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烟草脆裂病毒RNA中存在泄漏的UGA终止密码子,该密码子可被具有CmCA反密码子的烟草叶绿体和细胞质色氨酸tRNA(Trp)所抑制。

The leaky UGA termination codon of tobacco rattle virus RNA is suppressed by tobacco chloroplast and cytoplasmic tRNAs(Trp) with CmCA anticodon.

作者信息

Zerfass K, Beier H

机构信息

Institut für Biochemie, Bayerische Julius-Maximilians-Universität, Würzburg, Germany.

出版信息

EMBO J. 1992 Nov;11(11):4167-73. doi: 10.1002/j.1460-2075.1992.tb05510.x.

Abstract

RNA-1 molecules from tobacco rattle virus (TRV) and pea early-browning virus (PEBV), two members of the tobravirus group, have recently been shown to contain internal, in-frame UGA termination codons which are suppressed in vitro. Our results suggest that a UGA stop codon also exists in RNA-1 of pepper ringspot virus (PRV), another tobravirus. UGA suppression may therefore be a universal feature of the expression of tobravirus genomes. We have isolated two natural suppressor tRNAs from uninfected tobacco plants on the basis of their ability to promote readthrough over the leaky UGA codon of TRV RNA-1 in a wheat germ extract depleted of endogenous mRNAs and tRNAs. Their amino acid acceptance and nucleotide sequences identify the two UGA-suppressor tRNAs as chloroplast (chl) and cytoplasmic (cyt) tryptophan-specific tRNAs with the anticodon CmCA. These are the first UGA suppressor tRNAs to be identified in plants. They have several interesting features. (i) Chl tRNA(Trp) suppresses the UGA stop codon more efficiently than cyt tRNA(Trp). (ii) Chl tRNA(Trp) contains an A24:U11 pair in the D-stem as does the mutated Escherichia coli UGA-suppressor tRNA(Trp) which is a more active suppressor than wild-type tRNA(Trp). (iii) The suppressor activity of chl tRNA(Trp) is dependent on the nucleotides surrounding the stop codon because it recognizes UGA in the TRV context but not the UGA in the beta-globin context.

摘要

烟草脆裂病毒(TRV)和豌豆早褐病毒(PEBV)属于烟草花叶病毒组,最近研究表明,这两种病毒的RNA - 1分子含有内部的、符合读码框的UGA终止密码子,这些密码子在体外可被抑制。我们的研究结果表明,另一种烟草花叶病毒——辣椒环斑病毒(PRV)的RNA - 1中也存在UGA终止密码子。因此,UGA抑制可能是烟草花叶病毒基因组表达的一个普遍特征。我们从未感染的烟草植株中分离出了两种天然抑制性tRNA,其依据是在去除了内源性mRNA和tRNA的小麦胚提取物中,它们能够促进对TRV RNA - 1中泄漏的UGA密码子进行通读。它们的氨基酸接纳能力和核苷酸序列表明,这两种UGA抑制性tRNA是叶绿体(chl)和细胞质(cyt)中具有反密码子CmCA的色氨酸特异性tRNA。这是在植物中首次鉴定出的UGA抑制性tRNA。它们具有几个有趣的特征。(i)叶绿体tRNA(Trp)比细胞质tRNA(Trp)更有效地抑制UGA终止密码子。(ii)叶绿体tRNA(Trp)在D - 茎中含有A24:U11碱基对,突变的大肠杆菌UGA抑制性tRNA(Trp)也是如此,它比野生型tRNA(Trp)是更活跃的抑制子。(iii)叶绿体tRNA(Trp)的抑制活性取决于终止密码子周围的核苷酸,因为它能识别TRV环境中的UGA,但不能识别β - 珠蛋白环境中的UGA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3b2/556927/0aec060e5819/emboj00096-0351-a.jpg

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