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Tie2Cre介导的丛状蛋白D1失活会导致先天性心脏、血管和骨骼缺陷。

Tie2Cre-mediated inactivation of plexinD1 results in congenital heart, vascular and skeletal defects.

作者信息

Zhang Ying, Singh Manvendra K, Degenhardt Karl R, Lu Min Min, Bennett Jean, Yoshida Yutaka, Epstein Jonathan A

机构信息

Department of Cell and Developmental Biology, Cardiovascular Institute, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Dev Biol. 2009 Jan 1;325(1):82-93. doi: 10.1016/j.ydbio.2008.09.031. Epub 2008 Oct 17.

Abstract

PlexinD1 is a membrane-bound receptor that mediates signals derived from class 3 secreted semaphorins. Although semaphorin signaling in axon guidance in the nervous system has been extensively studied, functions outside the nervous system including important roles in vascular patterning have also been demonstrated. Inactivation of plexinD1 leads to neo-natal lethality, structural defects of the cardiac outflow tract, peripheral vascular abnormalities, and axial skeletal morphogenesis defects. PlexinD1 is expressed by vascular endothelial cells, but additional domains of expression have also been demonstrated including in lymphocytes, osteoblasts, neural crest and the central nervous system. Hence, the cell-type specific functions of plexinD1 have remained unclear. Here, we describe the results of tissue-specific gene inactivation of plexinD1 in Tie2 expressing precursors, which recapitulates the null phenotype with respect to congenital heart, vascular, and skeletal abnormalities resulting in neonatal lethality. Interestingly, these mutants also have myocardial defects not previously reported. In addition, we demonstrate functions for plexinD1 in post-natal retinal vasculogenesis and adult angiogenesis through the use of inducible cre-mediated deletion. These results demonstrate an important role for PlexinD1 in embryonic and adult vasculature.

摘要

PlexinD1是一种膜结合受体,可介导源自3类分泌性信号素的信号。尽管神经系统中轴突导向过程中的信号素信号传导已得到广泛研究,但在神经系统之外的功能,包括在血管形成中的重要作用也已得到证实。PlexinD1的失活会导致新生儿死亡、心脏流出道结构缺陷、外周血管异常以及轴向骨骼形态发生缺陷。PlexinD1由血管内皮细胞表达,但也已证实其在淋巴细胞、成骨细胞、神经嵴和中枢神经系统等其他区域也有表达。因此,PlexinD1的细胞类型特异性功能仍不清楚。在此,我们描述了在表达Tie2的前体细胞中对PlexinD1进行组织特异性基因失活的结果,该结果重现了与先天性心脏、血管和骨骼异常相关的无效表型,导致新生儿死亡。有趣的是,这些突变体还存在以前未报道过的心肌缺陷。此外,我们通过使用诱导性cre介导的缺失,证明了PlexinD1在出生后视网膜血管生成和成人血管生成中的功能。这些结果证明了PlexinD1在胚胎和成人脉管系统中的重要作用。

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