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pufQ-pufB基因间区域对荚膜红细菌中puf mRNA稳定性的影响。

Effect of the pufQ-pufB intercistronic region on puf mRNA stability in Rhodobacter capsulatus.

作者信息

Heck C, Rothfuchs R, Jäger A, Rauhut R, Klug G

机构信息

Institut für Mikrobiologie und Molekularbiologie, Justus Liebig Universität Giessen, Germany.

出版信息

Mol Microbiol. 1996 Jun;20(6):1165-78. doi: 10.1111/j.1365-2958.1996.tb02637.x.

Abstract

Differential expression of genes localized within the polycistronic puf operon of Rhodobacter capsulatus is partly due to altered stabilities of individual mRNA segments. We show that the 5' untranslated region (UTR) of pufB contributes to the unusual longevity of the 0.5 kb light-harvesting (LH) I specific pufBA mRNA and of the 2.7 kb pufBALMX mRNA. Three stem-loop structures have been identified within the pufQ-pufB intercistronic region by means of RNA secondary-structure analysis in vitro and in vivo. Deletion analysis of the pufB 5' UTR indicates that the complete set of secondary structures is required to maintain wild-type levels of pufBA mRNA stability. A phylogenetic comparison of pufB 5' UTRs of other photosynthetic bacteria reveals an evolutionary conservation of the base-pairing potential despite sequence divergence. Comparison of puf mRNA decay in Escherichia coli strains with or without endoribonuclease E (RNase E) activity suggests that the pufB 5' secondary structures protect the downstream mRNA segment against degradation by RNase E. Removal of the 117-nucleotide pufQ-pufB intercistronic region results in loss of stability for the pufBA and pufBALMX mRNAs with concomitant stabilization of the full-length puf primary transcript (QBALMX). We therefore conclude that the deleted sequence functions both as a stabilizing element for pufBALMX and pufBA segments and as a target site for initial rate-limiting decay of the unstable pufQBALMX mRNA.

摘要

荚膜红细菌多顺反子puf操纵子内定位基因的差异表达部分归因于各个mRNA片段稳定性的改变。我们发现,pufB的5'非翻译区(UTR)有助于0.5 kb光捕获(LH)I特异性pufBA mRNA和2.7 kb pufBALMX mRNA的异常长寿。通过体外和体内RNA二级结构分析,在pufQ-pufB基因间区域内鉴定出三个茎环结构。pufB 5'UTR的缺失分析表明,完整的二级结构集是维持pufBA mRNA稳定性野生型水平所必需的。对其他光合细菌pufB 5'UTR的系统发育比较揭示,尽管序列存在差异,但碱基配对潜力具有进化保守性。比较有无核糖核酸内切酶E(RNase E)活性的大肠杆菌菌株中puf mRNA的衰变情况表明,pufB 5'二级结构可保护下游mRNA片段免受RNase E的降解。去除117个核苷酸的pufQ-pufB基因间区域会导致pufBA和pufBALMX mRNA稳定性丧失,同时全长puf初级转录本(QBALMX)会稳定下来。因此,我们得出结论,缺失的序列既作为pufBALMX和pufBA片段的稳定元件,又作为不稳定的pufQBALMX mRNA初始限速衰变的靶位点。

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