Vincent Barbara, De Bock Katrien, Ramaekers Monique, Van den Eede Els, Van Leemputte Marc, Hespel Peter, Thomis Martine A
Research Centre for Exercise and Health, Department of Biomedical Kinesiology, Faculty of Kinesiology and Rehabilitation Sciences, Katholieke Universiteit Leuven, Leuven, Belgium.
Physiol Genomics. 2007 Dec 19;32(1):58-63. doi: 10.1152/physiolgenomics.00173.2007. Epub 2007 Sep 11.
alpha-Actinin-3 is a Z-disc structural protein found only in type II muscle fibers. The X allele of the R577X polymorphism in the ACTN3 gene results in a premature stop codon and alpha-actinin-3 deficiency in XX homozygotes. Associations between the R577X polymorphism and the muscle-power performance of elite athletes have been described earlier. About 45% of the fiber type proportions are determined by genetic factors. The ACTN3 variant could be one of the contributing genes in the heritability of fiber type distribution through its interaction with calcineurin. The aim of this study was to quantify the association between the polymorphism and muscle fiber type distribution and fast-velocity knee extension strength. Ninety healthy young men (18-29 y) were genotyped for ACTN3 R577X. Knee extensor strength was measured isometrically (45 degrees ) and at different dynamic velocities (100-300 degrees /s) on a programmable dynamometer. Twenty-two XX and twenty-two RR subjects underwent a biopsy of the right vastus lateralis muscle. Fiber type composition was determined by immunohistochemistry. Homozygotes for the R allele show significantly higher relative dynamic quadriceps torques at 300 degrees /s, compared with XX carriers (P < 0.05). Fiber type characteristics differed significantly between the two genotype groups. The percentage surface and number of type IIx fibers were greater in the RR than the XX genotype group (P < 0.05), and alpha-actinin-3 protein content is systematically higher in type IIx compared with type IIa fibers (staining intensity ratio IIx to IIa = 1.17). This study shows that the mechanism, by which the ACTN3 polymorphism has its effect on muscle power, might rely on a control function of fiber type proportions.
α-辅肌动蛋白-3是一种仅在II型肌纤维中发现的Z盘结构蛋白。ACTN3基因中R577X多态性的X等位基因会导致提前终止密码子的出现,使得XX纯合子缺乏α-辅肌动蛋白-3。此前已有关于R577X多态性与精英运动员肌肉力量表现之间关联的描述。约45%的肌纤维类型比例由遗传因素决定。ACTN3变体可能通过与钙调神经磷酸酶相互作用,成为肌纤维类型分布遗传度的贡献基因之一。本研究的目的是量化该多态性与肌纤维类型分布及快速伸膝力量之间的关联。对90名健康年轻男性(18 - 29岁)进行ACTN3 R577X基因分型。使用可编程测力计等长测量(45度)以及在不同动态速度(100 - 300度/秒)下测量伸膝力量。22名XX和22名RR受试者接受了右侧股外侧肌活检。通过免疫组织化学确定纤维类型组成。与XX携带者相比,R等位基因纯合子在300度/秒时相对动态股四头肌扭矩显著更高(P < 0.05)。两个基因型组之间的纤维类型特征存在显著差异。RR基因型组中IIx型纤维的表面积百分比和数量均高于XX基因型组(P < 0.05),并且与IIa型纤维相比,IIx型纤维中α-辅肌动蛋白-3蛋白含量系统性更高(IIx与IIa的染色强度比 = 1.17)。本研究表明,ACTN3多态性影响肌肉力量的机制可能依赖于对纤维类型比例的控制作用。