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兔网织红细胞中的蛋白质合成:血红素调节抑制剂对蛋白质合成的抑制机制。

Protein synthesis in rabbit reticulocytes: mechanism of protein synthesis inhibition by heme-regulated inhibitor.

作者信息

Das A, Ralston R O, Grace M, Roy R, Ghosh-Dastidar P, Das H K, Yaghmai B, Palmieri S, Gupta N K

出版信息

Proc Natl Acad Sci U S A. 1979 Oct;76(10):5076-9. doi: 10.1073/pnas.76.10.5076.

Abstract

Partially purified Met-tRNAf binding factor, eIF-2, was phosphorylated by using heme-regulated inhibitor (HRI). Phosphorylated eIF-2 was freed from HRI by phosphocellulose column chromatography. Analysis by isoelectric focusing showed 100% phosphorylation of the 38,000-dalton subunit of eIF-2. Both eIF-2 and eIF-2(P) formed ternary complexes with Met-tRNAf and GTP with almost the same efficiency, and in both cases the ternary complex formation was drastically inhibited by prior addition of Mg2+. However, whereas the ternary complexes formed with eIF-2 could be stimulated by Co-eIF-2C at 1 mM Mg2+ and dissociated by Co-eIF-2B at 5 mM Mg2+, the ternary complexes formed with eIF-2(P) were unresponsive to both Co-eIF-2B and Co-e-IF-2C. Also, under conditions of eIF-2 phosphorylation, HRI drastically inhibited AUG-dependent Met-tRNAf binding to 40S ribosomes. However, HRI (in the presence of ATP) had no effect on the joining of preformed Met-tRNAf . 40S . AUG complex to the 60S ribosomal subunit to form Met-tRNAf-80S . AUG complex. These studies suggest that HRI inhibits protein synthesis initiation by phosphorylation of the 38,000-dalton subunit of eIF-2. HRI-phosphorylated eIF-2 does not interact with at least two other protein factors, Co-eIF-2B and Co-eIF-2C, and is thus inactive in protein synthesis initiation.

摘要

利用血红素调节抑制剂(HRI)对部分纯化的甲硫氨酰 - tRNAf结合因子eIF - 2进行磷酸化。通过磷酸纤维素柱层析将磷酸化的eIF - 2从HRI中分离出来。等电聚焦分析显示eIF - 2的38000道尔顿亚基发生了100%的磷酸化。eIF - 2和磷酸化的eIF - 2(eIF - 2(P))与甲硫氨酰 - tRNAf和GTP形成三元复合物的效率几乎相同,并且在这两种情况下,预先添加Mg2 +都会显著抑制三元复合物的形成。然而,用eIF - 2形成的三元复合物在1 mM Mg2 +时可被Co - eIF - 2C刺激,并在5 mM Mg2 +时被Co - eIF - 2B解离,而用eIF - 2(P)形成的三元复合物对Co - eIF - 2B和Co - eIF - 2C均无反应。此外,在eIF - 2磷酸化的条件下,HRI显著抑制甲硫氨酰 - tRNAf与40S核糖体的AUG依赖性结合。然而,HRI(在ATP存在的情况下)对预先形成的甲硫氨酰 - tRNAf·40S·AUG复合物与60S核糖体亚基结合形成甲硫氨酰 - tRNAf - 80S·AUG复合物没有影响。这些研究表明,HRI通过对eIF - 2的38000道尔顿亚基进行磷酸化来抑制蛋白质合成起始。HRI磷酸化的eIF - 2不与至少另外两种蛋白质因子Co - eIF - 2B和Co - eIF - 2C相互作用,因此在蛋白质合成起始中无活性。

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