Li Fan, Bai Muwei, Xu Jianfang, Zhu Ling, Liu Chengyi, Duan Rui
Laboratory of Regenerative Medicine in Sports Science, School of Physical Education and Sports Science, South China Normal University, Guangzhou, China.
Laboratory of Laser Sports Medicine, School of Physical Education and Sports Science, South China Normal University, Guangzhou, China.
Front Physiol. 2020 May 8;11:372. doi: 10.3389/fphys.2020.00372. eCollection 2020.
The objective of this paper was to study the effects of long-term exercise on circulating microRNAs (miRNAs) in human plasma. Whole blood was collected from 10 female elite athletes with at least 5 years of training experience in a Synchronized Swimming Group (S group) and 15 female college students without regular exercise training (C group). Plasma miRNAs were then isolated, sequenced, and semi-quantified by the second-generation sequencing technology, and the results were analyzed by bioinformatics methods. We found 380 differentially expressed miRNAs in the S group compared with the C group, among which 238 miRNAs were upregulated and 142 were downregulated. The top five abundant miRNAs in the 380 miRNAs of the S group are hsa-miR-451a, hsa-miR-486, hsa-miR-21-5p, hsa-miR-423-5p, and hsa-let-7b-5p. Muscle-specific/enriched miRNAs were not significantly different, except for miR-206 and miR-486. According to the Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis, a large proportion of the differentially expressed miRNAs are targeted in cancer-related pathways, including proteoglycans in cancer and miRNAs in cancer and basal cell carcinoma. As the levels of circulating miRNAs (ci-miRNAs) are commonly known to be significantly deregulated in cancer patients, we further compared the levels of some well-studied miRNAs in different types of cancer patients with those in the S group and found that long-term exercise regulates the level of ci-miRNAs in an opposite direction to those in cancer patients. Long-term exercise significantly alters the profiles of plasma miRNAs in healthy young women. It may reduce the risk of certain types of cancers by regulating plasma miRNA levels.
本文的目的是研究长期运动对人血浆中循环微RNA(miRNA)的影响。从10名具有至少5年花样游泳训练经验的女性精英运动员(同步游泳组,S组)和15名无规律运动训练的女大学生(C组)采集全血。然后通过第二代测序技术分离、测序并半定量血浆miRNA,并采用生物信息学方法分析结果。我们发现S组与C组相比有380个差异表达的miRNA,其中238个miRNA上调,142个下调。S组380个miRNA中丰度最高的前五个miRNA是hsa-miR-451a、hsa-miR-486、hsa-miR-21-5p、hsa-miR-423-5p和hsa-let-7b-5p。除miR-206和miR-486外,肌肉特异性/富集的miRNA无显著差异。根据京都基因与基因组百科全书(KEGG)通路分析,很大一部分差异表达的miRNA靶向癌症相关通路,包括癌症中的蛋白聚糖、癌症中的miRNA和基底细胞癌。由于众所周知癌症患者循环miRNA(ci-miRNA)水平显著失调,我们进一步比较了不同类型癌症患者与S组中一些研究充分的miRNA水平,发现长期运动调节ci-miRNA水平的方向与癌症患者相反。长期运动显著改变健康年轻女性血浆miRNA谱。它可能通过调节血浆miRNA水平降低某些类型癌症的风险。