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首页> 外文期刊>Journal of Molecular Biology >NMR structure determination of the binding site for ribosomal protein S8 from Escherichia coli 16 S rRNA
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NMR structure determination of the binding site for ribosomal protein S8 from Escherichia coli 16 S rRNA

机译:大肠杆菌16 S rRNA核糖体蛋白S8结合位点的NMR结构测定

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Many cellular processes involve the preferential interaction of an RNA molecule with a specific protein. A detailed analysis of the individual protein and RNA components of these interactions can provide unique insights into the structural features important for protein-RNA recognition. Ribosomal protein S8 of Escherichia coli plays a key role in 30 S ribosomal subunit assembly through its interaction with 16 S rRNA. The binding site for protein S8 comprises a portion of helix 21, nucleotides G588 to G604 and C634 to C651. This region forms a base-paired helix that is interrupted by a non-Watson-Crick segment composed of nine phylogenetically conserved nucleotides. We have investigated the detailed structure of the conserved segment and the interaction of this region with metal ions using NMR spectroscopy. Twenty-four of the 40 calculated structures converged to similar conformations and were grouped into two families. The main difference between the families is the orientation of the base of U641. The rms deviation between the heavy-atoms of the ten lowest-energy structures is 1.24 Angstrom. The orientations of the G597.C643 base-pair and A595.(A596.U644) base-triple within the conserved core have been defined and appear to extend the proximal segment of helix 21 into the phylogenetically conserved core. The base of A642 terminates this helix by stacking against C643 and the base of U641 forms hydrogen bonds with core nucleotides. The conserved core also contains a Mg2+-binding site that promotes stabilization of the secondary and tertiary structure elements of the core. A model for the interaction of S8 with its RNA-binding site is proposed. (C) 1998 Academic Press. [References: 58]
机译:许多细胞过程涉及RNA分子与特定蛋白质的优先相互作用。对这些相互作用中单个蛋白质和RNA成分的详细分析可以提供对识别蛋白质-RNA重要的结构特征的独特见解。大肠杆菌的核糖体蛋白S8通过与16 S rRNA相互作用,在30 S核糖体亚基装配中起关键作用。蛋白质S8的结合位点包含螺旋21的一部分,核苷酸G588至G604和C634至C651。该区域形成碱基配对的螺旋,其被由9个系统发育上保守的核苷酸组成的非Watson-Crick区段中断。我们已经使用NMR光谱研究了保守段的详细结构以及该区域与金属离子的相互作用。在40个计算出的结构中,有24个收敛到相似的构象,并分为两个家族。家庭之间的主要区别是U641基座的方向。十个最低能量结构的重原子之间的均方根偏差为1.24埃。保守核内的G597.C643碱基对和A595。(A596.U644)碱基三联体的方向已定义,并似乎将螺旋21的近端部分延伸到系统进化保守核中。 A642的碱基通过与C643堆叠而终止了该螺旋,而U641的碱基与核心核苷酸形成氢键。保守的核心还包含Mg 2+结合位点,该位点促进核心的二级和三级结构元素的稳定。提出了S8与其RNA结合位点相互作用的模型。 (C)1998年学术出版社。 [参考:58]

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