Suppr超能文献

核糖体蛋白S6、S8、S15和S18与16S核糖体RNA中央结构域的相互作用

Interaction of ribosomal proteins, S6, S8, S15 and S18 with the central domain of 16 S ribosomal RNA.

作者信息

Svensson P, Changchien L M, Craven G R, Noller H F

机构信息

Thimann Laboratories, University of California, Santa Cruz 95064.

出版信息

J Mol Biol. 1988 Mar 20;200(2):301-8. doi: 10.1016/0022-2836(88)90242-2.

Abstract

We have constructed complexes of ribosomal proteins S8, S15, S8 + S15 and S8 + S15 + S6 + S18 with 16 S ribosomal RNA, and probed the RNA moiety with a set of structure-specific chemical and enzymatic probes. Our results show the following effects of assembly of proteins on the reactivity of specific nucleotides in 16 S rRNA. (1) In agreement with earlier work, S8 protects nucleotides in and around the 588-606/632-651 stem from attack by chemical probes; this is supported by protection in and around these same regions from nucleases. In addition, we observe protection of positions 573-575, 583, 812, 858-861 and 865. Several S8-dependent enhancements of reactivity are found, indicating that assembly of this protein is accompanied by conformational changes in 16 S rRNA. These results imply that protein S8 influences a much larger region of the central domain than was previously suspected. (2) Protein S15 protects nucleotides in the 655-672/734-751 stem, in agreement with previous findings. We also find S15-dependent protection of nucleotides in the 724-730 region. Assembly of S15 causes several enhancements of reactivity, the most striking of which are found at G664, A665, G674, and A718. (3) The effects of proteins S6 and S18 are dependent on the simultaneous presence of both proteins, and on the presence of protein S15. S6 + S18-dependent protections are located in the 673-730 and 777-803 regions. We observed some variability in our results with these proteins, depending on the ratio of protein to RNA used, and in different trials using enzymatic probes, possibly due to the limited solubility of protein S18. Consistently reproducible was protection of nucleotides in the 664-676 and 715-729 regions. Among the latter are three of the nucleotides (G664, G674 and A718) that are strongly enhanced by assembly of protein S15. This result suggests that an S15-induced conformational change involving these nucleotides may play a role in the co-operative assembly of proteins S6 and S18.

摘要

我们构建了核糖体蛋白S8、S15、S8 + S15以及S8 + S15 + S6 + S18与16 S核糖体RNA的复合物,并用一组结构特异性化学和酶促探针探测RNA部分。我们的结果显示了蛋白质组装对16 S rRNA中特定核苷酸反应性的以下影响。(1)与早期工作一致,S8保护588 - 606/632 - 651茎及其周围的核苷酸免受化学探针的攻击;这些相同区域及其周围受到核酸酶的保护也支持了这一点。此外,我们观察到573 - 575、583、812、858 - 861和865位点受到保护。发现了几种依赖于S8的反应性增强,表明该蛋白质的组装伴随着16 S rRNA的构象变化。这些结果意味着蛋白质S8影响中心结构域的区域比之前怀疑的要大得多。(2)蛋白质S15保护655 - 672/734 - 751茎中的核苷酸,与之前的发现一致。我们还发现S15对724 - 730区域的核苷酸有依赖性保护作用。S15的组装导致了几种反应性增强,其中最显著的是在G664、A665、G674和A718处。(3)蛋白质S6和S18的作用取决于这两种蛋白质同时存在以及蛋白质S15的存在。S6 + S18依赖性保护位于673 - 730和777 - 803区域。我们观察到使用这些蛋白质的结果存在一些变异性,这取决于所用蛋白质与RNA的比例,以及在使用酶促探针的不同试验中,这可能是由于蛋白质S18的溶解度有限。在664 - 676和715 - 729区域核苷酸的保护是一致可重复的。在后者中,有三个核苷酸(G664、G674和A718)在蛋白质S15组装时反应性强烈增强。这一结果表明,涉及这些核苷酸的由S15诱导的构象变化可能在蛋白质S6和S18的协同组装中起作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验