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S6:S18 核糖体蛋白复合物与自身 mRNA 中存在的结构基序相互作用。

S6:S18 ribosomal protein complex interacts with a structural motif present in its own mRNA.

出版信息

RNA. 2013 Oct;19(10):1341-8. doi: 10.1261/rna.038794.113. Epub 2013 Aug 26.

Abstract

Prokaryotic ribosomal protein genes are typically grouped within highly conserved operons. In many cases, one or more of the encoded proteins not only bind to a specific site in the ribosomal RNA, but also to a motif localized within their own mRNA, and thereby regulate expression of the operon. In this study, we computationally predicted an RNA motif present in many bacterial phyla within the 5' untranslated region of operons encoding ribosomal proteins S6 and S18. We demonstrated that the S6:S18 complex binds to this motif, which we hereafter refer to as the S6:S18 complex-binding motif (S6S18CBM). This motif is a conserved CCG sequence presented in a bulge flanked by a stem and a hairpin structure. A similar structure containing a CCG trinucleotide forms the S6:S18 complex binding site in 16S ribosomal RNA. We have constructed a 3D structural model of a S6:S18 complex with S6S18CBM, which suggests that the CCG trinucleotide in a specific structural context may be specifically recognized by the S18 protein. This prediction was supported by site-directed mutagenesis of both RNA and protein components. These results provide a molecular basis for understanding protein-RNA recognition and suggest that the S6S18CBM is involved in an auto-regulatory mechanism.

摘要

原核核糖体蛋白基因通常在高度保守的操纵子内聚集。在许多情况下,一个或多个编码蛋白不仅与核糖体 RNA 中的特定位点结合,而且还与它们自身 mRNA 中的一个模体结合,从而调节操纵子的表达。在这项研究中,我们通过计算预测了存在于许多细菌门的 5'非翻译区的操纵子编码核糖体蛋白 S6 和 S18 中的 RNA 模体。我们证明了 S6:S18 复合物与这个模体结合,我们将其称为 S6:S18 复合物结合模体(S6S18CBM)。该模体是一个保守的 CCG 序列,位于茎和发夹结构侧翼的凸起中。类似的结构包含一个 CCG 三核苷酸,形成 16S 核糖体 RNA 中的 S6:S18 复合物结合位点。我们构建了一个带有 S6S18CBM 的 S6:S18 复合物的三维结构模型,该模型表明,特定结构环境中的 CCG 三核苷酸可能被 S18 蛋白特异性识别。这一预测得到了 RNA 和蛋白质成分的定点突变的支持。这些结果为理解蛋白质-RNA 识别提供了分子基础,并表明 S6S18CBM 参与了一个自动调节机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed88/3854524/d7ab5fc0b7e9/1341fig1.jpg

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