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足细胞蛋白 Nephrin 是心脏血管形成所必需的。

The podocyte protein nephrin is required for cardiac vessel formation.

机构信息

LBPG CNRS/INSERM U998/UNSA, 06107 Nice, France.

出版信息

Hum Mol Genet. 2011 Jun 1;20(11):2182-94. doi: 10.1093/hmg/ddr106. Epub 2011 Mar 14.

DOI:10.1093/hmg/ddr106
PMID:21402589
Abstract

Nephrin (NPHS1) has been described as an important structural protein of kidney podocytes. Mutations in this gene lead to the Finnish-type congenital nephrotic syndrome. More recently, a role of nephrin as a signalling molecule in kidney podocytes has been identified. Here, we show that nephrin not only has a function in kidney podocytes, but is also required for cardiovascular development. Nephrin is expressed in the epicardium and coronary vessels during human and mouse embryonic development. Nephrin knockout embryos showed abnormal epicardial cell morphology and, at later stages of development, a reduced number of coronary vessels due to increased apoptosis, and in addition, cardiac fibrosis. Connexin 43, which is required for coronary vessel formation, was downregulated in nephrin knockout embryos. Expression of the p75NTR neurotrophin receptor, a known mediator of apoptosis, was increased in mutants. Furthermore, co-immunoprecipitation studies demonstrated a direct interaction of nephrin with p75NTR. Primary nephrin-deficient cardiac cells showed a 5-fold higher rate of apoptosis in response to progenitor of nerve growth factor compared with wild-type cells, which could be rescued by RNAi against p75NTR. Taken together, our data demonstrate that nephrin directly interacts with p75NTR and reveal an important role for nephrin in murine cardiac development by permitting survival of cardiovascular progenitor cells.

摘要

足细胞裂孔隔膜蛋白(Nephrin,NPHS1)是一种重要的肾脏足细胞结构蛋白。该基因的突变会导致芬兰型先天性肾病综合征。最近,研究发现足细胞裂孔隔膜蛋白还是一种肾脏足细胞中的信号分子。在此,我们研究发现足细胞裂孔隔膜蛋白不仅在肾脏足细胞中具有功能,而且对于心血管发育也是必需的。在人类和小鼠胚胎发育过程中,足细胞裂孔隔膜蛋白在心脏外膜和冠状血管中表达。足细胞裂孔隔膜蛋白敲除的胚胎表现出心脏外膜细胞形态异常,并且在后期发育过程中,由于细胞凋亡增加和心脏纤维化,冠状血管数量减少。对于冠状血管形成必需的连接蛋白 43 在足细胞裂孔隔膜蛋白敲除胚胎中下调表达。已知凋亡的中介物 p75NTR 神经生长因子受体的表达在突变体中增加。此外,共免疫沉淀研究表明足细胞裂孔隔膜蛋白与 p75NTR 之间存在直接相互作用。与野生型细胞相比,原代缺乏足细胞裂孔隔膜蛋白的心脏细胞对神经生长因子前体的凋亡率增加了 5 倍,而通过 RNAi 靶向 p75NTR 可以挽救这种情况。总之,我们的数据表明足细胞裂孔隔膜蛋白与 p75NTR 直接相互作用,并揭示了足细胞裂孔隔膜蛋白在小鼠心脏发育中的重要作用,通过这种作用允许心血管祖细胞的存活。

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