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肌肉 microRNA 受基线性别和运动反应的影响。

Muscle miRNAs are influenced by sex at baseline and in response to exercise.

机构信息

Institute for Physical Activity and Nutrition, School of Exercise and Nutrition Sciences, Deakin University, Geelong, Australia.

Institute for Health and Sport (iHeS), Victoria University, Melbourne, Australia.

出版信息

BMC Biol. 2023 Nov 27;21(1):273. doi: 10.1186/s12915-023-01755-3.

Abstract

BACKGROUND

Sex differences in microRNA (miRNA) expression profiles have been found across multiple tissues. Skeletal muscle is one of the most sex-biased tissues of the body. MiRNAs are necessary for development and have regulatory roles in determining skeletal muscle phenotype and have important roles in the response to exercise in muscle. Yet there is limited research into the role and regulation of miRNAs in the skeletal muscle at baseline and in response to exercise, a well-known modulator of miRNA expression. The aim of this study was to investigate the effect of sex on miRNA expression in the skeletal muscle at baseline and after an acute bout of high-intensity interval exercise. A total of 758 miRNAs were measured using Taqman®miRNA arrays in the skeletal muscle of 42 healthy participants from the Gene SMART study (23 males and 19 females of comparable fitness levels and aged 18-45 years), of which 308 were detected. MiRNAs that differed by sex at baseline and whose change in expression following high-intensity interval exercise differed between the sexes were identified using mixed linear models adjusted for BMI and W. We performed in silico analyses to identify the putative gene targets of the exercise-induced, sex-specific miRNAs and overrepresentation analyses to identify enriched biological pathways. We performed functional assays by overexpressing two sex-biased miRNAs in human primary muscle cells derived from male and female donors to understand their downstream effects on the transcriptome.

RESULTS

At baseline, 148 miRNAs were differentially expressed in the skeletal muscle between the sexes. Interaction analysis identified 111 miRNAs whose response to an acute bout of high-intensity interval exercise differed between the sexes. Sex-biased miRNA gene targets were enriched for muscle-related processes including proliferation and differentiation of muscle cells and numerous metabolic pathways, suggesting that miRNAs participate in programming sex differences in skeletal muscle function. Overexpression of sex-biased miRNA-30a and miRNA-30c resulted in profound changes in gene expression profiles that were specific to the sex of the cell donor in human primary skeletal muscle cells.

CONCLUSIONS

We uncovered sex differences in the expression levels of muscle miRNAs at baseline and in response to acute high-intensity interval exercise. These miRNAs target regulatory pathways essential to skeletal muscle development and metabolism. Our findings highlight that miRNAs play an important role in programming sex differences in the skeletal muscle phenotype.

摘要

背景

在多种组织中都发现了 miRNA(微小 RNA)表达谱的性别差异。骨骼肌是身体中性别偏倚最大的组织之一。miRNAs 对于发育是必要的,并且在决定骨骼肌表型方面具有调节作用,在肌肉对运动的反应中也具有重要作用。然而,在基线和对高强度间歇运动的反应中,miRNAs 在骨骼肌中的作用和调节仍缺乏研究,而高强度间歇运动是一种众所周知的调节 miRNA 表达的因素。本研究旨在探讨性别对骨骼肌基线和急性高强度间歇运动后 miRNA 表达的影响。在来自 Gene SMART 研究的 42 名健康参与者的骨骼肌中,使用 Taqman®miRNA 阵列测量了总共 758 种 miRNA(其中 308 种被检测到),这些参与者均为健康个体,且具有相似的体能水平,年龄在 18-45 岁之间,其中 23 名为男性,19 名为女性。使用混合线性模型,根据 BMI 和 W 对数据进行调整,鉴定了基线时存在性别差异且高强度间歇运动后表达变化在性别之间存在差异的 miRNA。我们进行了计算分析,以鉴定运动诱导的、性别特异性 miRNA 的假定基因靶标,并进行了过表达分析,以鉴定富集的生物学途径。我们通过在来源于男性和女性供体的人原代骨骼肌细胞中过度表达两种性别偏倚的 miRNA,来进行功能检测,以了解它们对转录组的下游影响。

结果

在基线时,骨骼肌中存在 148 种 miRNA 在性别之间存在差异表达。交互分析鉴定出 111 种 miRNA,其对急性高强度间歇运动的反应在性别之间存在差异。性别偏倚 miRNA 的基因靶标富集了与肌肉相关的过程,包括肌肉细胞的增殖和分化以及许多代谢途径,这表明 miRNA 参与了编程骨骼肌功能的性别差异。在人原代骨骼肌细胞中,性别偏倚的 miRNA-30a 和 miRNA-30c 的过表达导致了特定于细胞供体性别的基因表达谱的深刻变化。

结论

我们揭示了基线和急性高强度间歇运动后肌肉 miRNA 表达水平的性别差异。这些 miRNA 靶向对骨骼肌发育和代谢至关重要的调节途径。我们的研究结果强调了 miRNA 在编程骨骼肌表型的性别差异方面的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b83/10683325/0c91399b81b8/12915_2023_1755_Fig1_HTML.jpg

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