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成肌细胞融合和肌肉生长中的 Ferlin 蛋白。

Ferlin proteins in myoblast fusion and muscle growth.

机构信息

Genomics and Systems Biology, Committee on Genetics, The University of Chicago, Chicago, Illinois, USA.

出版信息

Curr Top Dev Biol. 2011;96:203-30. doi: 10.1016/B978-0-12-385940-2.00008-5.

Abstract

Myoblast fusion contributes to muscle growth in development and during regeneration of mature muscle. Myoblasts fuse to each other as well as to multinucleate myotubes to enlarge the myofiber. The molecular mechanisms of myoblast fusion are incompletely understood. Adhesion, apposition, and membrane fusion are accompanied by cytoskeletal rearrangements. The ferlin family of proteins is implicated in human muscle disease and has been implicated in fusion events in muscle, including myoblast fusion, vesicle trafficking and membrane repair. Dysferlin was the first mammalian ferlin identified and it is now known that there are six different ferlins. Loss-of-function mutations in the dysferlin gene lead to limb girdle muscular dystrophy and the milder disorder Miyoshi Myopathy. Dysferlin is a membrane-associated protein that has been implicated in resealing disruptions in the muscle plasma membrane. Newer data supports a broader role for dysferlin in intracellular vesicular movement, a process also important for resealing. Myoferlin is highly expressed in myoblasts that undergoing fusion, and the absence of myoferlin leads to impaired myoblast fusion. Myoferlin also regulates intracellular trafficking events, including endocytic recycling, a process where internalized vesicles are returned to the plasma membrane. The trafficking role of ferlin proteins is reviewed herein with a specific focus as to how this machinery alters myogenesis and muscle growth.

摘要

成肌细胞融合有助于肌肉在发育过程中的生长和成熟肌肉的再生。成肌细胞彼此融合以及与多核肌管融合,以扩大肌纤维。成肌细胞融合的分子机制尚不完全清楚。黏附、对位和膜融合伴随着细胞骨架的重排。ferlin 蛋白家族与人类肌肉疾病有关,并与肌肉中的融合事件有关,包括成肌细胞融合、囊泡运输和膜修复。dysferlin 是第一种被鉴定的哺乳动物 ferlin,现在已知有六种不同的 ferlin。dysferlin 基因的功能丧失突变导致肢带型肌营养不良症和较轻的 Miyoshi 肌病。dysferlin 是一种与肌浆膜修复相关的膜相关蛋白。新的数据支持 dysferlin 在细胞内囊泡运动中的更广泛作用,这一过程对于修复也很重要。myoferlin 在正在融合的成肌细胞中高度表达,而 myoferlin 的缺失导致成肌细胞融合受损。myoferlin 还调节细胞内运输事件,包括内体循环,即内部化的囊泡返回质膜的过程。本文综述了 ferlin 蛋白的运输作用,并特别关注了该机制如何改变成肌发生和肌肉生长。

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