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首页> 外文期刊>Human Molecular Genetics >Shox2 mediates Tbx5 activity by regulating Bmp4 in the pacemaker region of the developing heart.
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Shox2 mediates Tbx5 activity by regulating Bmp4 in the pacemaker region of the developing heart.

机译:Shox2通过调节心脏心脏起搏器区域的Bmp4介导Tbx5活性。

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摘要

Heart formation requires a highly balanced network of transcriptional activation of genes. The homeodomain transcription factor, Shox2, is essential for the formation of the sinoatrial valves and for the development of the pacemaking system. The elucidation of molecular mechanisms underlying the development of pacemaker tissue has gained clinical interest as defects in its patterning can be related to atrial arrhythmias. We have analyzed putative targets of Shox2 and identified the Bmp4 gene as a direct target. Shox2 interacts directly with the Bmp4 promoter in chromatin immunoprecipitation assays and activates transcription in luciferase-reporter assays. In addition, ectopic expression of Shox2 in Xenopus embryos stimulates transcription of the Bmp4 gene, and silencing of Shox2 in cardiomyocytes leads to a reduction in the expression of Bmp4. In Tbx5(del/+) mice, a model for Holt-Oram syndrome, and Shox2(-/-) mice, we show that the T-box transcription factor Tbx5 is a regulator of Shox2 expression in the inflow tract and that Bmp4 is regulated by Shox2 in this compartment of the embryonic heart. In addition, we could show that Tbx5 acts cooperatively with Nkx2.5 to regulate the expression of Shox2 and Bmp4. This work establishes a link between Tbx5, Shox2 and Bmp4 in the pacemaker region of the developing heart and thus contributes to the unraveling of the intricate interplay between the heart-specific transcriptional machinery and developmental signaling pathways.
机译:心脏的形成需要高度平衡的基因转录激活网络。同源结构域转录因子Shox2对窦房动脉瓣的形成和起搏系统的发展至关重要。阐明起搏器组织发育的分子机制已获得临床关注,因为其构图缺陷可能与房性心律失常有关。我们已经分析了Shox2的假定目标,并确定了Bmp4基因为直接目标。 Shox2在染色质免疫沉淀测定中直接与Bmp4启动子相互作用,并在萤光素酶报告测定中激活转录。此外,非洲爪蟾胚胎中Shox2的异位表达刺激了Bmp4基因的转录,而心肌细胞中Shox2的沉默导致Bmp4表达的降低。在Tbx5(del / +)小鼠(Holt-Oram综合征模型)和Shox2(-/-)小鼠中,我们显示T盒转录因子Tbx5是流入通道中Shox2表达的调节剂,而Bmp4是由Shox2在胚胎心脏的这个区室中调控。此外,我们可以证明Tbx5与Nkx2.5协同作用来调节Shox2和Bmp4的表达。这项工作在发育中的心脏起搏器区域中建立了Tbx5,Shox2和Bmp4之间的联系,从而有助于揭示心脏特异性转录机制与发育信号通路之间复杂的相互作用。

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