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兔网织红细胞裂解物中蛋白质合成的调控:三元复合物(eIF-2·GTP·Met-tRNAf)形成所需的额外起始因子以及血红素调节蛋白激酶抑制作用的证明。

Regulation of protein synthesis in rabbit reticulocyte lysates: additional initiation factor required for formation of ternary complex (eIF-2.GTP.Met-tRNAf) and demonstration of inhibitory effect of heme-regulated protein kinase.

作者信息

Ranu R S, London I M

出版信息

Proc Natl Acad Sci U S A. 1979 Mar;76(3):1079-83. doi: 10.1073/pnas.76.3.1079.

Abstract

Heme deficiency in rabbit reticulocytes and their lysates leads to the activation of a heme-regulated translational inhibitor (HRI) which causes the cessation of polypeptide initiation. HRI is a protein kinase that specifically phosphorylates the 38,000-dalton subunit of eukaryotic initiation factor 2 (eIF-2). eIF-2 binds Met-tRNA(f) and GTP in ternary complex. As a continuation of the studies on the molecular basis of the inhibition of the formation of 40S ribosomal subunit-Met-tRNA(f) complexes by HRI [Ranu, R. S., London, I. M., Das, A., Dasgupta, A., Majumdar, A., Ralston, R., Roy, R. & Gupta, N. K. (1978) Proc. Natl. Acad. Sci. USA 75, 745-749], we describe here the isolation and some characteristics of a factor that is required for the HRI-catalyzed inhibition of eIF-2-promoted ternary complex formation. In the presence of 1 mM Mg(2+), ternary complex formation by eIF-2 is dependent on the presence of this stabilization factor (SF). Under these conditions, SF increases the rate and the extent of ternary complex formation. This finding suggests that the interaction of SF with eIF-2 causes a conformational change that stabilizes eIF-2 and promotes efficient ternary complex formation by increasing the affinity of eIF-2 for GTP and Met-tRNA(f). In the absence of Mg(2+), however, eIF-2 efficiently forms the ternary complex and SF has little effect on its ternary complex formation capacity-hence, the name eIF-2 stabilization factor (SF). In the presence of SF, HRI markedly inhibits (70-80%) the ternary complex formation capacity of eIF-2. The inhibitory effect requires both HRI and ATP. Under these conditions, HRI phosphorylates only the 38,000-dalton subunit of eIF-2. Both the rate and the extent of the SF-dependent ternary complex formation are inhibited. These findings are consistent with the idea that phosphorylation causes a conformational change in eIF-2 such that its interactions with other initiation factors in the formation and the binding of ternary complex to 40S ribosomal subunits are inhibited.

摘要

兔网织红细胞及其裂解物中的血红素缺乏会导致血红素调节的翻译抑制剂(HRI)活化,从而使多肽起始过程停止。HRI是一种蛋白激酶,它特异性地磷酸化真核起始因子2(eIF-2)的38000道尔顿亚基。eIF-2在三元复合物中结合甲硫氨酰 - tRNA(f)和GTP。作为对HRI抑制40S核糖体亚基 - 甲硫氨酰 - tRNA(f)复合物形成的分子基础研究的延续[拉努,R.S.,伦敦,I.M.,达斯,A.,达斯古普塔,A.,马宗达,A.,拉尔斯顿,R.,罗伊,R.和古普塔,N.K.(1978年)美国国家科学院院刊75,745 - 749],我们在此描述一种因子的分离及其一些特性,该因子是HRI催化抑制eIF-2促进的三元复合物形成所必需的。在存在1 mM Mg(2+)的情况下,eIF-2形成三元复合物依赖于这种稳定因子(SF)的存在。在这些条件下,SF增加了三元复合物形成的速率和程度。这一发现表明,SF与eIF-2的相互作用导致构象变化,从而稳定eIF-2,并通过增加eIF-2对GTP和甲硫氨酰 - tRNA(f)的亲和力促进高效的三元复合物形成。然而,在不存在Mg(2+)的情况下,eIF-2能有效地形成三元复合物,而SF对其形成三元复合物的能力影响很小——因此,称为eIF-2稳定因子(SF)。在存在SF的情况下,HRI显著抑制(70 - 80%)eIF-2形成三元复合物的能力。这种抑制作用需要HRI和ATP两者。在这些条件下,HRI仅磷酸化eIF-2的38000道尔顿亚基。依赖于SF的三元复合物形成的速率和程度均受到抑制。这些发现与以下观点一致,即磷酸化导致eIF-2构象变化,使得其在三元复合物形成以及三元复合物与40S核糖体亚基结合过程中与其他起始因子的相互作用受到抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bce/383192/dce76158241e/pnas00003-0080-a.jpg

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