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The crystal structure of a high affinity RNA stem-loop complexed with the bacteriophage MS2 capsid: Further challenges in the modeling of ligand–RNA interactions

机译:高亲和力RNA茎环与噬菌体MS2衣壳复合的晶体结构:配体-RNA相互作用建模中的进一步挑战

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摘要

We have determined the structure to 2.8 Å of an RNA aptamer (F5), containing 2′-deoxy-2-aminopurine (2AP) at the −10 position, complexed with MS2 coat protein by soaking the RNA into precrystallised MS2 capsids. The −10 position of the RNA is an important determinant of binding affinity for coat protein. Adenine at this position in other RNA stem-loops makes three hydrogen bonds to protein functional groups. Substituting 2AP for the −10 adenine in the F5 aptamer yields an RNA with the highest yet reported affinity for coat protein. The refined X-ray structure shows that the 2AP base makes an additional hydrogen bond to the protein compared to adenine that is presumably the principal origin of the increased affinity. There are also slight changes in phosphate backbone positions compared to unmodified F5 that probably also contribute to affinity. Such phosphate movements are common in structures of RNAs bound to the MS2 T = 3 protein shell and highlight problems for de novo design of RNA binding ligands.
机译:我们通过将RNA浸入预结晶的MS2衣壳中,确定了在-10位置含有2'-脱氧-2-氨基嘌呤(2AP)的RNA适体(F5)的结构,该适体与MS2外壳蛋白复合。 RNA的-10位是与外壳蛋白结合亲和力的重要决定因素。其他RNA茎环中此位置的腺嘌呤与蛋白质官能团形成三个氢键。用2AP取代F5适体中的-10腺嘌呤可产生RNA,其对外壳蛋白的亲和力最高。精细的X射线结构表明,与腺嘌呤相比,2AP碱基与蛋白质形成了额外的氢键,推测这是增加亲和力的主要来源。与未修饰的F5相比,磷酸盐骨架位置也有轻微变化,这也可能有助于亲和力。这种磷酸盐运动在结合到MS2 T = 3蛋白质外壳的RNA结构中很常见,并且突出了从头设计RNA结合配体的问题。

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