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Tbx5与Nkx2-5相互作用并协同促进心肌细胞分化。

Tbx5 associates with Nkx2-5 and synergistically promotes cardiomyocyte differentiation.

作者信息

Hiroi Y, Kudoh S, Monzen K, Ikeda Y, Yazaki Y, Nagai R, Komuro I

机构信息

Department of Cardiovascular Medicine, University of Tokyo Graduate School of Medicine, Tokyo, Japan.

出版信息

Nat Genet. 2001 Jul;28(3):276-80. doi: 10.1038/90123.

Abstract

The cardiac homeobox protein Nkx2-5 is essential in cardiac development, and mutations in Csx (which encodes Nkx2-5) cause various congenital heart diseases. Using the yeast two-hybrid system with Nkx2-5 as the 'bait', we isolated the T-box-containing transcription factor Tbx5; mutations in TBX5 cause heart and limb malformations in Holt-Oram syndrome (HOS). Co-transfection of Nkx2-5 and Tbx5 into COS-7 cells showed that they also associate with each other in mammalian cells. Glutathione S-transferase (GST) 'pull-down' assays indicated that the N-terminal domain and N-terminal part of the T-box of Tbx5 and the homeodomain of Nkx2-5 were necessary for their interaction. Tbx5 and Nkx2-5 directly bound to the promoter of the gene for cardiac-specific natriuretic peptide precursor type A (Nppa) in tandem, and both transcription factors showed synergistic activation. Deletion analysis showed that both the N-terminal domain and T-box of Tbx5 were important for this transactivation. A G80R mutation of Tbx5, which causes substantial cardiac defects with minor skeletal abnormalities in HOS, did not activate Nppa or show synergistic activation, whereas R237Q, which causes upper-limb malformations without cardiac abnormalities, activated the Nppa promoter to a similar extent to that of wildtype Tbx5. P19CL6 cell lines overexpressing wildtype Tbx5 started to beat earlier and expressed cardiac-specific genes more abundantly than did parental P19CL6 cells, whereas cell lines expressing the G80R mutant did not differentiate into beating cardiomyocytes. These results indicate that two different types of cardiac transcription factors synergistically induce cardiac development.

摘要

心脏同源盒蛋白Nkx2-5在心脏发育中至关重要,而Csx(编码Nkx2-5)的突变会导致各种先天性心脏病。我们以Nkx2-5作为“诱饵”,利用酵母双杂交系统分离出了含T盒的转录因子Tbx5;TBX5的突变会导致 Holt-Oram综合征(HOS)中的心脏和肢体畸形。将Nkx2-5和Tbx5共转染到COS-7细胞中表明,它们在哺乳动物细胞中也相互关联。谷胱甘肽S-转移酶(GST)“下拉”试验表明,Tbx5的N端结构域和T盒的N端部分以及Nkx2-5的同源结构域是它们相互作用所必需的。Tbx5和Nkx2-5直接串联结合到心脏特异性利钠肽前体A型(Nppa)基因的启动子上,并且这两种转录因子均显示出协同激活作用。缺失分析表明,Tbx5的N端结构域和T盒对此反式激活都很重要。Tbx5的G80R突变在HOS中导致严重的心脏缺陷和轻微的骨骼异常,该突变既不激活Nppa也不显示协同激活作用,而导致上肢畸形但无心脏异常的R237Q突变则与野生型Tbx5一样程度地激活Nppa启动子。过表达野生型Tbx5的P19CL6细胞系比亲本P19CL6细胞更早开始跳动并且更大量地表达心脏特异性基因,而表达G80R突变体的细胞系未分化为跳动的心肌细胞。这些结果表明,两种不同类型的心脏转录因子协同诱导心脏发育。

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