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Matching the crystallographic structure of ribosomal protein S7 to a three-dimensional model of the 16S ribosomal RNA.

机译:使核糖体蛋白S7的晶体结构与16S核糖体RNA的三维模型相匹配。

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摘要

Two recently published but independently derived structures, namely the X-ray crystallographic structure of ribosomal protein S7 and the "binding pocket" for this protein in a three-dimensional model of the 16S rRNA, have been correlated with one another. The known rRNA-protein interactions for S7 include a minimum binding site, a number of footprint sites, and two RNA-protein crosslink sites on the 16S rRNA, all of which form a compact group in the published 16S rRNA model (despite the fact that these interactions were not used as primary modeling constraints in building that model). The amino acids in protein S7 that are involved in the two crosslinks to 16S rRNA have also been determined in previous studies, and here we have used these sites to orient the crystallographic structure of S7 relative to its rRNA binding pocket. Some minor alterations were made to the rRNA model to improve the fit. In the resulting structure, the principal positively charged surface of the protein is in contact with the 16S rRNA, and all of the RNA-protein interaction data are satisfied. The quality of the fit gives added confidence as to the validity of the 16S rRNA model. Protein S7 is furthermore known to be crosslinked both to P site-bound tRNA and to mRNA at positions upstream of the P site codon; the matched S7-16S rRNA structure makes a prediction as to the location of this crosslink site within the protein molecule.
机译:最近已经发表了两个但独立衍生的结构,即核糖体蛋白S7的X射线晶体学结构和16S rRNA三维模型中该蛋白的“结合口袋”。 S7的已知rRNA-蛋白质相互作用包括16S rRNA上的最小结合位点,多个印迹位点和两个RNA-蛋白质交联位点,所有这些都在已发表的16S rRNA模型中形成一个紧凑的基团(尽管事实是,这些交互未在构建该模型时用作主要的建模约束)。在先前的研究中也已经确定了蛋白质S7中与16S rRNA的两个交联有关的氨基酸,在这里我们已经利用这些位点相对于其rRNA结合口袋来定向S7的晶体结构。对rRNA模型进行了一些细微改动,以提高拟合度。在得到的结构中,蛋白质的主要带正电荷的表面与16S rRNA接触,并且满足所有RNA-蛋白质相互作用数据。拟合的质量增加了对16S rRNA模型有效性的信心。此外,已知蛋白S7既与P位点结合的tRNA交联,又与P位点密码子上游位置的mRNA交联。匹配的S7-16S rRNA结构可预测该交联位点在蛋白质分子中的位置。

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