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nesprin-1 异构体对肌肉功能有不同的影响。

Nesprin-1 Isoforms Differentially Contribute to Muscle Function.

机构信息

LBMC, ENS de Lyon, CNRS UMR5239, 69007 Lyon, France.

Institut NeuroMyoGène, CNRS UMR5310, INSERM U1217, Université Claude Bernard Lyon 1, 69008 Lyon, France.

出版信息

Cells. 2021 Nov 6;10(11):3061. doi: 10.3390/cells10113061.

Abstract

Nesprin-1 is a large scaffold protein connecting nuclei to the actin cytoskeleton via its KASH and Calponin Homology domains, respectively. Nesprin-1 disconnection from nuclei results in altered muscle function and myonuclei mispositioning. Furthermore, Nesprin-1 mutations are associated with muscular pathologies such as Emery Dreifuss muscular dystrophy and arthrogryposis. Nesprin-1 was thus proposed to mainly contribute to muscle function by controlling nuclei position. However, Nesprin-1's localisation at sarcomere's Z-discs, its involvement in organelles' subcellular localization, as well as the description of numerous isoforms presenting different combinations of Calponin Homology (CH) and KASH domains, suggest that the contribution of Nesprin-1 to muscle functions is more complex. Here, we investigate the roles of Nesprin-1/Msp300 isoforms in muscle function and subcellular organisation using larvae as a model. Subsets of Msp300 isoform were down-regulated by muscle-specific RNAi expression and muscle global function and morphology were assessed. We show that nuclei anchoring in mature muscle and global muscle function are disconnected functions associated with different Msp300 isoforms. Our work further uncovers a new and unsuspected role of Msp300 in myofibril registration and nuclei peripheral displacement supported by Msp300 CH containing isoforms, a function performed by Desmin in mammals.

摘要

核膜蛋白-1(Nesprin-1)是一种大型支架蛋白,通过其 KASH 和钙调蛋白同源结构域分别将核与肌动蛋白细胞骨架连接。Nesprin-1 与核的分离会导致肌肉功能改变和肌核定位异常。此外,Nesprin-1 突变与肌肉病理学有关,如 Emery-Dreifuss 肌营养不良症和先天性关节挛缩症。因此,Nesprin-1 主要通过控制核的位置来促进肌肉功能。然而,Nesprin-1 在肌节 Z 盘的定位、参与细胞器的亚细胞定位,以及描述具有不同钙调蛋白同源结构域(CH)和 KASH 结构域组合的众多同工型,表明 Nesprin-1 对肌肉功能的贡献更加复杂。在这里,我们使用幼虫作为模型,研究 Nesprin-1/Msp300 同工型在肌肉功能和亚细胞组织中的作用。通过肌肉特异性 RNAi 表达下调 Msp300 同工型的子集,并评估肌肉的整体功能和形态。我们表明,成熟肌肉中的核锚定和整体肌肉功能是与不同 Msp300 同工型相关的分离功能。我们的工作进一步揭示了 Msp300 在肌原纤维注册和核周向位移中的新的、意想不到的作用,该作用由 Msp300 含 CH 的同工型支持,而在哺乳动物中,该作用由结蛋白(Desmin)执行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b816/8616381/ce2433ef5c12/cells-10-03061-g001.jpg

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