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

机译:Bin1同种型在骨骼肌发育,功能和再生中的差分生理作用

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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 Bin1 homozygous and heterozygous knockout mice targeting either ubiquitous or muscle-specific isoforms. Constitutive Bin1 –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 of BIN1 on intracellular organization in addition to membrane remodeling. Whereas restricted deletion of Bin1 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, BIN1 ubiquitous function is necessary for muscle development and function while its muscle-specific isoforms fine-tune muscle regeneration in adulthood, supporting that BIN1 centronuclear myopathy with congenital onset are due to developmental defects while later onset may be due to regeneration defects.
机译:骨骼肌开发和再生是紧密受调的过程。在这些步骤期间,如何实现肌肉纤维的细胞内组织尚不清楚。在这里,我们专注于Amphiphysin 2(BIN1)的细胞和生理作用,在先天性和成人中心核心病变(CNM)中突变的膜重塑蛋白质,这是普遍表达的,并且具有骨骼肌特异性同种型。我们创建并表征了本构,肌肉特异性和诱导型Bin1纯合的纯合并敲除小鼠,靶向普遍存在的或肌肉特异性同种型。组成型Bin1 - 缺乏由于骨骼肌缺损而缺乏饲喂的缺乏小鼠。 T-Cubles和其他细胞器被错位和改变,支持BIN1在细胞内组织的一般早期作用,除膜重塑外。然而,在未经充电的成年肌肉中限制缺失Bin1没有影响,因此通过缺失嵌入式肌肉特异性外显子延迟肌肉再生,从肌肉特异性同种型的强制切换到普遍存在的同种型。因此,Bin1普遍存在的功能对于肌肉发育和功能是必需的,而其肌肉特异性同种型在成年期间的微调肌肉再生,支持与先天性发作的Bin1 Centronu核心病变是由于发育缺陷,而在后期发作可能是由于再生缺陷。
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