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首页> 外文期刊>Journal of applied physiology >Contribution of IL-6 to the Hsp72, Hsp25, and {alpha}{beta}-crystallin responses to inflammation and exercise training in mouse skeletal and cardiac muscle.
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Contribution of IL-6 to the Hsp72, Hsp25, and {alpha}{beta}-crystallin responses to inflammation and exercise training in mouse skeletal and cardiac muscle.

机译:IL-6对Hsp72,Hsp25和α-β-晶状体蛋白对小鼠骨骼肌和心肌中炎症和运动训练的反应的贡献。

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摘要

The heat shock proteins (Hsps) Hsp72, Hsp25, and alphabeta-crystallin (alphabetaC) may protect tissues during exercise and/or inflammatory insults; however, no studies have investigated whether exercise training increases both basal and inflammation-induced expression of these Hsps in skeletal or cardiac muscle. IL-6 is produced by muscle during both exercise and inflammation and has been shown to modulate Hsp expression. These studies tested the hypothesis that voluntary wheel running (RW) increases basal and inflammation-induced Hsp72, Hsp25, and alphabetaC protein through an IL-6-dependent mechanism. We compared Hsp72, Hsp25, alphabetaC, and IL-6 protein levels 4 h after systemic inflammation induced by lipopolysaccharide (LPS) in skeletal and cardiac muscles of wild-type (IL-6(+/+)) and IL-6 deficient (IL-6(-/-)) mice after 2 wk of RW or normal cage activity (Sed). LPS significantly increased skeletal Hsp72 and Hsp25 relative to saline in Sed IL-6(+/+), but not IL-6(-/-) mice. LPS increased Hsp72 relative to saline in Sed IL-6(+/+) cardiac muscle. RW increased basal Hsp72, Hsp25, and alphabetaC in skeletal muscle in IL-6(+/+) and IL-6(-/-) mice. However, LPS was not associated with increases in any Hsp in RW IL-6(+/+) or IL-6(-/-) mice. LPS increased IL-6 protein in skeletal muscle and plasma in Sed and RW groups, with a significantly greater response in RW. The major results provide the first in vivo evidence that the absence of IL-6 is associated with reduced skeletal muscle Hsp72 and Hsp25 responses to LPS, but that IL-6 is not required for exercise-induced Hsp upregulation in skeletal or cardiac muscle.
机译:热休克蛋白(Hsps)Hsp72,Hsp25和字母结晶蛋白(alphabetaC)可能在运动和/或发炎时保护组织。但是,尚无研究调查运动训练是否会增加骨骼肌或心肌中这些Hsps的基础表达和炎症诱导表达。 IL-6由肌肉在运动和炎症过程中产生,并已显示出可调节Hsp表达。这些研究检验了以下假设:自愿轮转(RW)通过IL-6依赖性机制增加基础和炎症诱导的Hsp72,Hsp25和AlphabetaC蛋白。我们比较了野生型(IL-6(+ / +))和IL-6缺陷型(IL-6(+ / +))的骨骼肌和心肌中脂多糖(LPS)诱导的全身炎症后4 h Hsp72,Hsp25,alphabetaC和IL-6蛋白的水平RW 2周或正常笼活动(Sed)后的IL-6(-/-))小鼠。在Sed IL-6(+ / +)小鼠中,LPS相对于盐水显着增加了骨骼Hsp72和Hsp25,但在IL-6(-/-)小鼠中却没有。 Led相对于Sed IL-6(+ / +)心肌中的盐水增加Hsp72。 RW增加了IL-6(+ / +)和IL-6(-/-)小鼠骨骼肌的基础Hsp72,Hsp25和字母aC。但是,在RW IL-6(+ / +)或IL-6(-/-)小鼠中,LPS与任何Hsp的升高无关。在Sed和RW组中,LPS会增加骨骼肌和血浆中的IL-6蛋白,而RW中的反应明显更大。主要结果提供了第一个体内证据,表明缺乏IL-6与骨骼肌Hsp72和Hsp25对LPS的应答降低有关,但运动诱导的骨骼肌或心肌Hsp上调不需要IL-6。

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