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呼肠孤病毒3型温度敏感突变体对蛋白质合成的控制。I. ts261-b突变体的温度敏感功能。

Control of protein synthesis by a temperature-sensitive mutant of reovirus 3. I. Temperature-sensitive function of ts261-b mutant.

作者信息

Ikegami N

出版信息

J Virol. 1977 Apr;22(1):31-46. doi: 10.1128/JVI.22.1.31-46.1977.

Abstract

The ability of a temperature-sensitive (ts) mutant of reovirus, ts261-b, to synthesize virus-specific RNAs and proteins during infection at the nonpermissive temperature (37 degrees C) was investigated. The relative amounts of the mutant virus-specific single-stranded (ss) RNA's and double-stranded (ds) RNA's synthesized in cells at 37 degrees C were 20 to 25% as much as those synthesized in the wild-type virus-infected cells. The 10 segments of the mutant ds RNAs and the three size classes of the ss RNAs were synthesized in the usual proportions. The methylation of the mutant viral mRNA's (ss RNAs) was not blocked at 37 degrees C in infected cells. A striking temperature-sensitive restricted function of the ts261-b mutant was expressed in the synthesis of the viral proteins. This study, which uses an in vitro protein-synthesizing system reconstituted with an endogenous polysomal fraction and a postribosomal supernatant from reovirus-infected cells, has demonstrated that the endogenous polysomes obtained from ts261-b mutant-infected cells at 37 degrees C are not active in the synthesis of the viral polypeptides of known molecular weights, and the amounts of the mutant viral polypeptides synthesized in vitro by these polysomes are 5 to 9% of those synthesized by the corresponding fraction from wild-type-infected cells. The impaired protein-synthesizing capacity of the mutant virus-specific polysomes can be restored during maintenance of the infected cells at 30 degrees C after shift-down from 37 degrees C. The in vitro synthesis of viral polypeptides of known size by the active endogenous polysomes derived from cells infected at the permissive temperature is accelerated by the addition of the postribosomal supernatant obtained from cells infected at the permissive temperature. The postribosomal supernatant from mutant-infected cells at 37 degrees C did not have a stimulatory effect, but rather, it inhibited in vitro viral protein synthesis.

摘要

研究了呼肠孤病毒的温度敏感(ts)突变体ts261-b在非允许温度(37℃)感染期间合成病毒特异性RNA和蛋白质的能力。在37℃下细胞中合成的突变病毒特异性单链(ss)RNA和双链(ds)RNA的相对量是野生型病毒感染细胞中合成量的20%至25%。突变ds RNA的10个片段和ss RNA的三个大小类别以通常的比例合成。感染细胞中突变病毒mRNA(ss RNA)的甲基化在37℃时未被阻断。ts261-b突变体显著的温度敏感限制功能表现在病毒蛋白质的合成中。本研究使用了一种体外蛋白质合成系统,该系统由呼肠孤病毒感染细胞的内源性多核糖体部分和核糖体后上清液重构而成,结果表明,在37℃下从ts261-b突变体感染细胞中获得的内源性多核糖体在合成已知分子量的病毒多肽方面没有活性,这些多核糖体在体外合成的突变病毒多肽量是野生型感染细胞相应部分合成量的5%至9%。在从37℃下调后,将感染细胞维持在30℃期间,突变病毒特异性多核糖体受损的蛋白质合成能力可以恢复。通过添加从允许温度感染的细胞中获得的核糖体后上清液,可加速由允许温度感染的细胞产生的活性内源性多核糖体对已知大小病毒多肽的体外合成。来自37℃下突变体感染细胞的核糖体后上清液没有刺激作用,反而抑制了体外病毒蛋白质合成。

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1
THE SECONDARY STRUCTURE OF REOVIRUS RNA.呼肠孤病毒RNA的二级结构
Proc Natl Acad Sci U S A. 1963 May;49(5):707-14. doi: 10.1073/pnas.49.5.707.
4
RNA metabolism in the HeLa cell nucleus.海拉细胞核中的RNA代谢
J Mol Biol. 1966 May;17(1):117-30. doi: 10.1016/s0022-2836(66)80098-0.

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