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比目鱼肌中热休克蛋白对后肢去负荷和再负荷的差异反应。

Differential response of heat shock proteins to hindlimb unloading and reloading in the soleus.

作者信息

Lawler John M, Song Wook, Kwak Hyo-Bum

机构信息

Redox Biology and Cell Signaling Laboratory, 276B Read Building, Department of Health and Kinesiology, Texas A&M University, College Station, 77843-4243, USA.

出版信息

Muscle Nerve. 2006 Feb;33(2):200-7. doi: 10.1002/mus.20454.

Abstract

Hindlimb unloading (HU) results in oxidative stress, skeletal muscle atrophy, and increased damage upon reloading. Heat shock proteins (HSPs) protect against oxidative stress. However, it is unknown whether HSPs are depressed with long-term unloading (28 days) or reloading. We tested the hypotheses that long-term HU would depress Hsp70 and Hsp25 pathways, whereas reloading would allow recovery in the soleus. Adult Sprague-Dawley rats were divided into three groups: controls; HU for 28 days; and HU + 7 days of reloading (HU-R). Soleus mass decreased with HU, and did not recover to control values with reloading. Hsp70 decreased with HU (-78.5%) and did not recover with HU-R (-81.4%). Upstream heat shock factor-1 was depressed with HU and HU-R. Hsp25 was reduced with HU, but recovered with reloading. Downstream of Hsp25, NADP-specific isocitrate dehydrogenase and glutathione peroxidase decreased with unloading, but only NADP-specific isocitrate dehydrogenase recovered with HU-R. Lipid peroxidation increased in both HU and HU-R. These data indicate that prolonged unloading and subsequent reloading results in complex, differential regulation of Hsp70 and Hsp25 pathways in the rat soleus muscle. Thus dysregulation and uncoupling of the Hsp70 and Hsp25 pathways may lead not only to muscle atrophy with prolonged unloading, but also impaired recovery of muscle mass during early reloading.

摘要

后肢去负荷(HU)会导致氧化应激、骨骼肌萎缩以及再负荷时损伤增加。热休克蛋白(HSPs)可抵御氧化应激。然而,长期去负荷(28天)或再负荷时HSPs是否会降低尚不清楚。我们检验了以下假设:长期HU会抑制Hsp70和Hsp25信号通路,而再负荷会使比目鱼肌恢复。成年Sprague-Dawley大鼠分为三组:对照组;HU处理28天;HU + 7天再负荷(HU-R)。HU使比目鱼肌质量下降,再负荷后未恢复至对照值。HU使Hsp70降低(-78.5%),HU-R时未恢复(-81.4%)。上游热休克因子-1在HU和HU-R时均受到抑制。HU使Hsp25降低,但再负荷后恢复。在Hsp25下游,去负荷时NADP特异性异柠檬酸脱氢酶和谷胱甘肽过氧化物酶降低,但只有NADP特异性异柠檬酸脱氢酶在HU-R时恢复。HU和HU-R时脂质过氧化均增加。这些数据表明长期去负荷及随后再负荷导致大鼠比目鱼肌中Hsp70和Hsp25信号通路出现复杂的、差异性调节。因此,Hsp70和Hsp25信号通路的失调和解偶联不仅可能导致长期去负荷时肌肉萎缩增加,还会导致再负荷早期肌肉质量恢复受损。

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