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RNA helicases in splicing

机译:RNA解旋酶的剪接

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摘要

In eukaryotic cells, introns are spliced from pre-mRNAs by the spliceosome. Both the composition and the structure of the spliceosome are highly dynamic, and eight DExD/H RNA helicases play essential roles in controlling conformational rearrangements. There is evidence that the various helicases are functionally and physically connected with each other and with many other factors in the spliceosome. Understanding the dynamics of those interactions is essential to comprehend the mechanism and regulation of normal as well as of pathological splicing. This review focuses on recent advances in the characterization of the splicing helicases and their interactions, and highlights the deep integration of splicing helicases in global mRNP biogenesis pathways.
机译:在真核细胞中,内含子是通过剪接体从前mRNA剪接的。剪接体的组成和结构都是高度动态的,并且八种DExD / H RNA解旋酶在控制构象重排中起重要作用。有证据表明,各种解旋酶在功能上和物理上相互连接,并且与剪接体中的许多其他因素连接。了解这些相互作用的动力学对于理解正常以及病理性剪接的机理和调控至关重要。这篇综述集中在剪接解旋酶及其相互作用的表征方面的最新进展,并强调了剪接解旋酶在全球mRNP生物发生途径中的深度整合。

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