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Differential effects of short-term β agonist and growth hormone treatments on expression of myosin heavy chain IIB and associated metabolic genes in sheep muscle

机译:短期β激动剂和生长激素治疗对绵羊肌肉中肌球蛋白重链IIB及相关代谢基因表达的影响

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摘要

Growth hormone (GH) and β agonists increase muscle mass, but the mechanisms for this response are unclear and the magnitude of response is thought to vary with age of animal. To investigate the mechanisms driving the muscle response to these agents, we examined the effects of short-term (6 day) administration of GH or cimaterol (aud βud 2-adrenergic agonist, BA) on skeletal muscle phenotype in both young (day 60) and mature (day 120) lambs. Expression of myosin heavy chain (MyHC) isoforms were measured inud Longissimus dorsiud (LD),ud Semitendinosusud (ST) andud Supraspinatusud (SS) muscles as markers of fibre type and metabolic enzyme activities were measured in LD. To investigate potential mechanisms regulating the changes in fibre type/metabolism, expression or activity of a number of signalling molecules were examined in LD. There were no effects of GH administration on MyHC isoform expression at either the mRNA or protein level in any of the muscles. However, BA treatment induced a proportional change in MyHC mRNA expression at both ages, with the %MyHCI and/or IIA mRNA being significantly decreased in all three muscles and %MyHCIIX/IIB mRNA significantly increased in the LD and ST. BA treatment inducedud de novoud expression of MyHCIIB mRNA in LD, the fastest isoform not normally expressed in sheep LD, as well as increasing expression in the other two muscles. In the LD, the increased expression of the fastest MyHC isoforms (IIX and IIB) was associated with a decrease in isocitrate dehydrogenase activity, but no change in lactate dehydrogenase activity, indicating a reduced capacity for oxidative metabolism. In both young and mature lambs, changes in expression of metabolic regulatory factors were observed that might induce these changes in muscle metabolism/fibre type. In particular, BA treatment decreased PPAR-ud γud coactivator-1ud βud mRNA and increased receptor-interacting protein 140 mRNA. The results suggest that the two agents work via different mechanisms or over different timescales, with only BA inducing changes in muscle mass and transitions to a faster, less oxidative fibre type after a 6-day treatment.
机译:生长激素(GH)和β受体激动剂会增加肌肉质量,但尚不清楚这种反应的机制,并且认为反应的强度会随动物的年龄而变化。为了研究驱动肌肉对这些药物产生反应的机制,我们研究了短期(6天)施用GH或西马特罗(a udβ ud 2-肾上腺素能激动剂,BA)对两个年轻人骨骼肌表型的影响(第60天)和成熟(第120天)的羔羊。在 ud Longissimus dorsi ud(LD), ud Semitendinosus ud(ST)和 ud Supraspinatus ud(SS)肌肉中测量肌球蛋白重链(MyHC)亚型的表达,作为纤维类型和代谢酶活性的标记。以LD为单位。为了研究调节纤维类型/代谢变化的潜在机制,在LD中检查了许多信号分子的表达或活性。 GH对任何肌肉的mRNA或蛋白质水平的MyHC亚型表达均无影响。但是,BA治疗在两个年龄段均引起MyHC mRNA表达的比例变化,在所有三个肌肉中,%MyHCI和/或IIA mRNA均显着降低,而在LD和ST中,%MyHCIIX / IIB mRNA则显着升高。 BA处理可诱导LD中MyHCIIB mRNA的重新表达,这是绵羊LD中通常不表达的最快同种型,另外两个肌肉中的表达也增加。在LD中,最快的MyHC亚型(IIX和IIB)的表达增加与异柠檬酸脱氢酶活性的降低有关,但乳酸脱氢酶活性没有变化,表明氧化代谢的能力降低。在幼小和成年羔羊中,均观察到可能会引起肌肉代谢/纤维类型改变的代谢调节因子的表达。特别地,BA治疗降低了PPAR- udγ ud辅激活子-1 udβ ud mRNA,并增加了受体相互作用蛋白140 mRNA。结果表明,这两种药物通过不同的机制或在不同的时间范围内起作用,仅BA会导致肌肉质量发生变化,并在6天的治疗后转变为更快,氧化性更低的纤维类型。

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