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运动促进骨骼肌健康的新视角:基于Rac1/PAK1/p38 MAPK信号通路改善肌生成和糖代谢的研究进展与展望 被引量:5
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作者 任翔宇 沈飞 +2 位作者 金玲 卢健 陈彩珍 《中国体育科技》 CSSCI 北大核心 2023年第5期79-87,共9页
骨骼肌是维持机体运动能力、调节机体能量代谢的重要器官,其内分泌功能也日益被重视。久坐、衰老、肥胖等因素会引起肌萎缩,继而影响糖脂代谢稳态,引起内分泌失调等相关疾病。抑制Rac1/PAK1/p38 MAPK信号通路能干预癌变,而激活该通路可... 骨骼肌是维持机体运动能力、调节机体能量代谢的重要器官,其内分泌功能也日益被重视。久坐、衰老、肥胖等因素会引起肌萎缩,继而影响糖脂代谢稳态,引起内分泌失调等相关疾病。抑制Rac1/PAK1/p38 MAPK信号通路能干预癌变,而激活该通路可控制骨骼肌生成、调节机体糖代谢。通过文献资料调研法分析了Rac1/PAK1/p38 MAPK信号通路的生理基础以及运动对其影响的可能性,系统阐述了运动调控Rac1/PAK1/p38 MAPK信号通路改善肌生成和糖代谢的潜在机制。研究认为,运动可通过Rac1/PAK1/p38 MAPK信号通路促进生肌决定因子的形成和葡萄糖转运蛋白4转位,从而促进骨骼肌再生,改善骨骼肌对葡萄糖的摄取能力。 展开更多
关键词 运动 rac1/pak1/p38 mapk信号通路 骨骼肌 肌生成 糖代谢
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The functional analysis of transiently upregulated miR-101 suggests a “braking” regulatory mechanism during myogenesis 被引量:1
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作者 Shurong Liu Shujuan Xie +8 位作者 Huafeng Chen Bin Li Zhirong Chen Yeya Tan Jianhua Yang Lingling Zheng Zhendong Xiao Qi Zhang Lianghu Qu 《Science China(Life Sciences)》 SCIE CAS CSCD 2021年第10期1612-1623,共12页
Skeletal muscle differentiation is a highly coordinated process that involves many cellular signaling pathways and microRNAs(miRNAs).A group of muscle-specific miRNAs has been reported to promote myogenesis by suppres... Skeletal muscle differentiation is a highly coordinated process that involves many cellular signaling pathways and microRNAs(miRNAs).A group of muscle-specific miRNAs has been reported to promote myogenesis by suppressing key signaling pathways for cell growth.However,the functional role and regulatory mechanism of most non-muscle-specific miRNAs with stage-specific changes during differentiation are largely unclear.Here,we describe the functional characterization of miR-101a/b,a pair of non-muscle-specific miRNAs that show the largest change among a group of transiently upregulated miRNAs during myogenesis in C2C12 cells.The overexpression of miR-101a/b inhibits myoblast differentiation by suppressing the p38/MAPK,Interferon Gamma,and Wnt pathways and enhancing the C/EBP pathway.Mef2a,a key protein in the p38/MAPK pathway,was identified as a direct target of miR-101a/b.Interestingly,we found that the long non-coding RNA(lncRNA)Malat1,which promotes muscle differentiation,interacts with miR-101a/b,and this interaction competes with Mef2a mRNA to relieve the inhibition of the p38/MAPK pathway during myogenesis.These results uncovered a“braking”role in differentiation of transiently upregulated miRNAs and provided new insights into the competing endogenous RNA(ceRNA)regulatory mechanism in myoblast differentiation and myogenesis. 展开更多
关键词 miR-101a/b p38/mapk signaling pathway Mef2a Malat1 skeletal muscle differentiation
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