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在人体中,核因子-κB 在肌肉离心收缩后的激活主要定位于骨骼肌驻留的周细胞。

Activation of nuclear factor-κB following muscle eccentric contractions in humans is localized primarily to skeletal muscle-residing pericytes.

机构信息

Department of Kinesiology, University of Massachusetts, Amherst, MA 01003, USA.

出版信息

FASEB J. 2011 Sep;25(9):2956-66. doi: 10.1096/fj.10-177105. Epub 2011 May 20.

Abstract

Limited data exist on the molecular mechanisms that govern skeletal muscle regeneration in humans. This study characterized the early molecular alterations in humans to eccentric contractions (ECs), a stimulus known to induce a muscle regenerative response. Thirty-five subjects completed 100 ECs of the knee extensors with 1 leg, and muscle biopsies were taken from both legs 3 h post-EC. The sample from the non-EC leg served as the control. We first conducted a well-powered transcriptomic screen and network analysis. Our screen identified significant changes in several transcripts with functions relating to inflammation, cell growth, and proliferation. Network analysis then identified the transcription factor NF-κB as a key molecular element affected by ECs. A transcription factor ELISA, using nuclear extracts from EC and control muscle samples, showed a 1.6-fold increase in NF-κB DNA binding activity following ECs. Immunohistochemical experiments localized the majority of NF-κB-positive nuclei to cells in the interstitium, which stained positive for the pericyte markers NG2 proteoglycan and alkaline phosphatase. Our results provide the first evidence of NF-κB activation in human muscle following ECs and suggest a novel role for muscle residing pericytes in the early adaptive response to ECs.

摘要

关于控制人类骨骼肌再生的分子机制,目前数据有限。本研究对人体离心收缩(EC)的早期分子变化进行了特征描述,离心收缩是一种已知能引起肌肉再生反应的刺激。35 名受试者用一条腿完成了 100 次膝关节伸展的离心收缩,在 EC 后 3 小时从两条腿采集肌肉活检。非 EC 腿的样本作为对照。我们首先进行了功能强大的转录组筛选和网络分析。我们的筛选发现了几个转录本的显著变化,这些转录本的功能与炎症、细胞生长和增殖有关。网络分析随后确定转录因子 NF-κB 是受 EC 影响的关键分子元素。使用来自 EC 和对照肌肉样本的核提取物进行的转录因子 ELISA 显示,EC 后 NF-κB 的 DNA 结合活性增加了 1.6 倍。免疫组织化学实验将大多数 NF-κB 阳性核定位到间质中的细胞,这些细胞对周细胞标志物 NG2 蛋白聚糖和碱性磷酸酶呈阳性染色。我们的研究结果首次提供了 EC 后 NF-κB 在人体肌肉中激活的证据,并表明肌肉驻留周细胞在 EC 早期适应性反应中具有新的作用。

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