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剪接体蛋白组:最大的细胞核糖核蛋白机器的核心。

The spliceosomal proteome: at the heart of the largest cellular ribonucleoprotein machine.

机构信息

Center for RNA Molecular Biology, Case Western Reserve University, Cleveland, OH 44113, USA.

出版信息

Proteomics. 2010 Nov;10(22):4128-41. doi: 10.1002/pmic.201000354. Epub 2010 Nov 2.

Abstract

Almost all primary transcripts in higher eukaryotes undergo several splicing events and alternative splicing is a major factor in generating proteomic diversity. Thus, the spliceosome, the ribonucleoprotein assembly that performs splicing, is a highly critical cellular machine and as expected, a very complex one. Indeed, the spliceosome is one of the largest, if not the largest, molecular machine in the cell with over 150 different components in human. A large fraction of the spliceosomal proteome is organized into small nuclear ribonucleoprotein particles by associating with one of the small nuclear RNAs, and the function of many spliceosomal proteins revolve around their association or interaction with the spliceosomal RNAs or the substrate pre-messenger RNAs. In addition to the complex web of protein-RNA interactions, an equally complex network of protein-protein interactions exists in the spliceosome, which includes a number of large, conserved proteins with critical functions in the spliceosomal catalytic core. These include the largest conserved nuclear protein, Prp8, which plays a critical role in spliceosomal function in a hitherto unknown manner. Taken together, the large spliceosomal proteome and its dynamic nature has made it a highly challenging system to study, and at the same time, provides an exciting example of the evolution of a proteome around a backbone of primordial RNAs likely dating from the RNA World.

摘要

几乎所有高等真核生物的初级转录本都要经历几个剪接事件,而选择性剪接是产生蛋白质组多样性的主要因素。因此,剪接体(执行剪接的核糖核蛋白组装体)是一种高度关键的细胞机器,也是一种非常复杂的机器。事实上,如果不是最大的话,剪接体也是细胞中最大的分子机器之一,人类中就有超过 150 种不同的成分。剪接体的大部分蛋白质组通过与一种小核 RNA 结合而组织成小核核糖核蛋白颗粒,许多剪接体蛋白的功能都围绕着它们与剪接体 RNA 或底物前信使 RNA 的结合或相互作用。除了复杂的蛋白质-RNA 相互作用网络外,剪接体中还存在着同样复杂的蛋白质-蛋白质相互作用网络,其中包括一些具有关键功能的大型保守蛋白质,它们在剪接体催化核心中发挥着重要作用。其中包括最大的保守核蛋白 Prp8,它以一种迄今为止未知的方式在剪接体功能中发挥着关键作用。总之,庞大的剪接体蛋白质组及其动态性质使其成为一个极具挑战性的研究系统,同时也为围绕原始 RNA 进化的蛋白质组提供了一个令人兴奋的例子,这些原始 RNA 可能起源于 RNA 世界。

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Spliceosome discards intermediates via the DEAH box ATPase Prp43p.剪接体通过DEAH盒ATP酶Prp43p丢弃中间体。
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Molecular architecture of the human Prp19/CDC5L complex.人 Prp19/CDC5L 复合物的分子结构。
Mol Cell Biol. 2010 May;30(9):2105-19. doi: 10.1128/MCB.01505-09. Epub 2010 Feb 22.
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Structural studies of the spliceosome: blind men and an elephant.剪接体的结构研究:盲人摸象。
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