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7-甲基鸟苷在小麦胚芽和网织红细胞无细胞系统中水泡性口炎病毒mRNA的核糖体结合及翻译中的相对重要性

Relative importance of 7-methylguanosine in ribosome binding and translation of vesicular stomatitis virus mRNA in wheat germ and reticulocyte cell-free systems.

作者信息

Lodish H F, Rose J K

出版信息

J Biol Chem. 1977 Feb 25;252(4):1181-8.

PMID:190222
Abstract

Vesicular stomatitis virus mRNAs with these four types of 5'-termini, (a) m7G5'ppp5'(m)Am, (b) ppp5'(m)Am, (c) m7G5'-ppp5' Am, and (d) G5'ppp5'A, were prepared and their translation and ribosome binding analyzed in wheat germ and reticulocyte cell-free protein synthesis systems. The relative efficiencies of translation of individual vesicular stomatitis virus (VSV) mRNAs having type 2 termini ranged from 23 to 29% of the control (type 1) RNA in the reticulocyte system and 6 to 7% of control RNA in the wheat germ system. A similar difference between the two systems was seen in ribosome-binding experiments in which type 2 RNA formed an 80 S initiation complex with high efficiency (70% of control type 1 RNA) in the reticulocyte system, but with low efficiency (17% of control RNA) in the wheat germ system. Similar differences in the importance of m7G in translation in the two systems were seen when VSV mRNAs synthesized in vitro with type 3 and type 4 termini were analyzed. However, the analysis of type 4 RNA (which was synthesized in vitro in the presence of S-adenosylhomocysteine) was complicated by the presence of abnormally large poly(A) at its 3'-end. Another series of experiments showed that compounds such as 5'pm7G and m7G5'ppp5'Np are potent and specific inhibitors of translation of all types of VSV mRNAs in the wheat germ system (greater than 98% inhibition) but cause less than 20% inhibition of translation in the reticulocyte system. Taken together, all of the results indicate that a 5'-terminal m7G is far more important in translation of VSV mRNAs in the heterologous plant cell-free system than in the reticulocyte lysate system.

摘要

制备了具有这四种5'-末端类型的水疱性口炎病毒mRNA,(a) m7G5'ppp5'(m)Am,(b) ppp5'(m)Am,(c) m7G5'-ppp5'Am,以及(d) G5'ppp5'A,并在小麦胚芽和网织红细胞无细胞蛋白质合成系统中分析了它们的翻译和核糖体结合情况。在网织红细胞系统中,具有2型末端的单个水疱性口炎病毒(VSV)mRNA的相对翻译效率为对照(1型)RNA的23%至29%,在小麦胚芽系统中为对照RNA的6%至7%。在核糖体结合实验中,两个系统之间也出现了类似的差异,其中2型RNA在网织红细胞系统中高效形成80S起始复合物(为对照1型RNA的70%),但在小麦胚芽系统中效率较低(为对照RNA的17%)。当分析在体外合成的具有3型和4型末端的VSV mRNA时,在两个系统中m7G在翻译中的重要性也出现了类似的差异。然而,对4型RNA(在S-腺苷同型半胱氨酸存在下体外合成)的分析因在其3'-末端存在异常大的多聚(A)而变得复杂。另一系列实验表明,诸如5'pm7G和m7G5'ppp5'Np等化合物是小麦胚芽系统中所有类型VSV mRNA翻译的有效且特异性抑制剂(抑制率大于98%),但在网织红细胞系统中引起的翻译抑制小于20%。综上所述,所有结果表明,5'-末端的m7G在异源植物无细胞系统中VSV mRNA的翻译中比在网织红细胞裂解物系统中重要得多。

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