氨基酸诱导的大鼠骨骼肌翻译起始的刺激。

T C Vary, L S Jefferson, S R Kimball
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引用次数: 110

摘要

氨基酸通过加速翻译起始刺激骨骼肌蛋白质合成。在本文所述的两项研究中,我们研究了氨基酸调节大鼠灌注骨骼肌后肢准备中翻译起始的机制。第一项研究比较了生理氨基酸浓度与生理氨基酸浓度对真核起始因子(eIF) 2B和4E的影响。补充氨基酸对蛋白质合成有双重刺激。eIF2B活性、与eIF4E结合蛋白(4E-BP1)相关的eIF4E数量或4E-BP1磷酸化均未发生变化。eIF4E与eIF4G结合的丰度和eIF4E磷酸化程度分别增加了800和20%。在第二项研究中,我们研究了当所有其他氨基酸维持在超生理浓度时,去除亮氨酸对翻译起始的影响。从灌注液中去除亮氨酸使蛋白质合成率降低了40%。蛋白质合成的抑制与eIF2B活性下降40%和eIF4E丰度下降80%相关。如果复杂。eIF4G与eIF4E结合的下降与4E-BP1与eIF4E结合的增加和4E-BP1磷酸化的降低有关。相反,eIF4E的磷酸化程度不受影响。我们得出结论,活性eIF4E的形成。当氨基酸浓度高于生理范围时,eIF4G复合物控制骨骼肌的蛋白质合成,而亮氨酸的去除通过改变eIF2B和eIF4E来减少蛋白质合成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Amino acid-induced stimulation of translation initiation in rat skeletal muscle.

Amino acids stimulate protein synthesis in skeletal muscle by accelerating translation initiation. In the two studies described herein, we examined mechanisms by which amino acids regulate translation initiation in perfused skeletal muscle hindlimb preparation of rats. In the first study, the effects of supraphysiological amino acid concentrations on eukaryotic initiation factors (eIF) 2B and 4E were compared with physiological concentrations of amino acids. Amino acid supplementation stimulated protein synthesis twofold. No changes were observed in eIF2B activity, in the amount of eIF4E associated with the eIF4E-binding protein (4E-BP1), or in the phosphorylation of 4E-BP1. The abundance of eIF4E bound to eIF4G and the extent of phosphorylation of eIF4E were increased by 800 and 20%, respectively. In the second study, we examined the effect of removing leucine on translation initiation when all other amino acids were maintained at supraphysiological concentrations. Removal of leucine from the perfusate decreased the rate of protein synthesis by 40%. The inhibition of protein synthesis was associated with a 40% decrease in eIF2B activity and an 80% fall in the abundance of eIF4E. eIF4G complex. The fall in eIF4G binding to eIF4E was associated with increased 4E-BP1 bound to eIF4E and a reduced phosphorylation of 4E-BP1. In contrast, the extent of phosphorylation of eIF4E was unaffected. We conclude that formation of the active eIF4E. eIF4G complex controls protein synthesis in skeletal muscle when the amino acid concentration is above the physiological range, whereas removal of leucine reduces protein synthesis through changes in both eIF2B and eIF4E.

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