首页> 外文期刊>American Journal of Physiology >Exercise promotes alpha7 integrin gene transcription and protection of skeletal muscle.
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Exercise promotes alpha7 integrin gene transcription and protection of skeletal muscle.

机译:运动可促进α7整合素基因的转录并保护骨骼肌。

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摘要

The alpha7beta1 integrin is increased in skeletal muscle in response to injury-producing exercise, and transgenic overexpression of this integrin in mice protects against exercise-induced muscle damage. The present study investigates whether the increase in the alpha7beta1 integrin observed in wild-type mice in response to exercise is due to transcriptional regulation and examines whether mobilization of the integrin at the myotendinous junction (MTJ) is a key determinant in its protection against damage. A single bout of downhill running exercise selectively increased transcription of the alpha7 integrin gene in 5-wk-old wild-type mice 3 h postexercise, and an increased alpha7 chain was detected in muscle sarcolemma adjacent to tendinous tissue immediately following exercise. The alpha7B, but not alpha7A isoform, was found concentrated and colocalized with tenascin-C in muscle fibers lining the MTJ. To further validate the importance of the integrin in the protection against muscle damage following exercise, muscle injury was quantified in alpha7(-/-) mice. Muscle damage was extensive in alpha7(-/-) mice in response to both a single and repeated bouts of exercise and was largely restricted to areas of high MTJ concentration and high mechanical force near the Achilles tendon. These results suggest that exercise-induced muscle injury selectively increases transcription of the alpha7 integrin gene and promotes a rapid change in the alpha7beta integrin at the MTJ. These combined molecular and cellular alterations are likely responsible for integrin-mediated attenuation of exercise-induced muscle damage.
机译:响应于产生损伤的运动,骨骼肌中的alpha7beta1整合素增加,而该整合素在小鼠中的转基因过表达可以防止运动引起的肌肉损伤。本研究调查了野生型小鼠对运动的反应中观察到的α7β1整联蛋白的增加是否是由于转录调节引起的,并研究了整联蛋白在肌腱接头(MTJ)上的动员是否是防止损伤的关键决定因素。一次下坡跑步运动在运动后3小时选择性地增加了5周龄的5周龄野生型小鼠中α7整合素基因的转录,并且在运动后立即在肌腱组织附近的肌肉肌膜中检测到α7链增加。发现α7B而不是α7A同工型在MTJ衬里的肌肉纤维中被浓缩并与肌腱蛋白-C共定位。为了进一步验证整联蛋白在运动后预防肌肉损伤中的重要性,在alpha7(-/-)小鼠中定量了肌肉损伤。在一次和多次运动后,alpha7(-/-)小鼠的肌肉损伤广泛,并且主要局限于跟腱附近的MTJ浓度高和机械力高的区域。这些结果表明,运动引起的肌肉损伤选择性地增加了α7整合素基因的转录,并促进了MTJ处α7β整合素的快速变化。这些组合的分子和细胞改变可能是整联蛋白介导的运动诱发的肌肉损伤的减弱。

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