首页> 外文期刊>skeletal muscle >Absence of the Z-disc protein alpha-actinin-3 impairs the mechanical stability of Actn3KO mouse fast-twitch muscle fibres without altering their contractile properties or twitch kinetics
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Absence of the Z-disc protein alpha-actinin-3 impairs the mechanical stability of Actn3KO mouse fast-twitch muscle fibres without altering their contractile properties or twitch kinetics

机译:Z 盘蛋白 α-actinin-3 的缺失会损害 Actn3KO 小鼠快速抽搐肌肉纤维的机械稳定性,而不会改变其收缩特性或抽搐动力学

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Background: A common polymorphism (R577X) in the ACTN3 gene results in the complete absence of the Z-disc protein alpha-actinin-3 from fast-twitch muscle fibres in similar to 16 of the world's population. This single gene polymorphism has been subject to strong positive selection pressure during recent human evolution. Previously, using an Actn3KO mouse model, we have shown in fast-twitch muscles, eccentric contractions at L-0 + 20 stretch did not cause eccentric damage. In contrast, L-0 + 30 stretch produced a significant similar to 40 deficit in maximum force; here, we use isolated single fast-twitch skeletal muscle fibres from the Actn3KO mouse to investigate the mechanism underlying this. Methods Single fast-twitch fibres are separated from the intact muscle by a collagenase digest procedure. We use label-free second harmonic generation (SHG) imaging, ultra-fast video microscopy and skinned fibre measurements from our MyoRobot automated biomechatronics system to study the morphology, visco-elasticity, force production and mechanical strength of single fibres from the Actn3KO mouse. Data are presented as means +/- SD and tested for significance using ANOVA. Results: We show that the absence of alpha-actinin-3 does not affect the visco-elastic properties or myofibrillar force production. Eccentric contractions demonstrated that chemically skinned Actn3KO fibres are mechanically weaker being prone to breakage when eccentrically stretched. Furthermore, SHG images reveal disruptions in the myofibrillar alignment of Actn3KO fast-twitch fibres with an increase in Y-shaped myofibrillar branching. Conclusions: The absence of alpha-actinin-3 from the Z-disc in fast-twitch fibres disrupts the organisation of the myofibrillar proteins, leading to structural weakness. This provides a mechanistic explanation for our earlier findings that in vitro intact Actn3KO fast-twitch muscles are significantly damaged by L-0 + 30, but not L-0 + 20, eccentric contraction strains. Our study also provides a possible mechanistic explanation as to why alpha-actinin-3-deficient humans have been reported to have a faster decline in muscle function with increasing age, that is, as sarcopenia reduces muscle mass and force output, the eccentric stress on the remaining functional alpha-actinin-3 deficient fibres will be increased, resulting in fibre breakages.
机译:背景:ACTN3 基因中常见的多态性 (R577X) 导致 Z 盘蛋白 α-actinin-3 从快速抽搐的肌肉纤维中完全缺失,占世界人口的 16%。在最近的人类进化过程中,这种单基因多态性一直受到强大的正选择压力。以前,使用Actn3KO小鼠模型,我们已经在快速抽搐的肌肉中表明,L-0 + 20%拉伸的离心收缩不会造成离心损伤。相比之下,L-0 + 30% 拉伸产生与 40% 最大力差距相似的显着差异;在这里,我们使用从Actn3KO小鼠中分离出的单个快速抽搐骨骼肌纤维来研究其背后的机制。方法 通过胶原酶消化程序将单个快速抽搐纤维从完整肌肉中分离出来。我们使用MyoRobot自动化生物机电一体化系统的无标记二次谐波生成(SHG)成像,超快速视频显微镜和蒙皮纤维测量来研究Actn3KO小鼠单纤维的形态,粘弹性,力产生和机械强度。数据以平均值 +/- SD 表示,并使用方差分析检验其显著性。结果:我们发现α-actinin-3的缺失不会影响粘弹性或肌原纤维力的产生。偏心收缩表明,化学表皮的Actn3KO纤维在机械上较弱,在偏心拉伸时容易断裂。此外,SHG 图像显示 Actn3KO 快速抽搐纤维的肌原纤维排列中断,Y 形肌原纤维分支增加。结论:快肌纤维中 Z 盘中 α-actinin-3 的缺失破坏了肌原纤维蛋白的组织,导致结构薄弱。这为我们早期的发现提供了机制解释,即体外完整的 Actn3KO 快肌受到 L-0 + 30% 的显着损伤,但不是 L-0 + 20%,离心收缩应变。我们的研究还提供了一个可能的机制解释,为什么据报道,α-actinin-3 缺乏的人随着年龄的增长而肌肉功能下降得更快,也就是说,随着肌肉减少症减少肌肉质量和力量输出,剩余功能性 α-actinin-3 缺陷纤维上的偏心应力将增加,导致纤维断裂。

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