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热休克蛋白90a(Hsp90a)的ATP酶依赖性伴侣活性在骨骼肌肌原纤维生成过程中调节粗肌丝的形成与整合。

The ATPase-dependent chaperoning activity of Hsp90a regulates thick filament formation and integration during skeletal muscle myofibrillogenesis.

作者信息

Hawkins Thomas A, Haramis Anna-Pavlina, Etard Christelle, Prodromou Chrisostomos, Vaughan Cara K, Ashworth Rachel, Ray Saikat, Behra Martine, Holder Nigel, Talbot William S, Pearl Laurence H, Strähle Uwe, Wilson Stephen W

机构信息

Department of Anatomy and Developmental Biology, UCL, London, UK.

出版信息

Development. 2008 Mar;135(6):1147-56. doi: 10.1242/dev.018150. Epub 2008 Feb 6.

Abstract

The mechanisms that regulate sarcomere assembly during myofibril formation are poorly understood. In this study, we characterise the zebrafish sloth(u45) mutant, in which the initial steps in sarcomere assembly take place, but thick filaments are absent and filamentous I-Z-I brushes fail to align or adopt correct spacing. The mutation only affects skeletal muscle and mutant embryos show no other obvious phenotypes. Surprisingly, we find that the phenotype is due to mutation in one copy of a tandemly duplicated hsp90a gene. The mutation disrupts the chaperoning function of Hsp90a through interference with ATPase activity. Despite being located only 2 kb from hsp90a, hsp90a2 has no obvious role in sarcomere assembly. Loss of Hsp90a function leads to the downregulation of genes encoding sarcomeric proteins and upregulation of hsp90a and several other genes encoding proteins that may act with Hsp90a during sarcomere assembly. Our studies reveal a surprisingly specific developmental role for a single Hsp90 gene in a regulatory pathway controlling late steps in sarcomere assembly.

摘要

在肌原纤维形成过程中调节肌节组装的机制目前还知之甚少。在本研究中,我们对斑马鱼sloth(u45)突变体进行了表征,在该突变体中,肌节组装的初始步骤能够发生,但粗肌丝缺失,丝状I-Z-I刷无法对齐或保持正确间距。该突变仅影响骨骼肌,突变胚胎没有表现出其他明显的表型。令人惊讶的是,我们发现该表型是由于串联重复的hsp90a基因的一个拷贝发生突变所致。该突变通过干扰ATP酶活性破坏了Hsp90a的伴侣功能。尽管hsp90a2距离hsp90a仅2 kb,但它在肌节组装中没有明显作用。Hsp90a功能的丧失导致编码肌节蛋白的基因下调,以及hsp90a和其他几个在肌节组装过程中可能与Hsp90a协同作用的编码蛋白的基因上调。我们的研究揭示了单个Hsp90基因在控制肌节组装后期步骤的调节途径中具有惊人的特异性发育作用。

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