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真核生物中的无义抑制:将非洲爪蟾卵母细胞用作体内检测系统

Nonsense suppression in eukaryotes: the use of the Xenopus oocyte as an in vivo assay system.

作者信息

Bienz M, Kubli E, Kohli J, de Henau S, Grosjean H

出版信息

Nucleic Acids Res. 1980 Nov 25;8(22):5169-78. doi: 10.1093/nar/8.22.5169.

Abstract

Amber, ochre, and opal nonsense suppressor tRNAs isolated from yeast were injected into Xenopus laevis oocytes together with purified mRNAs (globin mRNA from rabbit, tobacco mosaic virus-RNA). Yeast opal suppressor tRNA is able to read the UGA stop codon of the rabbit beta-globin mRNA, thus producing a readthrough protein. A large readthrough product is also obtained upon coinjection of yeast amber or ochre suppressor tRNA with TMV-RNA. The amount of readthrough product is dependent on the amount of injected suppressor tRNA. The suppression of the terminator codon of TMV-RNA is not susceptible to Mg++ concentration or polyamine addition. Therefore, the Xenopus laevis oocyte provides a simple, sensitive, and well buffered in vivo screening system for all three types of eukaryotic nonsense suppressor tRNAs.

摘要

从酵母中分离出的琥珀型、赭石型和乳白型无义抑制tRNA与纯化的mRNA(来自兔子的珠蛋白mRNA、烟草花叶病毒-RNA)一起注射到非洲爪蟾卵母细胞中。酵母乳白型抑制tRNA能够识别兔子β-珠蛋白mRNA的UGA终止密码子,从而产生通读蛋白。将酵母琥珀型或赭石型抑制tRNA与烟草花叶病毒-RNA共同注射时,也会获得大量的通读产物。通读产物的量取决于注射的抑制tRNA的量。烟草花叶病毒-RNA终止密码子的抑制不受Mg++浓度或多胺添加的影响。因此,非洲爪蟾卵母细胞为所有三种类型的真核无义抑制tRNA提供了一个简单、灵敏且缓冲良好的体内筛选系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/494e/324292/75e9a1d0cdcb/nar00439-0042-a.jpg

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