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潮霉素B(一种真核生物中易位作用的抑制剂)作用模式的研究。

Studies on the mode of action of hygromycin B, an inhibitor of translocation in eukaryotes.

作者信息

González A, Jiménez A, Vázquez D, Davies J E, Schindler D

出版信息

Biochim Biophys Acta. 1978 Dec 21;521(2):459-69. doi: 10.1016/0005-2787(78)90287-3.

Abstract

Hygromycin B is an unusual aminoglycoside antibiotic active against both prokaryotic and eukaryotic cells. Hygromycin B at 0.38 mM concentration completely halts yeast cell growth in rich media, presumably by preventing protein synthesis by cytoplasmic ribosomes. Polypeptide synthesis in cell-free extracts from rabbit reticulocytes, wheat germ and yeast is strongly blocked by low concentrations of hygromycin B. The antibiotic inhibits peptide chain elongation by yeast polysomes by preventing elongation factor EF-2-dependent translocation, although it does not affect either the formation of the EF-2-GTP-ribosome complex or the EF-2- and ribosome-dependent GTP hydrolysis which takes place uncoupled from translocation. The inhibition of translocation by hygromycin B might result from the stabilization of peptidyl-tRNA bound to the ribosomal acceptor site, since the stability of [3H]Phe-tRNA-EF-1-poly(U)-ribosome and [3H]Phe-tRNA-poly(U)-ribosome complexes is increased in the presence of hygromycin B. The inhibition of polyphenylalanine synthesis by reticulocyte ribosomes and enzymic translocation of peptidyl-tRNA by yeast polysomes can be reversed by increasing concentrations of EF-2 suggesting a relationship between the binding sites of EF-2 and hygromycin B on the ribosome. Neither non-enzymic translocation, that takes place in the presence of high potassium concentrations, nor the peptide bondforming step are affected by hygromycin B.

摘要

潮霉素B是一种不同寻常的氨基糖苷类抗生素,对原核细胞和真核细胞均有活性。浓度为0.38 mM的潮霉素B能完全抑制富培养基中酵母细胞的生长,推测是通过阻止细胞质核糖体的蛋白质合成来实现的。低浓度的潮霉素B能强烈阻断兔网织红细胞、小麦胚芽和酵母无细胞提取物中的多肽合成。该抗生素通过阻止延伸因子EF - 2依赖的易位来抑制酵母多聚核糖体的肽链延伸,尽管它不影响EF - 2 - GTP -核糖体复合物的形成,也不影响与易位解偶联发生的EF - 2和核糖体依赖的GTP水解。潮霉素B对易位的抑制可能是由于与核糖体受体位点结合的肽基 - tRNA的稳定,因为在潮霉素B存在的情况下,[³H]苯丙氨酸 - tRNA - EF - 1 -聚(U) -核糖体和[³H]苯丙氨酸 - tRNA -聚(U) -核糖体复合物的稳定性增加。增加EF - 2的浓度可逆转网织红细胞核糖体对聚苯丙氨酸合成的抑制以及酵母多聚核糖体对肽基 - tRNA的酶促易位,这表明EF - 2和潮霉素B在核糖体上的结合位点之间存在关联。高钾浓度下发生的非酶促易位以及肽键形成步骤均不受潮霉素B的影响。

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