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首页> 外文期刊>Chembiochem: A European journal of chemical biology >Binding of Helix-Threading Peptides to E.coli 16S Ribosomal RNA and Inhibition of the S15-16S Complex
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Binding of Helix-Threading Peptides to E.coli 16S Ribosomal RNA and Inhibition of the S15-16S Complex

机译:螺旋肽与大肠杆菌16S核糖体RNA的结合和S15-16S复合物的抑制作用。

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摘要

Helix-threading peptides (HTPs) constitute a new class of small molecules that bind selectively to duplex RNA structures adjacent to helix defects and project peptide functionality into the dissimilar duplex grooves.To further explore and develop the capabilities of the HTP design for binding RNA selectively,we identified helix 22 of the prokaryotic ribosomal RNA 16S as a target.This helix is a component of the binding site for the ribosomal protein S15.In addition,the S15-16S RNA interaction Is important for the ordered assembly of the bacterial ribosome.Here we present the synthesis and characterization of helix-threading peptides that bind selectively to helix 22 of E.coli 16S RNA.These compounds bind helix 22 by threading Intercalation placing the N termini in the minor groove and the C termini in the major groove.Binding is dependent on the presence of a highly conserved purlne-rich internal loop in the RNA,whereas removal of the loop minimally affects binding of the classical intercalators ethidium bromide and methidiumpropyl-EDTA centre dot Fe (MPE centre dot Fe).Moreover,binding selectivity translates into selective inhibition of formation of the S15-16S complex.
机译:螺旋穿线肽(HTP)构成了一类新的小分子,它们选择性地结合与螺旋缺陷相邻的双链RNA结构,并将肽的功能性投射到不同的双螺旋槽中,以进一步探索和发展HTP设计选择性结合RNA的能力,我们确定了原核生物核糖体RNA 16S的22号螺旋为目标。该螺旋是核糖体蛋白S15结合位点的一个组成部分。此外,S15-16S RNA相互作用对于细菌核糖体的有序组装很重要。在这里,我们介绍了选择性结合大肠杆菌16S RNA的螺旋22的螺旋结构肽的合成和表征。这些化合物通过插入嵌入N末端在小沟中,将C末端在大沟中进行插入结合螺旋22。结合取决于RNA中是否存在高度保守的富含紫杉烷的内部环,而环的去除对经典内含子的结合影响最小结合物选择性转化为选择性抑制S15-16S配合物的形成。

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