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Prp8 定位 U5 snRNA 与 5' 剪接位点识别有关。

Prp8 positioning of U5 snRNA is linked to 5' splice site recognition.

机构信息

Department of Molecular Cell and Developmental Biology, University of California, Santa Cruz, California 95064, USA.

Center for Molecular Biology of RNA, University of California, Santa Cruz, California 95064, USA.

出版信息

RNA. 2018 Jun;24(6):769-777. doi: 10.1261/rna.065458.117. Epub 2018 Feb 27.

Abstract

Prp8 is an essential protein that regulates spliceosome assembly and conformation during pre-mRNA splicing. Recent cryo-EM structures of the spliceosome model Prp8 as a scaffold for the spliceosome's catalytic U snRNA components. Using a new amino acid probing strategy, we identified a dynamic region in human Prp8 that is positioned to stabilize the pre-mRNA in the spliceosome active site through interactions with U5 snRNA. Mutagenesis of the identified Prp8 residues in yeast indicates a role in 5' splice site recognition. Genetic interactions with spliceosome proteins Isy1, which buttresses the intron branch point, and Snu114, a regulatory GTPase that directly contacts Prp8, further corroborate a role for the same Prp8 residues in substrate positioning and activation. Together the data suggest that adjustments in interactions between Prp8 and U5 snRNA help establish proper positioning of the pre-mRNA into the active site to enhance 5' splice site fidelity.

摘要

Prp8 是一种必需的蛋白质,可在 pre-mRNA 剪接过程中调节剪接体的组装和构象。最近的冷冻电镜结构显示,剪接体模型 Prp8 作为剪接体催化 U snRNA 成分的支架。使用新的氨基酸探测策略,我们鉴定了人 Prp8 中的一个动态区域,该区域通过与 U5 snRNA 的相互作用,定位于剪接体活性部位,稳定 pre-mRNA。酵母中鉴定的 Prp8 残基的突变表明其在 5' 剪接位点识别中起作用。与剪接体蛋白 Isy1(支撑内含子分支点)和 Snu114(直接与 Prp8 接触的调节 GTPase)的遗传相互作用进一步证实了相同的 Prp8 残基在底物定位和激活中的作用。数据表明,Prp8 与 U5 snRNA 之间相互作用的调整有助于将 pre-mRNA 正确定位到活性部位,以提高 5' 剪接位点保真度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79ff/5959246/f447b9797160/769f01.jpg

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