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首页> 外文期刊>Journal of Molecular Biology >The two faces of the Escherichia coli 23 S rRNA sarcin/ricin domain: the structure at 1.11 A resolution.
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The two faces of the Escherichia coli 23 S rRNA sarcin/ricin domain: the structure at 1.11 A resolution.

机译:大肠杆菌23 S rRNA sarcin / ricin域的两个侧面:1.11 A分辨率的结构。

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摘要

The sarcin/ricin domain of 23 S - 28 S ribosomal RNA is essential for protein synthesis because it forms a critical part of the binding site for elongation factors. A crystal structure of an RNA of 27 nucleotides that mimics the domain in Escherichia coli 23 S rRNA was determined at 1.11 A resolution. The domain folds into a hairpin distorted by four non-canonical base-pairs and one base triple. The fold is stabilized by cross-strand and intra-stand stacking; no intramolecular stabilizing metal ions are observed. This is the first structure to reveal in great detail the geometry and the hydration of two common motifs that are conserved in this rRNA domain, a GAGA tetraloop and a G-bulged cross-strand A stack. Differences in the region connecting these motifs to the stem in the E. coli and in the rat sarcin/ricin domains may contribute to the species-specific binding of elongation factors. Correlation of nucleotide protection data with the structure indicates that the domain has two surfaces. One surface is accessible, lies primarily in the major groove, and is likely to bind the elongation factors. The second lies primarily in the minor groove, and is likely to be buried in the ribosome. This minor groove surface includes the Watson-Crick faces of the cytosine bases in the unusual A2654.C2666 and U2653.C2667 water-mediated base-pairs. Copyright 1999 Academic Press.
机译:23 S-28 S核糖体RNA的sarcin / ricin结构域对于蛋白质合成至关重要,因为它形成了延伸因子结合位点的关键部分。以1.11 A的分辨率测定了模拟大肠杆菌23 S rRNA中27个核苷酸的RNA的晶体结构。该结构域折叠成一个发夹,被四个非经典碱基对和一个碱基三倍扭曲。交叉链和支架内堆叠使折痕稳定。没有观察到分子内稳定金属离子。这是第一个详细揭示该rRNA结构域中保守的两个常见基序的几何结构和水合结构的结构,GAGA四环和G凸出的交叉链A堆栈。将这些基序连接到大肠杆菌中的茎和大鼠sarcin / ricin域中的茎干的区域中的差异可能有助于延长因子的物种特异性结合。核苷酸保护数据与结构的相关性表明该结构域具有两个表面。一个表面是可接近的,主要位于主要凹槽中,并且很可能束缚伸长因子。第二个主要位于小沟中,并且很可能被埋在核糖体中。这个较小的凹槽表面包括不常见的A2654.C2666和U2653.C2667水介导的碱基对中胞嘧啶碱基的沃森-克里克面。版权所有1999,学术出版社。

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