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首页> 外文期刊>Human Molecular Genetics >Deficiency of alpha-actinin-3 is associated with increased susceptibility to contraction-induced damage and skeletal muscle remodeling.
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Deficiency of alpha-actinin-3 is associated with increased susceptibility to contraction-induced damage and skeletal muscle remodeling.

机译:α-actinin-3的缺乏与对收缩诱导的损伤和骨骼肌重塑的敏感性增加有关。

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摘要

Sarcomeric alpha-actinins (alpha-actinin-2 and -3) are a major component of the Z-disk in skeletal muscle, where they crosslink actin and other structural proteins to maintain an ordered myofibrillar array. Homozygosity for the common null polymorphism (R577X) in ACTN3 results in the absence of fast fiber-specific alpha-actinin-3 in approximately 20% of the general population. alpha-Actinin-3 deficiency is associated with decreased force generation and is detrimental to sprint and power performance in elite athletes, suggesting that alpha-actinin-3 is necessary for optimal forceful repetitive muscle contractions. Since Z-disks are the structures most vulnerable to eccentric damage, we sought to examine the effects of alpha-actinin-3 deficiency on sarcomeric integrity. Actn3 knockout mouse muscle showed significantly increased force deficits following eccentric contraction at 30% stretch, suggesting that alpha-actinin-3 deficiency results in an increased susceptibility to muscle damage at the extremes of muscle performance. Microarray analyses demonstrated an increase in muscle remodeling genes, which we confirmed at the protein level. The loss of alpha-actinin-3 and up-regulation of alpha-actinin-2 resulted in no significant changes to the total pool of sarcomeric alpha-actinins, suggesting that alterations in fast fiber Z-disk properties may be related to differences in functional protein interactions between alpha-actinin-2 and alpha-actinin-3. In support of this, we demonstrated that the Z-disk proteins, ZASP, titin and vinculin preferentially bind to alpha-actinin-2. Thus, the loss of alpha-actinin-3 changes the overall protein composition of fast fiber Z-disks and alters their elastic properties, providing a mechanistic explanation for the loss of force generation and increased susceptibility to eccentric damage in alpha-actinin-3-deficient individuals.
机译:肌节α-肌动蛋白(α-actinin-2和-3)是骨骼肌Z盘的主要组成部分,它们使肌动蛋白和其他结构蛋白交联以维持有序的肌原纤维阵列。 ACTN3中常见无效多态性(R577X)的纯合性导致大约20%的普通人群中没有快速纤维特异性α-actinin-3。 α-actinin-3缺乏症与降低的力量产生有关,并且对精英运动员的短跑和力量表现有害,这表明α-actinin-3对于最佳的强力重复性肌肉收缩是必需的。由于Z盘是最容易受到偏心破坏的结构,因此我们试图检查α-actinin-3缺乏对肌节完整性的影响。 Actn3基因敲除小鼠的肌肉在30%拉伸时出现偏心收缩后显示出明显的力量不足,这表明α-actinin-3缺乏导致在极端肌肉表现下对肌肉损伤的敏感性增加。微阵列分析表明肌肉重塑基因增加,我们在蛋白质水平上证实了这一点。 α-actinin-3的缺失和α-actinin-2的上调不会导致肌节α-actinins总库的显着变化,这表明快速纤维Z盘性质的改变可能与功能差异有关。 alpha-actinin-2和alpha-actinin-3之间的蛋白质相互作用。为了证明这一点,我们证明了Z盘蛋白,ZASP,titin和vinculin优先结合α-actinin-2。因此,α-actinin-3的缺失改变了快速纤维Z盘的整体蛋白质组成并改变了其弹性特性,从而为产生力的损失和对α-actinin-3-偏心损伤的敏感性增加提供了机械解释。个体不足。

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