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The λ-Turn: A New Structural Motif in Ribosomal RNA

机译:λ-转:核糖体RNA中的一种新的结构基序

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RNA structural motifs are recurrent structural elements occurring in RNA molecules. They play essential roles in consolidating RNA tertiary structures and in binding proteins. Recently, we identified a new type of RNA structural motif, namely λ-turn, from ribosomal RNAs. This motif has a helix-internal loop-helix structure. The directions of its two helices are changed ~ 90° due to the existence of the internal loop. A guanine from the 3'-end of the internal loop extrudes out and forms a base triple with a G-C WC base pair from one helix of the motif. From the global perspective, the λ-turn is often capped by a helix and a tetraloop. A nucleotide between the capped helix and the tetraloop forms a consecutive base triple next to the first one with a G-C pair from the same helix that the first G-C pair resides. The λ-turn motif has a consensus sequence pattern and its 3D structure is conserved across different species. All the identified λ-turns are located on surfaces of ribosomal RNAs. Structures of ribosomes reveal direct interactions between λ-turns and ribosomal proteins. All these observations indicate that λ-turns have an important role in binding with ribosomal proteins.
机译:RNA结构基序是在RNA分子中发生的复发结构元素。它们在整合RNA三级结构和结合蛋白方面发挥基本作用。最近,我们鉴定了一种新型的RNA结构基质,即来自核糖体RNA的λ-转。此图案具有螺旋内环螺旋结构。由于内部环路,其两个螺旋的方向变为90°。来自内部环的3'-端的鸟嘌呤挤出并与来自图案的一个螺旋的G-C WC基对形成基座三倍。从全球角度来看,λ-转常用于螺旋和四级升级。封端的螺旋和向内级之间的核苷酸在第一G-C对的相同螺旋中形成第一底邻接在第一个G-C对中的第一底底的三倍。 λ-转基质具有共有序列图案,其3D结构在不同的物种上被保守。所有识别的λ转位位于核糖体RNA的表面上。核糖体的结构揭示了λ-匝和核糖体蛋白之间的直接相互作用。所有这些观察结果表明,λ转有与核糖体蛋白结合的重要作用。

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