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HIC-5 亚型在成肌过程中对细胞死亡和肌管形成调控中的不同作用。

Differential roles of HIC-5 isoforms in the regulation of cell death and myotube formation during myogenesis.

作者信息

Gao Zheng-Liang, Deblis Ryan, Glenn Honor, Schwartz Lawrence M

机构信息

Molecular and Cellular Biology Program, University of Massachusetts, Amherst, MA 01003, USA.

出版信息

Exp Cell Res. 2007 Nov 15;313(19):4000-14. doi: 10.1016/j.yexcr.2007.05.023. Epub 2007 Jun 2.

Abstract

Hic-5 is a LIM-Only member of the paxillin superfamily of focal adhesion proteins. It has been shown to regulate a range of biological processes including: senescence, tumorigenesis, steroid hormone action, integrin signaling, differentiation, and apoptosis. To better understand the roles of Hic-5 during development, we initiated a detailed analysis of Hic-5 expression and function in C(2)C(12) myoblasts, a well-established model for myogenesis. We have found that: (1) myoblasts express at least 6 distinct Hic-5 isoforms; (2) the two predominant isoforms, Hic-5alpha and Hic-5beta, are differentially expressed during myogenesis; (3) any experimentally induced change in Hic-5 expression results in a substantial increase in apoptosis during differentiation; (4) ectopic expression of Hic-5alpha is permissive to differentiation while expression of either Hic-5beta or antisense Hic-5 blocks myoblast fusion but not chemodifferentiation; (5) Hic-5 localizes to focal adhesions in C(2)C(12) myoblasts and perturbation of Hic-5 leads to defects in cell spreading; (6) alterations in Hic-5 expression interfere with the normal dynamics of laminin expression; and (7) ectopic laminin, but not fibronectin, can rescue the Hic-5-induced blockade of myoblast survival and differentiation. Our data demonstrate differential roles for individual Hic-5 isoforms during myogenesis and support the hypothesis that Hic-5 mediates these effects via integrin signaling.

摘要

Hic-5是粘着斑蛋白桩蛋白超家族中仅含LIM结构域的成员。研究表明,它可调节一系列生物学过程,包括:衰老、肿瘤发生、类固醇激素作用、整合素信号传导、分化和细胞凋亡。为了更好地了解Hic-5在发育过程中的作用,我们对C(2)C(12)成肌细胞(一种成熟的肌生成模型)中Hic-5的表达和功能进行了详细分析。我们发现:(1)成肌细胞表达至少6种不同的Hic-5异构体;(2)两种主要的异构体Hic-5α和Hic-5β在肌生成过程中差异表达;(3)Hic-5表达的任何实验性诱导变化都会导致分化过程中细胞凋亡大幅增加;(4)Hic-5α的异位表达允许分化,而Hic-5β或反义Hic-5的表达则会阻断成肌细胞融合,但不影响化学分化;(5)Hic-5定位于C(2)C(12)成肌细胞的粘着斑,Hic-5的扰动会导致细胞铺展缺陷;(6)Hic-5表达的改变会干扰层粘连蛋白表达的正常动态;(7)异位层粘连蛋白而非纤连蛋白可以挽救Hic-5诱导的成肌细胞存活和分化阻断。我们的数据证明了单个Hic-5异构体在肌生成过程中的不同作用,并支持Hic-5通过整合素信号传导介导这些效应的假说。

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