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灌注大鼠肝脏中氨基酸剥夺抑制肽链起始的机制。涉及真核起始因子2α磷酸酶活性抑制的调节。

Mechanism of inhibition of peptide chain initiation by amino acid deprivation in perfused rat liver. Regulation involving inhibition of eukaryotic initiation factor 2 alpha phosphatase activity.

作者信息

Kimball S R, Antonetti D A, Brawley R M, Jefferson L S

机构信息

Department of Cellular and Molecular Physiology, College of Medicine, Pennsylvania State University, Hershey 17033.

出版信息

J Biol Chem. 1991 Jan 25;266(3):1969-76.

PMID:1671047
Abstract

In previous studies, initiation of protein synthesis was shown to be inhibited in perfused rat livers deprived of single essential amino acids. In the present study, histidinol, a competitive inhibitor of histidinyl-tRNA synthetase, was used to amplify the effects of histidine deprivation on protein synthesis in perfused liver to facilitate investigation of mechanisms involved in the inhibition of peptide chain initiation. Protein synthesis was reduced to 77% of the control rate in livers deprived of histidine and to 13% of the control rate in livers deprived of histidine and exposed to 2.0 mM histidinol. The inhibition of protein synthesis caused by histidine deprivation alone was accompanied by a 2-fold increase in the number of free ribosomal particles, a 29% decrease in Met-tRNA(i) binding to 43 S preinitiation complexes, and a 31% reduction in activity of eukaryotic initiation factor 2B (eIF-2B). By comparison, histidine deprivation combined with histidinol addition resulted in a 3-fold increase in free ribosomal particles, a 66% decrease in Met-tRNAi binding, and a 78% reduction in eIF-2B activity. The proportion of the alpha-subunit of eukaryotic initiation factor two (eIF-2) in the phosphorylated form increased from 8.9 +/- 0.8% in control livers to 52.4 +/- 5.5% in response to histidinol. The increase in the amount of eIF-2 alpha in the phosphorylated form apparently was not due to an increase in kinase activity, because there was no change in eIF-2 alpha kinase activity in extracts of liver perfused with medium containing histidinol compared to controls. Instead, the increased phosphorylation of eIF-2 alpha was associated with an inhibition of eIF-2 alpha phosphatase activity. Thus, in contrast to other systems that have been examined, the mechanism involved in the increase in the phosphorylation state of eIF-2 alpha appears to involve an inhibition of eIF-2 alpha phosphatase activity rather than activation of an eIF-2 alpha kinase.

摘要

在以往的研究中,已表明在缺乏单一必需氨基酸的灌注大鼠肝脏中,蛋白质合成的起始受到抑制。在本研究中,组氨醇(组氨酰 - tRNA合成酶的竞争性抑制剂)被用于增强组氨酸缺乏对灌注肝脏中蛋白质合成的影响,以促进对肽链起始抑制所涉及机制的研究。在缺乏组氨酸的肝脏中,蛋白质合成降至对照速率的77%;在缺乏组氨酸并暴露于2.0 mM组氨醇的肝脏中,蛋白质合成降至对照速率的13%。仅组氨酸缺乏引起的蛋白质合成抑制伴随着游离核糖体颗粒数量增加2倍、甲硫氨酰 - tRNA(i)与43 S前起始复合物的结合减少29%以及真核起始因子2B(eIF - 2B)活性降低31%。相比之下,组氨酸缺乏与添加组氨醇相结合导致游离核糖体颗粒增加3倍、甲硫氨酰 - tRNAi结合减少66%以及eIF - 2B活性降低78%。真核起始因子2(eIF - 2)的α亚基磷酸化形式的比例从对照肝脏中的8.9±0.8%增加到对组氨醇反应后的52.4±5.5%。磷酸化形式的eIF - 2α量的增加显然不是由于激酶活性增加,因为与对照相比,用含组氨醇的培养基灌注的肝脏提取物中eIF - 2α激酶活性没有变化。相反,eIF - 2α磷酸化增加与eIF - 2α磷酸酶活性的抑制有关。因此,与已研究的其他系统不同,eIF - 2α磷酸化状态增加所涉及的机制似乎是eIF - 2α磷酸酶活性的抑制,而不是eIF - 2α激酶的激活。

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