MacArthur Daniel G, Seto Jane T, Chan Stephen, Quinlan Kate G R, Raftery Joanna M, Turner Nigel, Nicholson Megan D, Kee Anthony J, Hardeman Edna C, Gunning Peter W, Cooney Gregory J, Head Stewart I, Yang Nan, North Kathryn N
Institute for Neuromuscular Research, The Children's Hospital at Westmead, Sydney 2145, NSW, Australia.
Hum Mol Genet. 2008 Apr 15;17(8):1076-86. doi: 10.1093/hmg/ddm380. Epub 2008 Jan 4.
A common nonsense polymorphism (R577X) in the ACTN3 gene results in complete deficiency of the fast skeletal muscle fiber protein alpha-actinin-3 in an estimated one billion humans worldwide. The XX null genotype is under-represented in elite sprint athletes, associated with reduced muscle strength and sprint performance in non-athletes, and is over-represented in endurance athletes, suggesting that alpha-actinin-3 deficiency increases muscle endurance at the cost of power generation. Here we report that muscle from Actn3 knockout mice displays reduced force generation, consistent with results from human association studies. Detailed analysis of knockout mouse muscle reveals reduced fast fiber diameter, increased activity of multiple enzymes in the aerobic metabolic pathway, altered contractile properties, and enhanced recovery from fatigue, suggesting a shift in the properties of fast fibers towards those characteristic of slow fibers. These findings provide the first mechanistic explanation for the reported associations between R577X and human athletic performance and muscle function.
α-辅肌动蛋白-3(ACTN3)基因中一种常见的无义多态性(R577X)导致全球约10亿人完全缺乏快肌纤维蛋白α-辅肌动蛋白-3。XX纯合子基因型在优秀短跑运动员中的比例较低,在非运动员中与肌肉力量和短跑成绩降低有关,而在耐力运动员中比例过高,这表明α-辅肌动蛋白-3缺乏以牺牲力量产生为代价增加了肌肉耐力。在此我们报告,与人类关联研究结果一致,Actn3基因敲除小鼠的肌肉显示出力量产生减少。对敲除小鼠肌肉的详细分析揭示,快肌纤维直径减小、有氧代谢途径中多种酶的活性增加、收缩特性改变以及疲劳恢复增强,表明快肌纤维的特性向慢肌纤维的特征转变。这些发现首次为所报道的R577X与人类运动表现和肌肉功能之间的关联提供了机制解释。