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真核生物起始因子2相关的67千道尔顿多肽(p67)在动物细胞蛋白质合成起始的调控中起关键作用。

The eukaryotic initiation factor 2-associated 67-kDa polypeptide (p67) plays a critical role in regulation of protein synthesis initiation in animal cells.

作者信息

Ray M K, Datta B, Chakraborty A, Chattopadhyay A, Meza-Keuthen S, Gupta N K

机构信息

Department of Chemistry, University of Nebraska, Lincoln 68588-0304.

出版信息

Proc Natl Acad Sci U S A. 1992 Jan 15;89(2):539-43. doi: 10.1073/pnas.89.2.539.

Abstract

The eukaryotic initiation factor 2 (eIF-2)-associated 67-kDa polypeptide (p67) isolated from reticulocyte lysate protects the eIF-2 alpha subunit from eIF-2 kinase-catalyzed phosphorylation and promotes protein synthesis in the presence of active eIF-2 kinases. We have now studied the roles of p67 and eIF-2 kinases in regulation of protein synthesis using several animal cell lysates and an animal cell line (KRC-7) in culture under various growth conditions. The results are as follows. (i) Both p67 and eIF-2 kinase(s) are present in active forms in all animal cells under normal growth conditions and p67 protects the eIF-2 alpha subunit from eIF-2 kinase-catalyzed phosphorylation, thus promoting protein synthesis in the presence of active eIF-2 kinases. (ii) In heme-deficient reticulocyte lysates and in serum-starved KRC-7 cells in culture, p67 is deglycosylated and subsequently degraded. This leads to eIF-2 kinase-catalyzed eIF-2 alpha-subunit phosphorylation and thus to protein synthesis inhibition. (iii) Addition of a mitogen (namely, phorbol 12-myristate 13-acetate) to serum-starved KRC-7 cells in culture induces an increase of p67 and thus increases protein synthesis. These results suggest the following conclusions. (i) Protein synthesis inhibition in a heme-deficient reticulocyte lysate is not due to the activation of an eIF-2 kinase (heme-regulated inhibitor), as is generally believed, but is due to degradation of p67. The heme-regulated inhibitor is present in an active form and possibly in equal amounts in both heme-deficient and heme-supplemented reticulocyte lysates but cannot phosphorylate eIF-2 alpha subunit because of the presence of p67. (ii) p67 is essential for protein synthesis as it protects the eIF-2 alpha subunit from eIF-2 kinase-catalyzed phosphorylation and promotes protein synthesis in the presence of one or more active eIF-2 kinases present in all animal cells. (iii) p67 is both degradable and inducible. Only the p67 level correlates directly with the protein synthesis activity of the cell, indicating that p67 is a critical factor in protein synthesis regulation in animal cells.

摘要

从网织红细胞裂解物中分离出的真核生物起始因子2(eIF-2)相关的67 kDa多肽(p67)可保护eIF-2α亚基免受eIF-2激酶催化的磷酸化作用,并在有活性eIF-2激酶存在的情况下促进蛋白质合成。我们现在利用几种动物细胞裂解物和一种培养中的动物细胞系(KRC-7),在各种生长条件下研究了p67和eIF-2激酶在蛋白质合成调控中的作用。结果如下。(i)在正常生长条件下,p67和eIF-2激酶在所有动物细胞中均以活性形式存在,并且p67可保护eIF-2α亚基免受eIF-2激酶催化的磷酸化作用,从而在有活性eIF-2激酶存在的情况下促进蛋白质合成。(ii)在血红素缺乏的网织红细胞裂解物和培养的血清饥饿的KRC-7细胞中,p67去糖基化并随后降解。这导致eIF-2激酶催化eIF-2α亚基磷酸化,从而抑制蛋白质合成。(iii)向培养的血清饥饿的KRC-7细胞中添加促有丝分裂原(即佛波醇12-肉豆蔻酸酯13-乙酸酯)可诱导p67增加,从而增加蛋白质合成。这些结果提示了以下结论。(i)血红素缺乏的网织红细胞裂解物中的蛋白质合成抑制并非如通常所认为的那样是由于eIF-2激酶(血红素调节抑制剂)的激活,而是由于p67的降解。血红素调节抑制剂以活性形式存在,并且在血红素缺乏和血红素补充的网织红细胞裂解物中可能含量相等,但由于p67的存在而不能使eIF-2α亚基磷酸化。(ii)p67对蛋白质合成至关重要,因为它可保护eIF-2α亚基免受eIF-2激酶催化的磷酸化作用,并在所有动物细胞中存在的一种或多种活性eIF-2激酶存在的情况下促进蛋白质合成。(iii)p67既可降解又可诱导。只有p67水平与细胞的蛋白质合成活性直接相关,这表明p

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32dc/48274/9968f3883e22/pnas01076-0096-a.jpg

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