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BIN1 异构体在骨骼肌发育、功能和再生中的差异生理学作用。

Differential physiological roles for BIN1 isoforms in skeletal muscle development, function and regeneration.

机构信息

Institut de Génétique et de Biologie Moléculaire et Cellulaire (IGBMC), Department of Translational Medicine, 67404 Illkirch, France.

Centre National de la Recherche Scientifique (CNRS), UMR7104, 67404 Illkirch, France.

出版信息

Dis Model Mech. 2020 Nov 24;13(11):dmm044354. doi: 10.1242/dmm.044354.

Abstract

Skeletal muscle development and regeneration are tightly regulated processes. How the intracellular organization of muscle fibers is achieved during these steps is unclear. Here, we focus on the cellular and physiological roles of amphiphysin 2 (BIN1), a membrane remodeling protein mutated in both congenital and adult centronuclear myopathies (CNM), that is ubiquitously expressed and has skeletal muscle-specific isoforms. We created and characterized constitutive muscle-specific and inducible homozygous and heterozygous knockout mice targeting either ubiquitous or muscle-specific isoforms. Constitutive -deficient mice died at birth from lack of feeding due to a skeletal muscle defect. T-tubules and other organelles were misplaced and altered, supporting a general early role for BIN1 in intracellular organization, in addition to membrane remodeling. Although restricted deletion of in unchallenged adult muscles had no impact, the forced switch from the muscle-specific isoforms to the ubiquitous isoforms through deletion of the in-frame muscle-specific exon delayed muscle regeneration. Thus, ubiquitous BIN1 function is necessary for muscle development and function, whereas its muscle-specific isoforms fine tune muscle regeneration in adulthood, supporting that BIN1 CNM with congenital onset are due to developmental defects, whereas later onset may be due to regeneration defects.

摘要

骨骼肌的发育和再生是受到严密调控的过程。在这些过程中,肌纤维的细胞内组织是如何实现的还不清楚。在这里,我们专注于研究 amphiphysin 2(BIN1)的细胞和生理作用,该蛋白是一种在先天性和成人型核性肌病(CNM)中发生突变的膜重塑蛋白,它在体内广泛表达并具有骨骼肌特异性同工型。我们创建并鉴定了针对普遍表达和骨骼肌特异性同工型的组成型肌肉特异性和诱导型纯合和杂合缺失小鼠。组成型缺失小鼠由于骨骼肌缺陷而在出生时因无法进食而死亡。T 小管和其他细胞器位置发生改变,这支持了 BIN1 在细胞内组织中的早期普遍作用,除了膜重塑之外。尽管在未受挑战的成年肌肉中限制缺失 没有影响,但通过缺失框内肌肉特异性外显子将肌肉特异性同工型强制切换为普遍同工型会延迟肌肉再生。因此,普遍存在的 BIN1 功能对于肌肉发育和功能是必需的,而其骨骼肌特异性同工型则在成年期精细调节肌肉再生,这支持了先天性发病的 BIN1-CNM 是由于发育缺陷,而后期发病可能是由于再生缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0d5/7710016/12f82c106e2f/dmm-13-044354-g1.jpg

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