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支链氨基酸可激活人类骨骼肌中的信使核糖核酸翻译调节蛋白,而糖皮质激素会削弱这一作用。

Branched chain amino acids activate messenger ribonucleic acid translation regulatory proteins in human skeletal muscle, and glucocorticoids blunt this action.

作者信息

Liu Z, Jahn L A, Long W, Fryburg D A, Wei L, Barrett E J

机构信息

Department of Internal Medicine, University of Virginia Health Sciences Center, Charlottesville, Virginia 22908, USA.

出版信息

J Clin Endocrinol Metab. 2001 May;86(5):2136-43. doi: 10.1210/jcem.86.5.7481.

Abstract

Branched chain amino acids (BCAA) are particularly effective anabolic agents. Recent in vitro studies suggest that amino acids, particularly leucine, activate a signaling pathway that enhances messenger ribonucleic acid translation and protein synthesis. The physiological relevance of these findings to normal human physiology is uncertain. We examined the effects of BCAA on the phosphorylation of eukaryotic initiation factor 4E-binding protein 1 (eIF4E-BP1) and ribosomal protein S6 kinase (p70(S6K)) in skeletal muscle of seven healthy volunteers. We simultaneously examined whether BCAA affect urinary nitrogen excretion and forearm skeletal muscle protein turnover and whether the catabolic action of glucocorticoids could be mediated in part by inhibition of the action of BCAA on the protein synthetic apparatus. BCAA infusion decreased urinary nitrogen excretion (P < 0.02), whole body phenylalanine flux (P < 0.02), plasma phenylalanine concentration (P < 0.001), and improved forearm phenylalanine balance (P = 0.03). BCAA also increased the phosphorylation of both eIF4E-BP1 (P < 0.02) and p70(S6K) (P < 0.03), consistent with an action to activate the protein synthetic apparatus. Dexamethasone increased plasma phenylalanine concentration (P < 0.001), prevented the BCAA-induced anabolic shift in forearm protein balance, and inhibited their action on the phosphorylation of p70(S6K). We conclude that in human skeletal muscle BCAA act directly as nutrient signals to activate messenger ribonucleic acid translation and potentiate protein synthesis. Glucocorticoids interfere with this action, and that may be part of the mechanism by which they promote net protein catabolism in muscle.

摘要

支链氨基酸(BCAA)是特别有效的合成代谢剂。最近的体外研究表明,氨基酸,尤其是亮氨酸,可激活一条能增强信使核糖核酸翻译和蛋白质合成的信号通路。这些发现与正常人体生理学的生理相关性尚不确定。我们研究了BCAA对7名健康志愿者骨骼肌中真核起始因子4E结合蛋白1(eIF4E-BP1)和核糖体蛋白S6激酶(p70(S6K))磷酸化的影响。我们同时研究了BCAA是否影响尿氮排泄和前臂骨骼肌蛋白质周转,以及糖皮质激素的分解代谢作用是否可能部分通过抑制BCAA对蛋白质合成装置的作用来介导。输注BCAA可降低尿氮排泄(P < 0.02)、全身苯丙氨酸通量(P < 0.02)、血浆苯丙氨酸浓度(P < 0.001),并改善前臂苯丙氨酸平衡(P = 0.03)。BCAA还增加了eIF4E-BP1(P < 0.02)和p70(S6K)(P < 0.03)的磷酸化,这与激活蛋白质合成装置的作用一致。地塞米松增加了血浆苯丙氨酸浓度(P < 0.001),阻止了BCAA诱导的前臂蛋白质平衡的合成代谢转变,并抑制了它们对p70(S6K)磷酸化的作用。我们得出结论,在人类骨骼肌中,BCAA直接作为营养信号来激活信使核糖核酸翻译并增强蛋白质合成。糖皮质激素会干扰这一作用,这可能是它们促进肌肉净蛋白质分解代谢机制的一部分。

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