| Literature DB >> 34916333 |
Yan Han1,2, Xuzhen Guo1,2, Tiancai Zhang1,3, Jiangyun Wang1,2, Keqiong Ye1,2.
Abstract
Characterization of RNA-protein interaction is fundamental for understanding the metabolism and function of RNA. UV crosslinking has been widely used to map the targets of RNA-binding proteins, but is limited by low efficiency, requirement for zero-distance contact, and biases for single-stranded RNA structure and certain residues of RNA and protein. Here, we report the development of an RNA-protein crosslinker (AMT-NHS) composed of a psoralen derivative and an N-hydroxysuccinimide ester group, which react with RNA bases and primary amines of protein, respectively. We show that AMT-NHS can penetrate into living yeast cells and crosslink Cbf5 to H/ACA snoRNAs with high specificity. The crosslinker induced different crosslinking patterns than UV and targeted both single- and double-stranded regions of RNA. The crosslinker provides a new tool to capture diverse RNA-protein interactions in cells.Entities:
Keywords: CLIP; H/ACA snoRNP; RNA-binding protein; chemical crosslinker; psoralen
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Year: 2021 PMID: 34916333 PMCID: PMC8848928 DOI: 10.1261/rna.078896.121
Source DB: PubMed Journal: RNA ISSN: 1355-8382 Impact factor: 4.942