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鉴定与SRP9/14特异性结合的最小Alu RNA折叠结构域。

Identification of a minimal Alu RNA folding domain that specifically binds SRP9/14.

作者信息

Weichenrieder O, Kapp U, Cusack S, Strub K

机构信息

European Molecular Biology Laboratory, Grenoble Outstation, France.

出版信息

RNA. 1997 Nov;3(11):1262-74.

Abstract

We have identified functionally and analyzed a minimal Alu RNA folding domain that is recognized by SRPphi14-9. Recombinant SRPphi14-9 is a fusion protein containing on a single polypeptide chain the sequences of both the SRP14 and SRP9 proteins that are part of the Alu domain of the signal recognition particle (SRP). SRPphi14-9 has been shown to bind to the 7SL RNA of SRP and it confers elongation arrest activity to reconstituted SRP in vitro. Alu RNA variants with homogeneous 3' ends were produced in vitro using ribozyme technology and tested for specific SRPphi14-9 binding in a quantitative equilibrium competition assay. This enabled identification of an Alu RNA of 86 nt (SA86) that competes efficiently with 7SL RNA for SRPphi14-9 binding, whereas smaller RNAs did not. The secondary structure of SA86 includes two stem-loops that are connected by a highly conserved bulge and, in addition, a part of the central adaptor stem that contains the sequence at the very 3' end of 7SL RNA. Circularly permuted variants of SA86 competed only if the 5' and 3' ends were joined with an extended linker of four nucleotides. SA86 can thus be defined as an autonomous RNA folding unit that does not require its 5' and 3' ends for folding or for specific recognition by SRPphi14-9. These results suggest that Alu RNA identity is determined by a characteristic tertiary structure, which might consist of two flexibly linked domains.

摘要

我们已经鉴定并分析了一个被SRPphi14-9识别的最小Alu RNA折叠结构域。重组SRPphi14-9是一种融合蛋白,在单一条多肽链上包含信号识别颗粒(SRP)的Alu结构域的SRP14和SRP9蛋白的序列。已证明SRPphi14-9可与SRP的7SL RNA结合,并在体外赋予重组SRP延伸阻滞活性。使用核酶技术在体外产生具有均一3'末端的Alu RNA变体,并在定量平衡竞争试验中测试其与SRPphi14-9的特异性结合。这使得能够鉴定出一种86 nt的Alu RNA(SA86),它能与7SL RNA有效竞争SRPphi14-9的结合,而较小的RNA则不能。SA86的二级结构包括两个通过高度保守的凸起连接的茎环,此外,还包括中央衔接子茎的一部分,该部分包含7SL RNA 3'末端的序列。只有当SA86的5'和3'末端通过四个核苷酸的延伸接头连接时,其环状排列变体才具有竞争性。因此,SA86可被定义为一个自主的RNA折叠单元,其折叠或被SRPphi14-9特异性识别不需要其5'和3'末端。这些结果表明,Alu RNA的特性由一种特征性的三级结构决定,该结构可能由两个灵活连接的结构域组成。

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