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相思豆毒素对肽链延伸步骤的影响。

Effect of modeccin on the steps of peptide-chain elongation.

作者信息

Montanaro L, Sperti S, Zamboni M, Denaro M, Testoni G, Gasperi-Campani A, Stirpe F

出版信息

Biochem J. 1978 Nov 15;176(2):371-9. doi: 10.1042/bj1760371.

Abstract

Modeccin inhibits polypeptide-chain elongation catalysed by Artemia salina (brine shrimp) ribosomes by inactivating the 60 S ribosomal subunit. Among the individual steps of elongation, peptide-bond formation, catalysed by 60 S peptidyltransferase, is unaffected by the toxin, whereas the binding of EF 2 (elongation factor 2) to ribosomes is strongly inhibited. Modeccin does not affect the poly(U)-dependent non-enzymic binding of either deacylated tRNAPhe or phenylalanyl-tRNA to ribosomes. The inhibitory effect of modeccin on the EF 1 (elongation factor 1)-dependent binding of phenylalanyl-tRNA is discussed, since it is decreased by tRNAPhe, which stimulates the binding reaction. The analysis of the distribution of ribosome-bound radioactivity during protein synthesis shows that modeccin consistently inhibits the radioactivity bound as long-chain peptides, but depending on the experimental conditions, can leave unchanged or even greatly stimulates the radioactivity bound as phenylalanyl-tRNA and/or short-chain peptides. It is concluded that, during the complete elongation cycle, modeccin does not affect the binding of the first aminoacyl-tRNA to ribosomes, but inhibits some step in the subsequent repetitive activity of either EF 1 or EF 2. The results obtained indicate that the mechanism of action of modeccin is very similar to that of ricin and related plant toxins such as abrin and crotin.

摘要

相思豆毒素通过使60S核糖体亚基失活,抑制卤虫(盐水虾)核糖体催化的多肽链延伸。在延伸的各个步骤中,由60S肽基转移酶催化的肽键形成不受毒素影响,而EF 2(延伸因子2)与核糖体的结合则受到强烈抑制。相思豆毒素不影响去酰化苯丙氨酰 - tRNA或苯丙氨酰 - tRNA与核糖体的多聚(U)依赖性非酶结合。由于苯丙氨酰 - tRNA刺激结合反应,相思豆毒素对EF 1(延伸因子1)依赖性苯丙氨酰 - tRNA结合的抑制作用因此而降低。蛋白质合成过程中核糖体结合放射性分布的分析表明,相思豆毒素始终抑制以长链肽形式结合的放射性,但根据实验条件,可能使以苯丙氨酰 - tRNA和/或短链肽形式结合的放射性保持不变甚至大大增加。得出的结论是,在完整的延伸循环中,相思豆毒素不影响第一个氨酰 - tRNA与核糖体的结合,但抑制EF 1或EF 2后续重复活性中的某些步骤。获得的结果表明,相思豆毒素的作用机制与蓖麻毒素以及诸如相思子毒素和巴豆毒素等相关植物毒素的作用机制非常相似。

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