首页> 外文期刊>Journal of Cell Science >The nebulin SH3 domain is dispensable for normal skeletal muscle structure but is required for effective active load bearing in mouse
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The nebulin SH3 domain is dispensable for normal skeletal muscle structure but is required for effective active load bearing in mouse

机译:nebulin SH3结构域对于正常的骨骼肌结构是必不可少的,但对于小鼠的有效主动负重而言是必需的

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摘要

Nemaline myopathy (NM) is a congenital myopathy with an estimated incidence of 1:50,000 live births. It is caused by mutations in thin filament components, including nebulin, which accounts for about 50% of the cases. The identification of NM cases with nonsense mutations resulting in loss of the extreme C-terminal SH3 domain of nebulin suggests an important role of the nebulin SH3 domain, which is further supported by the recent demonstration of its role in IGF-1-induced sarcomeric actin filament formation through targeting of N-WASP to the Z-line. To provide further insights into the functional significance of the nebulin SH3 domain in the Z-disk and to understand the mechanisms by which truncations of nebulin lead to NM, we took two approaches: (1) an affinity-based proteomic screening to identify novel interaction partners of the nebulin SH3 domain; and (2) generation and characterization of a novel knockin mouse model with a premature stop codon in the nebulin gene, eliminating its C-terminal SH3 domain (NebδSH3 mouse). Surprisingly, detailed analyses of NebδSH3 mice revealed no structural or histological skeletal muscle abnormalities and no changes in gene expression or localization of interaction partners of the nebulin SH3 domain, including myopalladin, palladin, zyxin and N-WASP. Also, no significant effect on peak isometric stress production, passive tensile stress or Young's modulus was found. However, NebδSH3 muscle displayed a slightly altered force-frequency relationship and was significantly more susceptible to eccentric contraction-induced injury, suggesting that the nebulin SH3 domain protects against eccentric contraction-induced injury and possibly plays a role in finetuning the excitation-contraction coupling mechanism.
机译:Nemaline肌病(NM)是一种先天性肌病,估计活产的发生率为1:50,000。它是由细丝成分的突变引起的,其中包括细丝蛋白,约占病例总数的50%。鉴定出带有无意义突变的NM病例,这些突变导致了星云蛋白极端C末端SH3结构域的丧失,提示星云蛋白SH3结构域的重要作用,这一点在其最近在IGF-1诱导的肌节肌动蛋白中的作用的进一步证明得到了进一步证明。通过将N-WASP靶向Z线来形成长丝。为了进一步了解Z盘中星云蛋白SH3结构域的功能重要性,并了解星云蛋白截断导致NM的机制,我们采取了两种方法:(1)基于亲和力的蛋白质组学筛选,以鉴定新的相互作用SH3结构域的合作伙伴; (2)产生和鉴定一种新的敲除小鼠模型,该模型在星云蛋白基因中具有过早的终止密码子,消除了其C末端SH3结构域(NebδSH3小鼠)。出人意料的是,对NebδSH3小鼠的详细分析显示,没有结构或组织学上的骨骼肌异常,并且没有基因表达的变化或nebulin SH3域(包括肌白蛋白,palladin,zyxin和N-WASP)的相互作用伴侣的定位。另外,未发现对等轴测峰值应力,被动拉伸应力或杨氏模量的显着影响。但是,NebδSH3肌肉的力-频率关系略有改变,并且明显更易受到离心收缩引起的损伤的影响,这表明星云SH3结构域可防止离心收缩引起的损伤,并可能在微调兴奋收缩耦合机制中起作用。

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