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Myocardin Marks the Earliest Cardiac Gene Expression and Plays an Important Role in Heart Development

机译:心肌素标记最早的心脏基因表达并在心脏发育中起重要作用

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摘要

Myocardin belongs to the SAP domain family of transcription factors and is expressed specifically in cardiac and smooth muscle during embryogenesis and in adulthood. Myocardin functions as a transcriptional coactivator of SRF and is sufficient and necessary for smooth muscle gene expression. However, the in vivo function of myocardin during cardiogenesis is not completely understood. Here we clone myocardin from chick embryonic hearts and show that myocardin protein sequences are highly conserved cross species. Detailed studies of chick myocardin expression reveal that myocardin is expressed in cardiac and smooth muscle lineage during early embryogenesis, similar to that found in mouse. Interestingly, the expression of myocardin in the heart was found enriched in the outflow tract and the sinoatrial segments shortly after the formation of linear heart tube. Such expression pattern is also maintained in later developing embryos, suggesting that myocardin may play a unique role in the formation of those cardiac modules. Similar to its mouse counterpart, chick myocardin is able to activate cardiac and smooth muscle promoter reporter genes and induce smooth muscle gene expression in nonmuscle cells. Ectopic overexpression of myocardin enlarged the embryonic chick heart. Conversely, repression of the endogenous chick myocardin using antisense oligonucleotides or a dominant negative mutant form of myocardin inhibited cardiogenesis. Together, our data place myocardin as one of the earliest cardiac marker genes for cardiogenesis and support the idea that myocardin plays an essential role in cardiac gene expression and cardiogenesis.
机译:心肌素属于转录因子的SAP结构域家族,在胚胎发生过程中和成年期在心肌和平滑肌中特异性表达。心肌蛋白起SRF的转录共激活因子的作用,对于平滑肌基因表达是足够的和必要的。然而,心肌蛋白在心脏发生过程中的体内功能尚不完全清楚。在这里,我们从雏鸡胚胎心脏中克隆了心肌素,并表明心肌素蛋白序列是高度保守的交叉物种。鸡心肌素表达的详细研究表明,心肌素在早期胚胎发生过程中在心脏和平滑肌谱系中表达,与在小鼠中发现的相似。有趣的是,在线性心管形成后不久,发现心肌中心肌的表达在流出道和窦房节中富集。这种表达模式在以后发育的胚胎中也得到维持,表明心肌素可能在那些心脏模块的形成中起独特作用。类似于其小鼠对应物,小鸡心肌素能够激活心脏和平滑肌启动子报告基因,并诱导非肌肉细胞中平滑肌基因表达。心肌素的异位过表达扩大了胚胎雏鸡的心脏。相反,使用反义寡核苷酸或心肌素的显性负突变体形式抑制内源性鸡心肌素会抑制心脏发生。总之,我们的数据将心肌素视为最早的心脏标记基因之一,并支持以下观点:心肌素在心脏基因表达和心脏发生中起着至关重要的作用。

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