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HSP72 的表达具有骨骼肌收缩类型特异性。

HSP72 expression is specific to skeletal muscle contraction type.

机构信息

Faculty of Kinesiology and Physical Education, University of Toronto, 55 Harbord Street, Toronto, Ontario, M5S 2W6, Canada.

出版信息

Cell Stress Chaperones. 2019 Jul;24(4):709-718. doi: 10.1007/s12192-019-00997-x. Epub 2019 May 10.

Abstract

Exercise is capable of inducing the cellular stress response and increasing skeletal muscle heat shock protein (HSP) content. HSPs function as molecular chaperones and play roles in facilitating protein folding thereby contributing to muscle proteostasis. To determine the relationship between muscle contraction types, muscle damage, and HSP content, one tibialis anterior (TA) muscle from male Sprague-Dawley rats (n = 5/group) was electrically stimulated while actively lengthening (LC), shortening (SC), or remaining to stagnate (IC) for 15 repetitions (3 sets of five). Two additional LC groups underwent 5 and 10 repetitions. Maximal tetanic tension (MTT) was recorded prior to (pre) and at 5 min after (post) the last contraction. Twenty-four hours after stimulation, TA muscles were removed, processed, and assessed for damage and for HSP25 and HSP72 content. Post-MTT was significantly decreased following 15 LCs, (24%; p < 0.05) but not following 15 SCs or 15 ICs. Post-MTT was also decreased by 8% (p < 0.05), and 18% (p < 0.05) for muscles subjected to 5 and 10 LCs, respectively. HSP72 content increased after all LCs conditions but not following ICs or SCs. HSP25 content remained unchanged following all contractions. Similarly, muscle damage was observed only after LCs and not after other contraction types. In conclusion, muscle HSP72 content can be increased with as few as 5 maximal lengthening contractions and appears to be related to muscle damage. This may have important implications for muscle rehabilitation and exercise training programs.

摘要

运动能够诱导细胞应激反应,增加骨骼肌热休克蛋白(HSP)含量。HSP 作为分子伴侣发挥作用,促进蛋白质折叠,从而有助于肌肉蛋白质稳态。为了确定肌肉收缩类型、肌肉损伤和 HSP 含量之间的关系,从雄性 Sprague-Dawley 大鼠的一只胫骨前肌(TA)中,通过电刺激使其主动延长(LC)、缩短(SC)或保持静止(IC),重复 15 次(3 组,每组 5 次)。另外两个 LC 组进行了 5 和 10 次重复。在最后一次收缩前(pre)和 5 分钟后(post)记录最大强直张力(MTT)。刺激后 24 小时,取出 TA 肌肉,进行处理,并评估损伤以及 HSP25 和 HSP72 的含量。在进行 15 次 LC 后,MTT 后值显著降低(24%;p<0.05),但在进行 15 次 SC 或 15 次 IC 后没有降低。5 和 10 次 LC 后,MTT 后值分别降低了 8%(p<0.05)和 18%(p<0.05)。所有 LC 条件后 HSP72 含量增加,但 IC 或 SC 后没有增加。所有收缩后 HSP25 含量均保持不变。同样,只有在进行 LC 后才观察到肌肉损伤,而在进行其他收缩类型后则没有。总之,HSP72 含量仅需 5 次最大延长收缩即可增加,并且似乎与肌肉损伤有关。这可能对肌肉康复和运动训练计划具有重要意义。

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