首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Nebulin-deficient mice exhibit shorter thin filament lengths and reduced contractile function in skeletal muscle
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Nebulin-deficient mice exhibit shorter thin filament lengths and reduced contractile function in skeletal muscle

机译:缺乏星云蛋白的小鼠骨骼肌细丝长度较短收缩功能降低

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摘要

Nebulin is a giant modular sarcomeric protein that has been proposed to play critical roles in myofibrillogenesis, thin filament length regulation, and muscle contraction. To investigate the functional role of nebulin in vivo, we generated nebulin-deficient mice by using a Cre knock-in strategy. Lineage studies utilizing this mouse model demonstrated that nebulin is expressed uniformly in all skeletal muscles. Nebulin-deficient mice die within 8–11 d after birth, with symptoms including decreased milk intake and muscle weakness. Although myofibrillogenesis had occurred, skeletal muscle thin filament lengths were up to 25% shorter compared with wild type, and thin filaments were uniform in length both within and between muscle types. Ultrastructural studies also demonstrated a critical role for nebulin in the maintenance of sarcomeric structure in skeletal muscle. The functional importance of nebulin in skeletal muscle function was revealed by isometric contractility assays, which demonstrated a dramatic reduction in force production in nebulin-deficient skeletal muscle.
机译:Nebulin是一种巨大的模块化肌节蛋白,已提出在肌原纤维形成,细丝长度调节和肌肉收缩中起关键作用。为了研究星云蛋白在体内的功能作用,我们通过使用Cre敲入策略生成了星云蛋白缺陷小鼠。利用该小鼠模型进行的谱系研究表明,在所有骨骼肌中均均匀表达神经蛋白。缺乏脑蛋白的小鼠在出生后8–11 d内死亡,症状包括牛奶摄入减少和肌肉无力。尽管发生了肌原纤维形成,但与野生型相比,骨骼肌细丝长度缩短了多达25%,并且在肌肉类型之内和之间,细丝的长度均一。超微结构研究还表明,在维持骨骼肌的肌节结构中,星云蛋白起着至关重要的作用。等距收缩性测定法揭示了星云蛋白在骨骼肌功能中的功能重要性,这证明了在星云蛋白缺乏的骨骼肌中力产生的显着降低。

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