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PRP16是一种DEAH盒RNA解旋酶,主要通过其非保守的N端结构域被招募到剪接体中。

PRP16, a DEAH-box RNA helicase, is recruited to the spliceosome primarily via its nonconserved N-terminal domain.

作者信息

Wang Y, Guthrie C

机构信息

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

出版信息

RNA. 1998 Oct;4(10):1216-29.

Abstract

Dynamic rearrangement of RNA structure is crucial for intron recognition and formation of the catalytic core during pre-mRNA splicing. Three of the splicing factors that contain sequence motifs characteristic of the DExD/DExH-box family of RNA-dependent ATPases (Prp16, Prp22, and the human homologue of Brr2) recently have been shown to unwind RNA duplexes in vitro, providing biochemical evidence that they may direct structural rearrangements on the spliceosome. Notably, however, the unwinding activity of these proteins is sequence nonspecific, raising the question of how their functional specificity is determined. Because the highly conserved DExD/DExH-box domain in these proteins is typically flanked by one or more nonconserved domains, we have tested the hypothesis that the nonconserved regions of Prp16 determine the functional specificity of the protein. We found that the nonconserved N-terminal domain of Prp16 is (1) essential for viability, (2) required for the nuclear localization of Prp16, and (3) capable of binding to the spliceosome specifically at the step of Prp16 function. Moreover, this domain can interact with the rest of the protein to allow trans-complementation. Based on these results, we propose that the spliceosomal target of the unwinding activity of Prp16, and possibly other DExD/DExH-box splicing factors as well, is defined by factors that specifically interact with the nonconserved domains of the protein.

摘要

RNA结构的动态重排对于前体mRNA剪接过程中的内含子识别和催化核心的形成至关重要。最近发现,三种含有RNA依赖性ATP酶DExD/DExH-box家族特征序列基序的剪接因子(Prp16、Prp22和Brr2的人类同源物)在体外能够解开RNA双链,这为它们可能指导剪接体上的结构重排提供了生化证据。然而,值得注意的是,这些蛋白质的解旋活性是非序列特异性的,这就引发了它们的功能特异性是如何确定的问题。由于这些蛋白质中高度保守的DExD/DExH-box结构域通常一侧或两侧有一个或多个非保守结构域,我们测试了Prp16的非保守区域决定该蛋白质功能特异性的假说。我们发现,Prp16的非保守N端结构域:(1)对于细胞存活至关重要;(2)是Prp16核定位所必需的;(3)能够在Prp16发挥功能的步骤特异性结合剪接体。此外,该结构域可以与蛋白质的其余部分相互作用以实现反式互补。基于这些结果,我们提出,Prp16以及可能其他DExD/DExH-box剪接因子的解旋活性的剪接体靶点是由与该蛋白质非保守结构域特异性相互作用的因子所定义的。

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