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α-辅肌动蛋白-3 缺乏导致骨骼肌糖原磷酸化酶活性降低和钙处理改变。

Alpha-actinin-3 deficiency results in reduced glycogen phosphorylase activity and altered calcium handling in skeletal muscle.

机构信息

Institute for Neuroscience and Muscle Research, The Children's Hospital at Westmead, Sydney, NSW, Australia.

出版信息

Hum Mol Genet. 2010 Apr 1;19(7):1335-46. doi: 10.1093/hmg/ddq010. Epub 2010 Jan 20.

DOI:10.1093/hmg/ddq010
PMID:20089531
Abstract

Approximately one billion people worldwide are homozygous for a stop codon polymorphism in the ACTN3 gene (R577X) which results in complete deficiency of the fast fibre muscle protein alpha-actinin-3. ACTN3 genotype is associated with human athletic performance and alpha-actinin-3 deficient mice [Actn3 knockout (KO) mice] have a shift in the properties of fast muscle fibres towards slower fibre properties, with increased activity of multiple enzymes in the aerobic metabolic pathway and slower contractile properties. alpha-Actinins have been shown to interact with a number of muscle proteins including the key metabolic regulator glycogen phosphorylase (GPh). In this study, we demonstrated a link between alpha-actinin-3 and glycogen metabolism which may underlie the metabolic changes seen in the KO mouse. Actn3 KO mice have higher muscle glycogen content and a 50% reduction in the activity of GPh. The reduction in enzyme activity is accompanied by altered post-translational modification of GPh, suggesting that alpha-actinin-3 regulates GPh activity by altering its level of phosphorylation. We propose that the changes in glycogen metabolism underlie the downstream metabolic consequences of alpha-actinin-3 deficiency. Finally, as GPh has been shown to regulate calcium handling, we examined calcium handling in KO mouse primary mouse myoblasts and find changes that may explain the slower contractile properties previously observed in these mice. We propose that the alteration in GPh activity in the absence of alpha-actinin-3 is a fundamental mechanistic link in the association between ACTN3 genotype and human performance.

摘要

全世界大约有 10 亿人是 ACTN3 基因(R577X)终止密码子多态性的纯合子,这导致快速纤维肌肉蛋白 alpha-actinin-3 完全缺失。ACTN3 基因型与人类运动表现有关,alpha-actinin-3 缺乏的小鼠 [Actn3 敲除(KO)小鼠] 快速肌肉纤维的特性向较慢纤维特性转变,有氧代谢途径中的多种酶活性增加,收缩特性变慢。alpha-actinin-3 已被证明与许多肌肉蛋白相互作用,包括关键代谢调节剂糖原磷酸化酶(GPh)。在这项研究中,我们证明了 alpha-actinin-3 与糖原代谢之间的联系,这可能是 KO 小鼠中观察到的代谢变化的基础。Actn3 KO 小鼠的肌肉糖原含量更高,GPh 活性降低 50%。酶活性的降低伴随着 GPh 的翻译后修饰改变,表明 alpha-actinin-3 通过改变其磷酸化水平来调节 GPh 活性。我们提出,糖原代谢的变化是 alpha-actinin-3 缺乏导致的下游代谢后果的基础。最后,由于 GPh 已被证明可以调节钙处理,我们检查了 KO 小鼠原代小鼠成肌细胞中的钙处理,发现了可能解释之前在这些小鼠中观察到的收缩特性变慢的变化。我们提出,在缺乏 alpha-actinin-3 的情况下,GPh 活性的改变是 ACTN3 基因型与人类表现之间关联的一个基本机制联系。

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