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irCLIP-RNP和Re-CLIP揭示了RNA上动态蛋白质关联的模式。

irCLIP-RNP and Re-CLIP reveal patterns of dynamic protein associations on RNA.

作者信息

Ducoli Luca, Zarnegar Brian J, Porter Douglas F, Meyers Robin M, Miao Weili, Riley Nicholas M, Srinivasan Suhas, Jackrazi Leandra V, Yang Yen-Yu, Li Zhouxian, Wang Yinsheng, Bertozzi Carolyn R, Flynn Ryan A, Khavari Paul A

出版信息

bioRxiv. 2024 Sep 28:2024.09.27.615518. doi: 10.1101/2024.09.27.615518.

Abstract

RNA binding proteins ( RBPs ) control varied processes, including RNA splicing, stability, transport, and translation . Dysfunctional RNA-RBP interactions contribute to the pathogenesis of human disease , however, characterizing the nature and dynamics of multiprotein assemblies on RNA has been challenging. To address this, non-isotopic ligation-based ultraviolet crosslinking immunoprecipitation was combined with mass spectrometry ( irCLIP-RNP ) to identify RNA-dependent associated proteins ( RDAPs ) co-bound to RNA with any RBP of interest. irCLIP-RNP defined landscapes of multimeric protein assemblies on RNA, uncovering previously unknown patterns of RBP-RNA associations, including cell-type-selective combinatorial relationships between RDAPs and primary RBPs. irCLIP-RNP also defined dynamic RDAP remodeling in response to epidermal growth factor ( EGF ), uncovering EGF-induced recruitment of UPF1 adjacent to HNRNPC to effect splicing surveillance of cell proliferation mRNAs. To identify the RNAs simultaneously co-bound by multiple studied RBPs, a sequential immunoprecipitation irCLIP ( Re-CLIP ) method was also developed. Re-CLIP confirmed binding relationships seen in irCLIP-RNP and detected simultaneous HNRNPC and UPF1 co-binding on RND3 and DDX3X mRNAs. irCLIP-RNP and Re-CLIP provide a framework to identify and characterize dynamic RNA-protein assemblies in living cells.

摘要

RNA结合蛋白(RBPs)控制着多种过程,包括RNA剪接、稳定性、运输和翻译。功能失调的RNA-RBP相互作用会导致人类疾病的发病机制,然而,表征RNA上多蛋白组装体的性质和动态变化一直具有挑战性。为了解决这个问题,基于非同位素连接的紫外线交联免疫沉淀与质谱联用(irCLIP-RNP),以鉴定与任何感兴趣的RBP共同结合在RNA上的RNA依赖性相关蛋白(RDAPs)。irCLIP-RNP确定了RNA上多聚体蛋白组装体的图谱,揭示了以前未知的RBP-RNA关联模式,包括RDAPs与主要RBPs之间的细胞类型选择性组合关系。irCLIP-RNP还确定了响应表皮生长因子(EGF)的动态RDAP重塑,揭示了EGF诱导UPF1在HNRNPC附近募集,以影响细胞增殖mRNA的剪接监测。为了鉴定同时被多个研究的RBPs共同结合的RNA,还开发了一种顺序免疫沉淀irCLIP(Re-CLIP)方法。Re-CLIP证实了irCLIP-RNP中所见的结合关系,并检测到HNRNPC和UPF1在RND3和DDX3X mRNA上的同时结合。irCLIP-RNP和Re-CLIP提供了一个框架,用于鉴定和表征活细胞中动态的RNA-蛋白质组装体。

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