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纽蛋白基因在心肌细胞中的特异性切除会破坏细胞连接,导致猝死或扩张型心肌病。

Cardiac-myocyte-specific excision of the vinculin gene disrupts cellular junctions, causing sudden death or dilated cardiomyopathy.

作者信息

Zemljic-Harpf Alice E, Miller Joel C, Henderson Scott A, Wright Adam T, Manso Ana Maria, Elsherif Laila, Dalton Nancy D, Thor Andrea K, Perkins Guy A, McCulloch Andrew D, Ross Robert S

机构信息

Department of Medicine, UCSD School of Medicine, La Jolla, California, USA.

出版信息

Mol Cell Biol. 2007 Nov;27(21):7522-37. doi: 10.1128/MCB.00728-07. Epub 2007 Sep 4.

Abstract

Vinculin is a ubiquitously expressed multiliganded protein that links the actin cytoskeleton to the cell membrane. In myocytes, it is localized in protein complexes which anchor the contractile apparatus to the sarcolemma. Its function in the myocardium remains poorly understood. Therefore, we developed a mouse model with cardiac-myocyte-specific inactivation of the vinculin (Vcl) gene by using Cre-loxP technology. Sudden death was found in 49% of the knockout (cVclKO) mice younger than 3 months of age despite preservation of contractile function. Conscious telemetry documented ventricular tachycardia as the cause of sudden death, while defective myocardial conduction was detected by optical mapping. cVclKO mice that survived through the vulnerable period of sudden death developed dilated cardiomyopathy and died before 6 months of age. Prior to the onset of cardiac dysfunction, ultrastructural analysis of cVclKO heart tissue showed abnormal adherens junctions with dissolution of the intercalated disc structure, expression of the junctional proteins cadherin and beta1D integrin were reduced, and the gap junction protein connexin 43 was mislocalized to the lateral myocyte border. This is the first report of tissue-specific inactivation of the Vcl gene and shows that it is required for preservation of normal cell-cell and cell-matrix adhesive structures.

摘要

纽蛋白是一种广泛表达的多配体蛋白,它将肌动蛋白细胞骨架与细胞膜连接起来。在心肌细胞中,它定位于将收缩装置锚定到肌膜的蛋白质复合物中。其在心肌中的功能仍知之甚少。因此,我们利用Cre-loxP技术构建了一个心肌细胞特异性纽蛋白(Vcl)基因失活的小鼠模型。尽管收缩功能得以保留,但在3个月龄以下的基因敲除(cVclKO)小鼠中,有49%出现了猝死。清醒状态下的遥测记录显示室性心动过速是猝死的原因,而光学标测检测到心肌传导存在缺陷。度过猝死危险期存活下来的cVclKO小鼠发展为扩张型心肌病,并在6个月龄前死亡。在心脏功能障碍出现之前,对cVclKO心脏组织的超微结构分析显示,黏附连接异常,闰盘结构溶解,连接蛋白钙黏蛋白和β1D整合素的表达降低,缝隙连接蛋白连接蛋白43定位错误至心肌细胞外侧边界。这是关于Vcl基因组织特异性失活的首次报道,表明它对于维持正常的细胞-细胞和细胞-基质黏附结构是必需的。

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