHeart formation in vertebrates and fruit flies requires signaling by bone morphogenetic prot...
The NK homeodomain factor Tinman is a crucial regulator of early mesoderm patterning and, together w...
The NK homeodomain factor Tinman is a crucial regulator of early mesoderm patterning and, together w...
Drosophila heart development is initiated by bilaterally symmetrical primordia to form a simple tubu...
AbstractHeart formation in vertebrates and fruit flies requires signaling by bone morphogenetic prot...
<div><p>The NK homeodomain factor Tinman is a crucial regulator of early mesoderm patterning and, to...