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U4/U6 小核核糖核蛋白颗粒中的 RNA 解旋需要 ATP 水解和 DEIH 框剪接因子 Brr2。

RNA unwinding in U4/U6 snRNPs requires ATP hydrolysis and the DEIH-box splicing factor Brr2.

作者信息

Raghunathan P L, Guthrie C

机构信息

Department of Biochemistry and Biophysics, University of California, San Francisco 94143-0448, USA.

出版信息

Curr Biol. 1998 Jul 16;8(15):847-55. doi: 10.1016/s0960-9822(07)00345-4.

Abstract

BACKGROUND

The dynamic rearrangements of RNA structure which occur during pre-mRNA splicing are thought to be mediated by members of the DExD/H-box family of RNA-dependent ATPases. Although three DExD/H-box splicing factors have recently been shown to unwind synthetic RNA duplexes in purified systems, in no case has the natural biological substrate been identified. A duplex RNA target of particular interest is the extensive base-pairing interaction between U4 and U6 small nuclear RNAs. Because these helices must be disrupted to activate the spliceosome for catalysis, this rearrangement is believed to be tightly regulated in vivo.

RESULTS

We have immunopurified Brr2, a DEIH-box ATPase, in a native complex containing U1, U2, U5 and duplex U4/U6 small nuclear ribonucleoprotein particles (snRNPs). Addition of hydrolyzable ATP to this complex results in the disruption of U4/U6 base-pairing, and the release of free U4 and U6 snRNPs. A mutation in the helicase-like domain of Brr2 (brr2-1) prevents these RNA rearrangements. Notably, U4/U6 dissociation and release occur in the absence of exogenously added pre-mRNA.

CONCLUSIONS

Disruption of U4/U6 base-pairing in native snRNPs requires ATP hydrolysis and Brr2. This is the first assignment of a DExD/H-box splicing factor to a specific biological unwinding event. The unwinding function of Brr2 can be antagonized by the annealing activity of Prp24. We propose the existence of a dynamic cycle, uncoupled from splicing, that interconverts free and base-paired U4/U6 snRNPs.

摘要

背景

前体mRNA剪接过程中发生的RNA结构动态重排被认为是由RNA依赖的ATP酶的DExD/H-box家族成员介导的。尽管最近已证明三种DExD/H-box剪接因子在纯化系统中能解开合成RNA双链体,但尚未确定天然生物底物。一个特别令人感兴趣的双链RNA靶标是U4和U6小核RNA之间广泛的碱基配对相互作用。由于这些螺旋必须被破坏以激活剪接体进行催化,因此这种重排被认为在体内受到严格调控。

结果

我们在含有U1、U2、U5和双链U4/U6小核核糖核蛋白颗粒(snRNP)的天然复合物中免疫纯化了DEIH-box ATP酶Brr2。向该复合物中添加可水解的ATP会导致U4/U6碱基配对的破坏以及游离U4和U6 snRNP的释放。Brr2解旋酶样结构域中的突变(brr2-1)可阻止这些RNA重排。值得注意的是,U4/U6的解离和释放在没有外源添加前体mRNA的情况下也会发生。

结论

天然snRNP中U4/U6碱基配对的破坏需要ATP水解和Brr2。这是首次将DExD/H-box剪接因子指定为特定的生物解旋事件。Brr2的解旋功能可被Prp24的退火活性拮抗。我们提出存在一个与剪接无关的动态循环,该循环可使游离的和碱基配对的U4/U6 snRNP相互转化。

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