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The Spliceosome: Design Principles of a Dynamic RNP Machine

机译:剪接体:动态RNP机器的设计原理

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摘要

Ribonucleoproteins (RNPs) mediate key cellular functions such as gene expression and its regulation. Whereas most RNP enzymes are stable in composition and harbor preformed active sites, the spliceosome, which removes noncoding introns from precursor messenger RNAs (pre-mRNAs), follows fundamentally different strategies. In order to provide both accuracy to the recognition of reactive splice sites in the pre-mRNA and flexibility to the choice of splice sites during alterna_tive splicing, the spliceosome exhibits exceptional compositional and structural dynamics that are exploited during substrate-dependent complex assembly, catalytic activation, and active site remodeling.
机译:核糖核蛋白(RNP)介导关键的细胞功能,例如基因表达及其调控。尽管大多数RNP酶的成分稳定且具有预先形成的活性位点,但剪接体可从根本上改变策略,该剪接体从前体信使RNA(pre-mRNA)中去除非编码内含子。为了既提供对前mRNA中反应性剪接位点的识别的准确性,又为在可变剪接过程中灵活选择剪接位点提供灵活性,剪接体具有出色的组成和结构动力学,可在依赖底物的复杂组装,催化活化过程中发挥作用,以及活动网站的重塑。

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