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大麦条纹花叶病毒RNAβ“三基因块”的表达

Expression of the barley stripe mosaic virus RNA beta "triple gene block".

作者信息

Zhou H, Jackson A O

机构信息

Department of Plant Biology, University of California at Berkeley, CA 94720-3102, USA.

出版信息

Virology. 1996 Feb 15;216(2):367-79. doi: 10.1006/viro.1996.0072.

Abstract

Genomic RNA beta of barley strip mosaic virus (BSMV) contains four defined open reading frames (ORFs). These include the coat protein (beta a) and a "triple gene block" consisting of the beta b, beta c, and beta d ORFs that overlap one another. Two subgenomic beta RNAs (sgRNA beta 1 and sgRNA beta 2) with sizes of 2.5 and 0.96 kb were identified in BSMV-infected protoplasts, and their transcription initiation sites were mapped to nucleotides 789 and 2327, respectively, of RNA beta by primer extension experiments. In a cell-free wheat germ translation system, genomic RNA beta served as a mRNA only for the 22-kDa coat protein, and sgRNA beta 1 directed synthesis of only the 58-kDA beta b protein. However, with sgRNA beta 2, three proteins with sizes of 14, 17, and 23 kDa were synthesized. Both the 14- and the 23-kDa proteins were recognized by the beta d antibodies in vitro and in vivo. These results demonstrated that the 14-kDa protein was encoded by the beta d ORF and suggested that the 23-kDa protein, designated beta d', is a readthrough product of the amber stop codon of the beta d ORF. Mutagenesis of sgRNA beta 2 revealed that the 17-kDa protein was a product of the beta c ORF. Expression of sgRNA beta 1 and sgRNA beta 2 was also investigated with the chloramphenicol acetyl transferase (CAT) reporter gene in protoplasts coinfected with RNAs alpha and gamma plus chimeric RNA beta derivatives containing the CAT gene in-frame with the beta b, beta c, beta d, or beta d' ORFs. Elimination of the sgRNA beta 1 promoter abolished CAT expression from the beta b-CAT chimeric RNA, and removal of the sgRNA beta 2 promoter prevented CAT expression from the beta c-CAT, beta d-CAT, and beta d'-CAT chimeric RNAs. Taken together, these results demonstrate that the BSMV coat protein is the sole translation product of the genomic RNA beta, whereas sgRNA beta 1 serves as a messenger for translation of the beta b protein, and sgRNA beta 2 functions as a messenger for translation of beta c and beta d and the newly discovered beta d' protein. Additional mutagenesis experiments indicate that beta c is translated by a leaky scanning mechanism.

摘要

大麦条纹花叶病毒(BSMV)的基因组RNAβ包含四个确定的开放阅读框(ORF)。其中包括外壳蛋白(βa)和一个由βb、βc和βd ORF组成的“三基因块”,这些ORF相互重叠。在感染BSMV的原生质体中鉴定出两种亚基因组βRNA(sgRNAβ1和sgRNAβ2),大小分别为2.5和0.96 kb,通过引物延伸实验将它们的转录起始位点分别定位到RNAβ的第789和2327个核苷酸处。在无细胞小麦胚翻译系统中,基因组RNAβ仅作为22 kDa外壳蛋白的mRNA,而sgRNAβ1仅指导合成58 kDa的βb蛋白。然而,对于sgRNAβ2,合成了三种大小分别为14、17和23 kDa的蛋白质。14 kDa和23 kDa的蛋白质在体外和体内均能被βd抗体识别。这些结果表明,14 kDa的蛋白质由βd ORF编码,并表明23 kDa的蛋白质(命名为βd')是βd ORF琥珀色终止密码子的通读产物。sgRNAβ2的诱变表明,17 kDa的蛋白质是βc ORF的产物。还利用氯霉素乙酰转移酶(CAT)报告基因在与RNAα和γ以及含有与βb、βc、βd或βd' ORF框内的CAT基因的嵌合RNAβ衍生物共感染的原生质体中研究了sgRNAβ1和sgRNAβ2的表达。去除sgRNAβ1启动子消除了βb-CAT嵌合RNA的CAT表达,去除sgRNAβ2启动子则阻止了βc-CAT、βd-CAT和βd'-CAT嵌合RNA的CAT表达。综上所述,这些结果表明,BSMV外壳蛋白是基因组RNAβ的唯一翻译产物,而sgRNAβ1作为βb蛋白翻译的信使,sgRNAβ2作为βc、βd和新发现的βd'蛋白翻译的信使。额外的诱变实验表明,βc是通过渗漏扫描机制进行翻译的。

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