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本文引用的文献

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Unilateral dampening of Bmp activity by nodal generates cardiac left-right asymmetry. nodal 对 Bmp 活性的单侧抑制可产生心脏的左右不对称。
Dev Cell. 2013 Mar 25;24(6):660-7. doi: 10.1016/j.devcel.2013.01.026. Epub 2013 Mar 14.
2
Integration of nodal and BMP signals in the heart requires FoxH1 to create left-right differences in cell migration rates that direct cardiac asymmetry.节点和 BMP 信号的整合要求 FoxH1 在细胞迁移率上产生左右差异,从而指导心脏的不对称性。
PLoS Genet. 2013;9(1):e1003109. doi: 10.1371/journal.pgen.1003109. Epub 2013 Jan 24.
3
Scl represses cardiomyogenesis in prospective hemogenic endothelium and endocardium.Scl 抑制拟血细胞内皮和心内膜中的心肌生成。
Cell. 2012 Aug 3;150(3):590-605. doi: 10.1016/j.cell.2012.06.026.
4
Coordinating tissue interactions: Notch signaling in cardiac development and disease.协调组织相互作用:Notch 信号在心脏发育和疾病中的作用。
Dev Cell. 2012 Feb 14;22(2):244-54. doi: 10.1016/j.devcel.2012.01.014.
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Convective tissue movements play a major role in avian endocardial morphogenesis.对流组织运动在禽类心内膜形态发生中起主要作用。
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6
Multiple influences of blood flow on cardiomyocyte hypertrophy in the embryonic zebrafish heart.血流对斑马鱼胚胎心脏心肌细胞肥大的多种影响。
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ER71 directs mesodermal fate decisions during embryogenesis.ER71 在胚胎发生过程中指导中胚层命运决定。
Development. 2011 Nov;138(21):4801-12. doi: 10.1242/dev.070912.
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Vascular endothelial and endocardial progenitors differentiate as cardiomyocytes in the absence of Etsrp/Etv2 function.血管内皮和心内膜祖细胞在没有 Etsrp/Etv2 功能的情况下分化为心肌细胞。
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The novel transmembrane protein Tmem2 is essential for coordination of myocardial and endocardial morphogenesis.新型跨膜蛋白 Tmem2 对于心肌和心内膜形态发生的协调是必不可少的。
Development. 2011 Oct;138(19):4199-205. doi: 10.1242/dev.064261.
10
What chick and mouse models have taught us about the role of the endocardium in congenital heart disease.小鸡和小鼠模型让我们了解到心内膜在先天性心脏病中的作用。
Birth Defects Res A Clin Mol Teratol. 2011 Jun;91(6):511-25. doi: 10.1002/bdra.20809. Epub 2011 Apr 28.

tal1 调控心内膜细胞连接的形成和细胞特性的维持。

tal1 Regulates the formation of intercellular junctions and the maintenance of identity in the endocardium.

机构信息

Developmental Genetics Program and Department of Cell Biology, Kimmel Center for Biology and Medicine, Skirball Institute of Biomolecular Medicine, New York University School of Medicine, New York, NY 10016, USA.

出版信息

Dev Biol. 2013 Nov 15;383(2):214-26. doi: 10.1016/j.ydbio.2013.09.019. Epub 2013 Sep 25.

DOI:10.1016/j.ydbio.2013.09.019
PMID:24075907
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3932745/
Abstract

The endocardium forms the inner lining of the heart tube, where it enables blood flow and also interacts with the myocardium during the formation of valves and trabeculae. Although a number of studies have identified regulators in the morphogenesis of the myocardium, relatively little is known about the molecules that control endocardial morphogenesis. Prior work has implicated the bHLH transcription factor Tal1 in endocardial tube formation: in zebrafish embryos lacking Tal1, endocardial cells form a disorganized mass within the ventricle and do not populate the atrium. Through blastomere transplantation, we find that tal1 plays a cell-autonomous role in regulating endocardial extension, suggesting that Tal1 activity influences the behavior of individual endocardial cells. The defects in endocardial behavior in tal1-deficient embryos originate during the earliest steps of endocardial morphogenesis: tal1-deficient endocardial cells fail to generate a cohesive monolayer at the midline and instead pack tightly together into a multi-layered aggregate. Moreover, the tight junction protein ZO-1 is mislocalized in the tal1-deficient endocardium, indicating a defect in intercellular junction formation. In addition, we find that the tal1-deficient endocardium fails to maintain its identity; over time, a progressively increasing number of tal1-deficient endocardial cells initiate myocardial gene expression. However, the onset of defects in intercellular junction formation precedes the onset of ectopic myocardial gene expression in the tal1-deficient endocardium. We therefore propose a model in which Tal1 has distinct roles in regulating the formation of endocardial intercellular junctions and maintaining endocardial identity.

摘要

心内膜形成心管的内层衬里,在这里它允许血液流动,并在瓣膜和小梁的形成过程中与心肌相互作用。尽管许多研究已经确定了心肌形态发生中的调节因子,但相对较少的分子控制心内膜形态发生。先前的工作表明 bHLH 转录因子 Tal1 在心内膜管形成中起作用:在缺乏 Tal1 的斑马鱼胚胎中,心内膜细胞在心室内形成一个组织紊乱的团块,而不在心房中形成。通过胚裂球移植,我们发现 tal1 在调节心内膜延伸中发挥细胞自主作用,表明 Tal1 活性影响单个心内膜细胞的行为。tal1 缺陷胚胎中心内膜行为的缺陷起源于心内膜形态发生的最早步骤:tal1 缺陷的心内膜细胞不能在中线处产生有凝聚力的单层,而是紧密地聚集在一起形成多层聚集物。此外,tal1 缺陷的心内膜中紧密连接蛋白 ZO-1 定位错误,表明细胞间连接形成缺陷。此外,我们发现 tal1 缺陷的心内膜不能保持其身份;随着时间的推移,越来越多的 tal1 缺陷的心内膜细胞开始表达心肌基因。然而,细胞间连接形成缺陷的出现早于 tal1 缺陷的心内膜中异位心肌基因表达的出现。因此,我们提出了一个模型,其中 Tal1 在调节心内膜细胞间连接的形成和维持心内膜身份方面具有不同的作用。