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年轻人对不同急性运动刺激的动态转录组反应。

Dynamic transcriptomic responses to divergent acute exercise stimuli in young adults.

机构信息

Healthspan, Resilience, and Performance, Florida Institute for Human and Machine Cognition, Pensacola, Florida, United States.

UAB Center for Exercise Medicine, The University of Alabama at Birmingham, Birmingham, Alabama, United States.

出版信息

Physiol Genomics. 2023 Apr 1;55(4):194-212. doi: 10.1152/physiolgenomics.00144.2022. Epub 2023 Mar 20.

Abstract

Acute exercise elicits dynamic transcriptional changes that, when repeated, form the fundamental basis of health, resilience, and performance adaptations. While moderate-intensity endurance training combined with conventional resistance training (traditional, TRAD) is often prescribed and recommended by public health guidance, high-intensity training combining maximal-effort intervals with intensive, limited-rest resistance training is a time-efficient alternative that may be used tactically (HITT) to confer similar benefits. Mechanisms of action of these distinct stimuli are incompletely characterized and have not been directly compared. We assessed transcriptome-wide responses in skeletal muscle and circulating extracellular vesicles (EVs) to a single exercise bout in young adults randomized to TRAD ( = 21, 12 M/9 F, 22 ± 3 yr) or HITT ( = 19, 11 M/8 F, 22 ± 2 yr). Next-generation sequencing captured small, long, and circular RNA in muscle and EVs. Analysis identified differentially expressed transcripts (|logFC|>1, FDR ≤ 0.05) immediately (h0, EVs only), h3, and h24 postexercise within and between exercise protocols. In aaddition, all apparently responsive transcripts (FDR < 0.2) underwent singular value decomposition to summarize data structures into latent variables (LVs) to deconvolve molecular expression circuits and interregulatory relationships. LVs were compared across time and exercise protocol. TRAD, a longer but less intense stimulus, generally elicited a stronger transcriptional response than HITT, but considerable overlap and key differences existed. Findings reveal shared and unique molecular responses to the exercise stimuli and lay groundwork toward establishing relationships between protein-coding genes and lesser-understood transcripts that serve regulatory roles following exercise. Future work should advance the understanding of these circuits and whether they repeat in other populations or following other types of exercise/stress. We examined small and long transcriptomics in skeletal muscle and serum-derived extracellular vesicles before and after a single exposure to traditional combined exercise (TRAD) and high-intensity tactical training (HITT). Across 40 young adults, we found more consistent protein-coding gene responses to TRAD, whereas HITT elicited differential expression of microRNA enriched in brain regions. Follow-up analysis revealed relationships and temporal dynamics across transcript networks, highlighting potential avenues for research into mechanisms of exercise response and adaptation.

摘要

急性运动引发动态转录变化,这些变化在重复时构成了健康、适应能力和表现适应的基本基础。虽然中等强度的耐力训练与传统阻力训练(传统的,TRAD)相结合通常是公共健康指南规定和推荐的,但高强度训练将最大努力间隔与密集、有限休息阻力训练相结合是一种高效的替代方案,可以战术性地使用(HITT)来带来类似的好处。这些不同刺激的作用机制尚未完全描述,也没有直接比较。我们评估了年轻成年人随机分为 TRAD(=21,12M/9F,22±3 岁)或 HITT(=19,11M/8F,22±2 岁)的单次运动后的骨骼肌和循环细胞外囊泡(EVs)的转录组全谱反应。下一代测序捕获了肌肉和 EVs 中的小、长和环状 RNA。分析确定了在运动方案内和之间的 h0(仅 EVs)、h3 和 h24 后即刻表达的差异表达转录本(|logFC|>1,FDR≤0.05)。此外,所有明显反应的转录本(FDR<0.2)都经过奇异值分解,将数据结构概括为潜在变量(LV),以分解分子表达回路和相互调节关系。LV 在不同时间和运动方案之间进行比较。TRAD 是一种时间更长但强度较低的刺激,通常比 HITT 引起更强的转录反应,但存在相当大的重叠和关键差异。研究结果揭示了对运动刺激的共同和独特的分子反应,并为建立运动后蛋白质编码基因与发挥调节作用的鲜为人知的转录本之间的关系奠定了基础。未来的工作应该深入了解这些回路,以及它们是否在其他人群或其他类型的运动/压力后重复。我们在传统联合运动(TRAD)和高强度战术训练(HITT)之前和之后,对骨骼肌和血清衍生细胞外囊泡中的小和长转录组学进行了检查。在 40 名年轻人中,我们发现 TRAD 对蛋白质编码基因的反应更为一致,而 HITT 则诱导了富含大脑区域的 microRNA 的差异表达。后续分析揭示了跨转录网络的关系和时间动态,突出了研究运动反应和适应机制的潜在途径。

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