首页> 外文期刊>The Journal of Physiology >Stress-dependent and -independent expression of the myogenic regulatory factors and the MARP genes after eccentric contractions in rats.
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Stress-dependent and -independent expression of the myogenic regulatory factors and the MARP genes after eccentric contractions in rats.

机译:大鼠离心收缩后肌源性调节因子和MARP基因的应激依赖性和非依赖性表达。

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摘要

The relationship between muscle mechanical conditions and gene expression was investigated by varying both stress and contraction mode imposed upon rat dorsiflexors (n= 25), activating them at high or low frequencies (150 Hz or 40 Hz) either eccentrically or isometrically. Muscle physiological, immunohistochemical and gene expression changes were then measured 24 h after the exercise bout. Peak stress was the best predictor of muscle injury, independent of contraction mode (i.e. eccentric or isometric). When peak stresses were matched, no physiological or immunohistochemical differences were detected between isometric and eccentric contractions. The expression of certain myogenic regulatory and muscle ankyrin repeat protein (MARP) genes (myoD, myogenin, MLP and CARP) depended both on peak muscle stress achieved during contraction and contraction mode. In contrast, Arpp/Ankrd2 was dramatically upregulated only by eccentric contractions, but not by isometric contractions, even though the stress level of the eccentric contractions varied over a three-fold range and overlapped with that of the isometric group. The role that Arpp/Ankrd2 upregulation plays in the biological response to eccentric contraction remains to be determined, as does the control mechanism whereby the expression of certain genes (such as myoD, myogenin, MLP and CARP) is sensitive to muscle stress while another (Arpp/Ankrd2) is sensitive only to contraction mode.
机译:通过改变施加在大鼠背屈肌(n = 25)上的应力和收缩模式,以偏心或等轴测的高频或低频(150 Hz或40 Hz)激活它们,研究了肌肉机械状况与基因表达之间的关系。运动后24小时,测量肌肉的生理,免疫组织化学和基因表达的变化。峰值应力是肌肉损伤的最佳预测指标,与收缩模式(即偏心或等距)无关。当峰值压力匹配时,在等轴测收缩和离心收缩之间未检测到生理或免疫组化差异。某些肌源性调节和肌锚蛋白重复蛋白(MARP)基因(myoD,肌生成素,MLP和CARP)的表达均取决于在收缩和收缩模式下达到的峰值肌肉压力。相比之下,即使偏心收缩的应力水平在三倍范围内变化并且与等轴测组重叠,Arpp / Ankrd2仅通过偏心收缩显着上调,而不受等轴测收缩的显着上调。 Arpp / Ankrd2上调在偏心收缩的生物学反应中所起的作用还有待确定,控制机制也需要确定,某些基因(如myoD,myogenin,MLP和CARP)的表达对肌肉压力敏感,而另一个基因( Arpp / Ankrd2)仅对收缩模式敏感。

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