首页> 外文期刊>American Journal of Physiology >Regulation of myosin heavy chain antisense long noncoding RNA in human vastus lateralis in response to exercise training.
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Regulation of myosin heavy chain antisense long noncoding RNA in human vastus lateralis in response to exercise training.

机译:肌综重链中肌蛋白重链的调节响应运动训练的人覆薄左侧中的长度非致rna。

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摘要

Alterations to muscle activity or loading state can induce changes in expression of myosin heavy chain (MHC). For example, sedentary individuals that initiate exercise training can induce a pronounced shift from IIx to IIa MHC. We sought to examine the regulatory response of MHC RNA in human subjects in response to exercise training. In particular, we examined how natural antisense RNA transcripts (NATs) are regulated throughout the MHC gene locus that includes MYH2 (IIa), MYH1 (IIx), MYH4 (IIb), and MYH8 (Neonatal) in vastus lateralis before and after a 5-wk training regime that consisted of a combination of aerobic and resistance types of exercise. The exercise program induced a IIx to IIa MHC shift that was associated with a corresponding increase in transcription on the antisense strand of the IIx MHC gene and a decrease in antisense transcription of the IIa MHC gene, suggesting an inhibitory mechanism mediated by NATs. We also report that the absence of expression of IIb MHC in human limb muscle is associated with the abundant expression of antisense transcript overlapping the IIb MHC coding gene, which is the opposite expression pattern as compared with that previously observed in rats. The NAT provides a possible regulatory mechanism for the suppressed expression of IIb MHC in humans. These data indicate that NATs may play a regulatory role with regard to the coordinated shifts in MHC gene expression that occur in human muscle in response to exercise training.
机译:对肌肉活性或加载状态的改变可以诱导肌球蛋白重链(MHC)表达的变化。例如,发起运动培训的久坐性质可以从IIX到IIA MHC的明显转变。我们试图审查人类受试者中MHC RNA的调节响应,以应对运动培训。特别是,我们检查了在5个之前和之后,在包含MyH2(IIa),MyH1(IIX),MyH4(IIB)和MyH8(新生儿)的MYH2(IIa),MyH1(IIX),MyH4(新生儿)的过程中如何调节天然的RNA转录物(NAT)。 -wk培训制度,由锻炼的有氧和抵抗类型的组合组成。锻炼计划诱导III西MHC偏移,其与IIX MHC基因的反义链和IIA MHC基因的反义转录的转录相应增加相关,表明由NATS介导的抑制机制。我们还报告说,没有人肢体肌肉中的IIB MHC表达与反义转录物的丰富表达与重叠IIB MHC编码基因的丰富表达相关,这与在大鼠中先前观察到的表达模式相反。 NAT提供了对人类IIB MHC的抑制表达的可能调节机制。这些数据表明,NAT可能在人类肌肉中发生的MHC基因表达中的协调变化作出监管角色,以应对运动训练。

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