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The binding site for ribosomal protein S8 in 16S rRNA and spc mRNA from Escherichia coli: minimum structural requirements and the effects of single bulged bases on S8 — RNA interaction

机译:大肠杆菌16S rRNA和spc mRNA中核糖体蛋白S8的结合位点:最低结构要求和单个凸起碱基对S8的影响-RNA相互作用

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Through specific interactions with rRNA and mRNA, ribosomal protein S8 of Escherichia coli plays a central role in both assembly of the 30S ribosomal subunit and translational regulation of spc operon expression. To better understand S8–RNA association, we have measured the affinity of S8 for a number of variants of its rRNA and mRNA binding sites prepared by in vitro transcription or chemical synthesis. With the aid of site-directed deletions, we demonstrate that an imperfect, 33-nucleotide helical stem encompassing nucleotides 588–603 and 635–651 possesses all of the structural information necessary for specific binding of S8 to the 16S rRNA. This segment consists of two short duplexes that enclose a conserved, assymetric internal loop which contains features crucial for protein recognition. The S8 binding site in spc operon mRNA is very similar in both primary and secondary structure to that in 16S rRNA except for the presence of two single bulged bases in one of the duplex segments. In addition, the apparent association constant for the S8–mRNA interaction is approximately fivefold less than that for the S8–rRNA interaction. We show that the difference in affinity can be attributed to the effects of the bulged bases. Deletion of the bulged bases from the mRNA site increases its affinity for S8 to a level similar to that of the rRNA, whereas insertion of single-base bulges at equivalent positions within the rRNA site reduces its affinity for S8 to a value typical of the mRNA. Single-base bulges in the proximity of essential recognition features are therefore capable of modulating the strength of protein–RNA interactions.
机译:通过与rRNA和mRNA的特异性相互作用,大肠杆菌的核糖体蛋白S8在30S核糖体亚基的组装和spc操纵子表达的翻译调控中都起着核心作用。为了更好地了解S8-RNA的关联,我们测量了S8对通过体外转录或化学合成制备的r8和mRNA结合位点的许多变体的亲和力。借助定点缺失,我们证明了一个不完整的,包含核苷酸588-603和635-651的33个核苷酸的螺旋茎拥有S8与16S rRNA特异性结合所必需的所有结构信息。该部分由两个短双链体组成,它们包含一个保守的,不对称的内部环,其中包含对蛋白质识别至关重要的特征。 spc操纵子mRNA中的S8结合位点在一级和二级结构上都与16S rRNA非常相似,除了在一个双链体片段中存在两个单个凸起的碱基。此外,S8–mRNA相互作用的表观缔合常数比S8–rRNA相互作用的表观缔合常数小约五倍。我们显示亲和力的差异可以归因于凸起的碱基的影响。从mRNA位点删除突出的碱基可将其对S8的亲和力提高至与rRNA相似的水平,而在rRNA位点内等价位置插入单碱基突出可将其对S8的亲和力降至mRNA的典型值。因此,基本识别特征附近的单碱基凸起能够调节蛋白质-RNA相互作用的强度。

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