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运动相关微小RNA对基因表达的调控

Regulation of Gene Expression by Exercise-Related Micrornas.

作者信息

Masi Laureane Nunes, Serdan Tamires Duarte Afonso, Levada-Pires Adriana Cristina, Hatanaka Elaine, Silveira Leonardo Dos Reis, Cury-Boaventura Maria Fernanda, Pithon-Curi Tania Cristina, Curi Rui, Gorjão Renata, Hirabara Sandro Massao

机构信息

Institute of Physical Activity Sciences and Sports, Cruzeiro do Sul University, Sao Paulo, SP, Brazil.

出版信息

Cell Physiol Biochem. 2016;39(6):2381-2397. doi: 10.1159/000452507. Epub 2016 Nov 11.

Abstract

Gene expression control by microRNAs (miRs) is an important mechanism for maintenance of cellular homeostasis in physiological and pathological conditions as well as in response to different stimuli including nutritional factors and exercise. MiRs are involved in regulation of several processes such as growth and development, fuel metabolism, insulin secretion, immune function, miocardium remodeling, cell proliferation, differenciation, survival, and death. These molecules have also been proposed to be potential biomarkers and/or therapeutical targets in obesity, type 2 diabetes mellitus, cardiovascular diseases, metabolic syndrome, and cancer. MiRs are released by most cells and potentially act on intercellular communication to borderer or distant cells. Various studies have been performed to elucidate the involvement of miRs in exercise-induced effects. The aims of this review are: 1) to bring up the main advances for the comprehension of the mechanisms of action of miRs; 2) to present the main results on miR involvement in physical exercise; 3) to discuss the physiological effects of miRs modified by exercise. The state of the art and the perspectives on miRs associated with physical exercise will be presented. Thus, this review is important for updating recent advances and driving further strategies and studies on the exercise-related miR research.

摘要

微小RNA(miR)对基因表达的调控是在生理和病理条件下维持细胞稳态以及对包括营养因子和运动在内的不同刺激作出反应的重要机制。miR参与调控多个过程,如生长发育、能量代谢、胰岛素分泌、免疫功能、心肌重塑、细胞增殖、分化、存活和死亡。这些分子还被认为是肥胖、2型糖尿病、心血管疾病、代谢综合征和癌症的潜在生物标志物和/或治疗靶点。大多数细胞都会释放miR,其可能作用于细胞间通讯,影响临近或远处的细胞。人们已经开展了各种研究来阐明miR在运动诱导效应中的作用。本综述的目的是:1)总结在理解miR作用机制方面的主要进展;2)介绍miR参与体育锻炼的主要研究结果;3)探讨运动对miR修饰后的生理效应。本文将呈现与体育锻炼相关的miR的研究现状和前景。因此,本综述对于更新近期进展以及推动与运动相关的miR研究的进一步策略和研究具有重要意义。

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