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人类信号识别颗粒RNA螺旋6的2A结构。

The 2 A structure of helix 6 of the human signal recognition particle RNA.

作者信息

Wild K, Weichenrieder O, Leonard G A, Cusack S

机构信息

EMBL Grenoble Outstation, Grenoble, F-38042, France.

出版信息

Structure. 1999 Nov 15;7(11):1345-52. doi: 10.1016/s0969-2126(00)80024-6.

Abstract

BACKGROUND

The mammalian signal recognition particle (SRP) is an essential cytoplasmic ribonucleoprotein complex involved in targeting signal-peptide-containing proteins to the endoplasmic reticulum. Assembly of the SRP requires protein SRP19 to bind first to helix 6 of the SRP RNA before the signal-peptide-recognizing protein, SRP54, can bind to helix 8 of the RNA. Helix 6 is closed by a GGAG tetraloop, which has been shown to form part of the SRP19-binding site.

RESULTS

The high-resolution (2.0 A) structure of a fragment of human SRP RNA comprising 29 nucleotides of helix 6 has been determined using the multiple anomalous dispersion (MAD) method and bromine-labelled RNA. In the crystal the molecule forms 28-mer duplexes rather than the native monomeric hairpin structure, although two chemically equivalent 11 base pair stretches of the duplex represent the presumed native structure. The duplex has highly distorted A-RNA geometry caused by the occurrence of several non-Watson-Crick base pairs. These include a 5'-GGAG-3'/3'-GAGG-5' purine bulge (which replaces the tetraloop) and a 5'-AC-3'/3'-CA-5' tandem mismatch that, depending on the protonation state of the adenine bases, adopts a different conformation in the two native-like parts of the structure. The structure also shows the 2'3'-cyclic phosphate reaction product of the hammerhead ribozyme cleavage reaction.

CONCLUSIONS

The 29-mer RNA is the first RNA structure of the human SRP and provides some insight into the binding mode of SRP19. The observed strong irregularities of the RNA helix make the major groove wide enough and flat enough to possibly accommodate an alpha helix of SRP19. The variety of non-canonical base pairs observed enlarges the limited repertoire of irregular RNA folds known to date and the observed conformation of the 2'3'-cyclic phosphate containing Ade29 is consistent with the current understanding of the hammerhead ribozyme reaction mechanism.

摘要

背景

哺乳动物信号识别颗粒(SRP)是一种重要的细胞质核糖核蛋白复合体,参与将含信号肽的蛋白质靶向内质网。SRP的组装需要蛋白质SRP19先与SRP RNA的螺旋6结合,然后信号肽识别蛋白SRP54才能与RNA的螺旋8结合。螺旋6由一个GGAG四环封闭,该四环已被证明是SRP19结合位点的一部分。

结果

使用多波长反常散射(MAD)方法和溴标记的RNA,确定了包含螺旋6的29个核苷酸的人SRP RNA片段的高分辨率(2.0 Å)结构。在晶体中,该分子形成28聚体双链体,而不是天然的单体发夹结构,尽管双链体中两个化学等价的11个碱基对片段代表推测的天然结构。该双链体具有高度扭曲的A-RNA几何形状,这是由几个非沃森-克里克碱基对的出现引起的。这些包括一个5'-GGAG-3'/3'-GAGG-5'嘌呤凸起(取代了四环)和一个5'-AC-3'/3'-CA-5'串联错配,根据腺嘌呤碱基的质子化状态,在结构的两个类似天然的部分中采用不同的构象。该结构还显示了锤头状核酶切割反应的2'3'-环磷酸反应产物。

结论

29聚体RNA是人类SRP的首个RNA结构,为SRP19的结合模式提供了一些见解。观察到的RNA螺旋的强烈不规则性使大沟足够宽和平坦,可能容纳SRP19的α螺旋。观察到的各种非规范碱基对扩大了迄今为止已知的不规则RNA折叠的有限种类,并且观察到的含2'3'-环磷酸的Ade29的构象与目前对锤头状核酶反应机制的理解一致。

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