Small non-coding RNAs are altered by short-term sprint interval training in men
Article
Article Title | Small non-coding RNAs are altered by short-term sprint |
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ERA Journal ID | 201375 |
Article Category | Article |
Authors | Denham, Joshua (Author), Gray, Adrian J. (Author), Scott-Hamilton, John (Author), Hagstrom, Amanda D. (Author) and Murphy, Aron J. (Author) |
Journal Title | Physiological Reports |
Journal Citation | 6 (7), pp. 1-10 |
Article Number | e13653 |
Number of Pages | 10 |
Year | 2018 |
Publisher | John Wiley & Sons |
Place of Publication | United Kingdom |
ISSN | 2051-817X |
Digital Object Identifier (DOI) | https://doi.org/10.14814/phy2.13653 |
Web Address (URL) | https://physoc.onlinelibrary.wiley.com/doi/full/10.14814/phy2.13653 |
Abstract | Small non-coding RNAs (ncRNAs) are emerging as important molecules for normal biological processes and are deregulated in disease. Exercise training is a powerful therapeutic strategy that prevents cardiometabolic disease and improves cardiorespiratory fitness and performance. Despite the known systemic health benefits of exercise training, the underlying molecular mechanisms are incompletely understood. Recent evidence suggests a role for epigenetic mechanisms, such as microRNAs, but whether other small ncRNAs are modulated by chronic exercise training is unknown. Here, we used small RNA sequencing to explore whether sprint interval training (SIT) controls the abundance of circulating small ncRNAs in human whole blood samples. Ten healthy men performed SIT three times a week for 6 weeks. After training, subjects showed marked improvements in maximal oxygen consumption and cycling performance with concurrent changes to the abundance of diverse species of circulating small ncRNAs (n = 1266 small ncRNAs, n = 13 microRNAs, q < 0.05). Twelve microRNAs altered by 6 weeks of SIT were ubiquitously expressed microRNAs and two regulated important signaling pathways, including p53, thyroid hormone and cell cycle signaling. MicroRNAs altered by 6 weeks of SIT were unchanged after a single session of SIT (n = 24, all P > 0.05). Relative to older individuals, younger subjects exhibited an increased acute SIT-induced fold change in miR-1301-3p (P = 0.02) – a microRNA predicted to target mRNAs involved in alternative splicing, phosphoprotein and chromosomal rearrangement processes (all P < 0.001). Our findings indicate many species of circulating small ncRNAs are modulated by exercise training and that they could control signaling pathways responsible for health benefits achieved from exercise. |
Keywords | Epigenetics; exercise; HIIT; microRNA; miRNome |
ANZSRC Field of Research 2020 | 310505. Gene expression (incl. microarray and other genome-wide approaches) |
420702. Exercise physiology | |
Public Notes | ª 2018 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of The Physiological Society and the American Physiological Society. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
Byline Affiliations | University of New England |
Institution of Origin | University of Southern Queensland |
https://research.usq.edu.au/item/q6q5q/small-non-coding-rnas-are-altered-by-short-term-sprint-interval-training-in-men
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License: CC BY 4.0 | ||
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