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16S核糖体RNA中央结构域定点突变对核糖体蛋白结合、RNA加工及30S亚基组装的影响。

Effects of site-directed mutations in the central domain of 16 S ribosomal RNA upon ribosomal protein binding, RNA processing and 30 S subunit assembly.

作者信息

Stark M J, Gregory R J, Gourse R L, Thurlow D L, Zwieb C, Zimmermann R A, Dahlberg A E

出版信息

J Mol Biol. 1984 Sep 15;178(2):303-22. doi: 10.1016/0022-2836(84)90146-3.

Abstract

Using a multicopy plasmid encoding the Escherichia coli rrnB ribosomal RNA operon and the techniques of in vitro site-directed mutagenesis, we have introduced several small alterations into the central domain of 16 S rRNA, which encompasses nucleotides 560 to 890. Four of the rRNAs studied contained deletions and one contained an insertion. The altered small ribosomal subunit rRNAs were used to investigate relationships among 16 S rRNA processing, protein-16 S rRNA interactions and assembly of the 30 S ribosomal subunit. Analysis of plasmid-coded transcripts from maxicells revealed that products from wild-type 16 S rRNA genes were fully processed and assembled into mature 30 S subunits. Under the same conditions, the processing and assembly of transcripts derived from the mutant plasmids were severely impaired. In some instances, the mutations completely blocked both processes, while in other cases rRNA maturation and ribosome assembly were retarded, but not eliminated completely. In all cases, the mutations led to the accumulation of the 17 S precursor to 16 S rRNA. The mutant 17 S rRNAs were purified and incubated with various combinations of E. coli ribosomal proteins S6, S8, S15 and S18, which are known to bind to the central domain of 16 S rRNA. Ribonuclease digestion of the resulting protein-17 S rRNA complexes and fractionation of the products permitted detection of three distinct protein-RNA fragment complexes which contained S8, S8 + S15, or S6 + S8 + S15 + S18. Whereas wild-type 17 S rRNA was able to form all three of these complexes, deletion of nucleotides 693 to 721 or 822 to 874 abolished the interaction of S6 and S18, and removal of nucleotides 659 to 718 prevented the binding of S6, S15 and S18. In contrast, elimination of residue 614, or the presence of a 16-base insertion between nucleotides 614 and 615, had no significant effect on the binding of any of the four proteins tested. Together, our results demonstrate that 16 S rRNA maturation and 30 S subunit assembly are tightly coupled, and show that, in at least some cases, defects in these processes can be correlated with the inability of particular ribosomal proteins to associate with altered rRNA molecules. Moreover, we have confirmed the essentiality of certain rRNA sequences for the formation and/or stabilization of these protein-rRNA interactions.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

利用编码大肠杆菌rrnB核糖体RNA操纵子的多拷贝质粒以及体外定点诱变技术,我们对16 S rRNA的中央结构域(包含核苷酸560至890)进行了几处小的改动。所研究的四个rRNA含有缺失,一个含有插入。经过改变的小核糖体亚基rRNA被用于研究16 S rRNA加工、蛋白质与16 S rRNA的相互作用以及30 S核糖体亚基组装之间的关系。对来自大细胞的质粒编码转录本的分析表明,野生型16 S rRNA基因的产物能被完全加工并组装成成熟的30 S亚基。在相同条件下,源自突变体质粒的转录本的加工和组装严重受损。在某些情况下,突变完全阻断了这两个过程,而在其他情况下,rRNA成熟和核糖体组装虽有延迟,但并未完全消除。在所有情况下,突变都导致了16 S rRNA的17 S前体的积累。将突变的17 S rRNAs纯化后,与已知可结合16 S rRNA中央结构域的大肠杆菌核糖体蛋白S6、S8、S15和S18的各种组合一起孵育。对所得的蛋白质 - 17 S rRNA复合物进行核糖核酸酶消化并对产物进行分级分离,从而检测到三种不同的蛋白质 - RNA片段复合物,它们分别含有S8、S8 + S15或S6 + S8 + S15 + S18。野生型17 S rRNA能够形成所有这三种复合物,而缺失核苷酸693至721或822至874会消除S6和S18的相互作用,去除核苷酸659至718则会阻止S6、S15和S18的结合。相反,去除残基614或在核苷酸61及615之间插入16个碱基,对所测试的四种蛋白质中的任何一种的结合都没有显著影响。总之,我们的结果表明,16 S rRNA成熟和30 S亚基组装紧密相关,并且表明,至少在某些情况下,这些过程中的缺陷可能与特定核糖体蛋白无法与改变后的rRNA分子结合有关。此外,我们已经证实了某些rRNA序列对于这些蛋白质 - rRNA相互作用的形成和/或稳定的必要性。(摘要截短至400字)

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