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Tbx20 以剂量依赖的方式调节小鼠心脏和运动神经元发育所需的转录因子网络。

Tbx20 dose-dependently regulates transcription factor networks required for mouse heart and motoneuron development.

作者信息

Takeuchi Jun K, Mileikovskaia Maria, Koshiba-Takeuchi Kazuko, Heidt Analeah B, Mori Alessandro D, Arruda Eric P, Gertsenstein Marina, Georges Romain, Davidson Lorinda, Mo Rong, Hui Chi-Chung, Henkelman R Mark, Nemer Mona, Black Brian L, Nagy Andras, Bruneau Benoit G

机构信息

Cardiovascular Research, The Hospital for Sick Children, Toronto, ON, M5G 1X8, Canada.

出版信息

Development. 2005 May;132(10):2463-74. doi: 10.1242/dev.01827. Epub 2005 Apr 20.

DOI:10.1242/dev.01827
PMID:15843409
Abstract

To elucidate the function of the T-box transcription factor Tbx20 in mammalian development, we generated a graded loss-of-function series by transgenic RNA interference in entirely embryonic stem cell-derived mouse embryos. Complete Tbx20 knockdown resulted in defects in heart formation, including hypoplasia of the outflow tract and right ventricle, which derive from the anterior heart field (AHF), and decreased expression of Nkx2-5 and Mef2c, transcription factors required for AHF formation. A mild knockdown led to persistent truncus arteriosus (unseptated outflow tract) and hypoplastic right ventricle, entities similar to human congenital heart defects, and demonstrated a critical requirement for Tbx20 in valve formation. Finally, an intermediate knockdown revealed a role for Tbx20 in motoneuron development, specifically in the regulation of the transcription factors Isl2 and Hb9, which are important for terminal differentiation of motoneurons. Tbx20 could activate promoters/enhancers of several genes in cultured cells, including the Mef2c AHF enhancer and the Nkx2-5 cardiac enhancer. The Mef2c AHF enhancer relies on Isl1- and Gata-binding sites. We identified a similar Isl1 binding site in the Nkx2-5 AHF enhancer, which in transgenic mouse embryos was essential for activity in a large part of the heart, including the outflow tract. Tbx20 synergized with Isl1 and Gata4 to activate both the Mef2c and Nkx2-5 enhancers, thus providing a unifying mechanism for gene activation by Tbx20 in the AHF. We conclude that Tbx20 is positioned at a critical node in transcription factor networks required for heart and motoneuron development where it dose-dependently regulates gene expression.

摘要

为阐明T盒转录因子Tbx20在哺乳动物发育中的功能,我们通过在完全由胚胎干细胞衍生的小鼠胚胎中进行转基因RNA干扰,构建了一个功能逐渐丧失的系列模型。完全敲低Tbx20会导致心脏形成缺陷,包括源自前心脏区域(AHF)的流出道和右心室发育不全,以及AHF形成所需的转录因子Nkx2-5和Mef2c的表达降低。轻度敲低会导致持续性动脉干(流出道未分隔)和右心室发育不全,这些情况类似于人类先天性心脏缺陷,并证明Tbx20在瓣膜形成中至关重要。最后,中度敲低揭示了Tbx20在运动神经元发育中的作用,特别是在调节对运动神经元终末分化很重要的转录因子Isl2和Hb9方面。Tbx20可以激活培养细胞中几个基因的启动子/增强子,包括Mef2c AHF增强子和Nkx2-5心脏增强子。Mef2c AHF增强子依赖于Isl1和Gata结合位点。我们在Nkx2-5 AHF增强子中鉴定出一个类似的Isl1结合位点,在转基因小鼠胚胎中,该位点对于包括流出道在内的大部分心脏区域的活性至关重要。Tbx20与Isl1和Gata4协同激活Mef2c和Nkx2-5增强子,从而为Tbx20在AHF中激活基因提供了一种统一机制。我们得出结论,Tbx20位于心脏和运动神经元发育所需的转录因子网络的关键节点,在那里它以剂量依赖的方式调节基因表达。

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