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Non-weight bearing-induced muscle weakness: the role of myosin quantity and quality in MHC type II fibers

机译:非重量轴承诱导的肌肉弱点:Myosin数量和质量在MHC II型纤维中的作用

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We tested the hypothesis that non-weight bearing-induced muscle weakness (i.e., specific force) results from decreases in myosin protein quantity (i.e., myosin content per half-sarcomere and the ratio of myosin to actin) and quality (i.e., force per half-sarcomere and population of myosin heads in the strong-binding state during muscle contraction) in single myosin heavy chain (MHC) type II fibers. Fisher-344 rats were assigned to weight-bearing control (Con) or non-weight bearing (NWB). The NWB rats were hindlimb unloaded for 2 wk. Diameter, force, and MHC content were determined in permeabilized single fibers from the semimembranosus muscle. MHC isoform and the ratio of MHC to actin in each fiber were determined by gel electrophoresis and silver staining techniques. The structural distribution of myosin from spin-labeled fiber bundles during maximal isometric contraction was evaluated using electron paramagnetic resonance spectroscopy. Specific force (peak force per cross-sectional area) in MHC type IIB and IIXB fibers from NWB was significantly reduced by 38% and 18%, respectively. MHC content per half-sarcomere was significantly reduced by 21%. Two weeks of hindlimb unloading resulted in a reduced force per half-sarcomere of 52% and fraction of myosin strong-binding during contraction of 34%. The results suggest that reduced myosin and actin content (quantity) and myosin quality concomitantly contribute to non-weight bearing-related muscle weakness.
机译:我们测试了非重量轴承诱导的肌肉弱点(即特定力)的假设,从肌蛋白蛋白质量(即,肌蛋白酶含量为每半胞浆菌丝瘤含量和肌菌素的比例)和质量(即,每在肌肉收缩期间,在肌肉收缩期间的肌肉伴侣和肌霉菌群体,单肌体重链(MHC)II型纤维。 Fisher-344大鼠被分配给负载控制(CON)或非重量轴承(NWB)。 NWB大鼠是后肢卸载2周。在来自Semimembranosus肌肉的透化的单纤维中测定直径,力和MHC含量。通过凝胶电泳和银染色技术测定MHC同种型和MHC对肌动蛋白的比率。使用电子顺磁共振光谱评估在最大等距收缩期间从旋转标记的纤维束中肌霉菌的结构分布。 MHC型IIB和来自NWB的IIXB纤维中的特定力(每个横截面积)分别显着降低了38%和18%。每半肉次粉丝的MHC含量明显减少21%。两周后的后肢卸载导致每半次赛渣的力减少52%,肌球蛋白的一小部分在收缩期间的34%期间。结果表明,减少肌球蛋白和肌动蛋白含量(数量)和肌素质量伴随着非重量轴承相关的肌肉弱点。

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