Department of Molecular Medicine and Interuniversity, Institute of Myology, University of Pavia, Pavia, Italy.
Acta Physiol (Oxf). 2014 Dec;212(4):316-29. doi: 10.1111/apha.12320. Epub 2014 Jun 30.
Notwithstanding the widely accepted idea that following disuse skeletal muscles become faster, an increase in shortening velocity was previously observed mostly in fibres containing type 1 myosin, whereas a decrease was generally found in fibres containing type 2B myosin. In this study, unloaded shortening velocity of pure type 1 and 2B fibres from hindlimb unloaded mice was determined and a decrease in type 2B fibres was found.
To clarify whether the decrease in shortening velocity could depend on alterations of myosin motor function, an in vitro motility assay approach was applied to study pure type 1 and pure type 2B myosin from hindlimb unloaded mice. The latter approach, assessing actin sliding velocity on isolated myosin in the absence of other myofibrillar proteins, enabled to directly investigate myosin motor function.
Actin sliding velocity was significantly lower on type 2B myosin following unloading (2.70 ± 0.32 μm s(-1)) than in control conditions (4.11 ± 0.35 μm s(-1)), whereas actin sliding velocity of type 1 myosin was not different following unloading (0.89 ± 0.04 μm s(-1)) compared with control conditions (0.84 ± 0.17 μm s(-1)). Myosin light chain (MLC) isoform composition of type 2B myosin from hindlimb unloaded and control mice was not different. No oxidation of either type 1 or 2B myosin was observed. Higher phosphorylation of regulatory MLC in type 2B myosin after unloading was found.
Results suggest that the observed lower shortening velocity of type 2B fibres following unloading could be related to slowing of acto-myosin kinetics in the presence of MLC phosphorylation.
尽管人们普遍认为,在停止使用后,骨骼肌肉的速度会加快,但以前观察到的缩短速度的增加主要发生在含有 1 型肌球蛋白的纤维中,而在含有 2B 型肌球蛋白的纤维中通常观察到减少。在这项研究中,确定了来自后肢去负荷小鼠的纯 1 型和 2B 型纤维的无负荷缩短速度,并发现 2B 型纤维减少。
为了阐明缩短速度的降低是否取决于肌球蛋白运动功能的改变,应用体外运动分析方法研究了来自后肢去负荷小鼠的纯 1 型和纯 2B 型肌球蛋白。后一种方法评估了在没有其他肌原纤维蛋白的情况下分离肌球蛋白上的肌动蛋白滑动速度,使我们能够直接研究肌球蛋白的运动功能。
与对照条件(4.11 ± 0.35 μm s-1)相比,去负荷后 2B 型肌球蛋白上的肌动蛋白滑动速度明显降低(2.70 ± 0.32 μm s-1),而去负荷后 1 型肌球蛋白上的肌动蛋白滑动速度与对照条件(0.89 ± 0.04 μm s-1)无差异(0.84 ± 0.17 μm s-1)。后肢去负荷和对照小鼠 2B 型肌球蛋白的肌球蛋白轻链(MLC)同工型组成没有不同。未观察到 1 型或 2B 型肌球蛋白的氧化。发现去负荷后 2B 型肌球蛋白中调节型 MLC 的磷酸化程度更高。
结果表明,去负荷后 2B 型纤维缩短速度降低可能与 MLC 磷酸化存在时的肌球蛋白-肌动蛋白动力学减慢有关。