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Tbx20 与 TLE 的相互作用对于维持第二心脏场至关重要。

The Tbx20-TLE interaction is essential for the maintenance of the second heart field.

机构信息

Department of Biology and Genetics, McAllister Heart Institute, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

Integrative Program for Biological & Genome Sciences, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.

出版信息

Development. 2023 Nov 1;150(21). doi: 10.1242/dev.201677. Epub 2023 Oct 30.

Abstract

T-box transcription factor 20 (Tbx20) plays a multifaceted role in cardiac morphogenesis and controls a broad gene regulatory network. However, the mechanism by which Tbx20 activates and represses target genes in a tissue-specific and temporal manner remains unclear. Studies show that Tbx20 directly interacts with the Transducin-like Enhancer of Split (TLE) family of proteins to mediate transcriptional repression. However, a function for the Tbx20-TLE transcriptional repression complex during heart development has yet to be established. We created a mouse model with a two amino acid substitution in the Tbx20 EH1 domain, thereby disrupting the Tbx20-TLE interaction. Disruption of this interaction impaired crucial morphogenic events, including cardiac looping and chamber formation. Transcriptional profiling of Tbx20EH1Mut hearts and analysis of putative direct targets revealed misexpression of the retinoic acid pathway and cardiac progenitor genes. Further, we show that altered cardiac progenitor development and function contribute to the severe cardiac defects in our model. Our studies indicate that TLE-mediated repression is a primary mechanism by which Tbx20 controls gene expression.

摘要

T 盒转录因子 20(Tbx20)在心脏形态发生中发挥着多方面的作用,并控制着广泛的基因调控网络。然而,Tbx20 如何以组织特异性和时间依赖性的方式激活和抑制靶基因的机制尚不清楚。研究表明,Tbx20 可直接与 Transducin-like Enhancer of Split(TLE)家族的蛋白相互作用,从而介导转录抑制。然而,Tbx20-TLE 转录抑制复合物在心脏发育中的功能尚未得到证实。我们构建了一种小鼠模型,该模型在 Tbx20 的 EH1 结构域中发生了两个氨基酸替换,从而破坏了 Tbx20-TLE 相互作用。这种相互作用的破坏损害了关键的形态发生事件,包括心脏环化和心室形成。对 Tbx20EH1Mut 心脏的转录组分析和对假定的直接靶标的分析显示,视黄酸途径和心脏祖细胞基因的表达异常。此外,我们还表明,心脏祖细胞发育和功能的改变导致了我们模型中严重的心脏缺陷。我们的研究表明,TLE 介导的抑制是 Tbx20 控制基因表达的主要机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ad4/10629681/0af44f87b14a/develop-150-201677-g1.jpg

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