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首页> 外文期刊>Journal of Biochemistry >A Proteomic Assessment of Muscle Contractile Alterations during Unloading and Reloading
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A Proteomic Assessment of Muscle Contractile Alterations during Unloading and Reloading

机译:蛋白质组学评估在装卸过程中肌肉收缩变化

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Unloading of skeletal muscle causes atrophy and altered contractility. To identify major muscle proteins responding significantly to the altered loading and to elucidate how the contractile alterations reflect potential proteomic modifications, we examined protein expression in the rat soleus muscle during 3-week hindlimb suspension and 2-week reloading. Compared with unsuspended controls, experimental animals had a 0.5- to 0.6-fold decrease in tension during unloading and early reloading, comparable to 0.2- to 0.6-fold decreases in the protein levels of myosin light chain 1 (MLC1), α-actin, tropomyosin β-chain, and troponins T1 and T2. The observed 1.4- to 1.6-fold increase in shortening velocity appears to reflect 1.2- to 9.0-fold increases in the protein levels of fast-type MLC2, glycolytic enzymes, and creatine kinase, and 0.2- to 0.3-fold decreases in slow-type troponins T1 and T2. The levels of three heat shock proteins (p20, alpha crystallin B chain, and HSP90) decreased during unloading but returned to control levels during reloading. These results imply that proteomic responses to unloading change overall myofibrillar integrity and metabolic regulation, resulting in altered contractility.
机译:骨骼肌的卸载导致萎缩和收缩力改变。为了鉴定对改变的负荷有显着反应的主要肌肉蛋白,并阐明收缩性改变如何反映潜在的蛋白质组学修饰,我们在3周后肢悬吊和2周再加载过程中检查了大鼠比目鱼肌中的蛋白质表达。与未悬浮的对照组相比,实验动物在卸载和早期重新加载过程中的张力降低了0.5-0.6倍,相当于肌球蛋白轻链1(MLC1),α-肌动蛋白,原肌球蛋白β链,以及肌钙蛋白T1和T2。观察到的缩短速度增加1.4到1.6倍似乎反映了快速型MLC2,糖酵解酶和肌酸激酶的蛋白质水平增加了1.2到9.0倍,而慢速MLC2的蛋白质水平降低了0.2到0.3倍。类型肌钙蛋白T1和T2。三种热激蛋白(p20,α结晶蛋白B链和HSP90)的水平在卸载过程中降低,但在重新加载过程中恢复到对照水平。这些结果表明,蛋白质组对卸载的反应改变了整个肌原纤维的完整性和代谢调节,从而导致了收缩力的改变。

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