Proteomics

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Proteomics profiling of arginine methylation mediated by PRMT family reveals a critical role of arginine methylation in RNA splicing and cancer cell growth


ABSTRACT: Protein arginine methylation, catalyzed by the protein arginine methyltransferase (PRMT) family, is recognized as a widespread post-translational modification (PTM) with implications in a plethora of biological processes in eukaryotes. PRMT proteins were classified into three types, type I, II and III, according to the final methyl-arginine products generated. Despite that thousands of substrates have been identified for Type I and II PRMTs, a full scope of arginine methylation catalyzed by the only type III PRMT, PRMT7, as well as its connection with that of type I and II PRMTs remain unknown, limiting our understanding of the network of arginine methylation and its functions in cells. In this study, global profiling of PRMT4 (type I), PRMT5 (type II) and PRMT7 (type III) substrates (also referred as methylome) revealed that PRMT7 methylated a GAR (glycine and arginine) motif similar as PRMT5, while PRMT4 uniquely methylated a motif in which proline was highly enriched. PRMT4, 5 and 7-methylome were all enriched with proteins functioning in mRNA splicing.

INSTRUMENT(S): Orbitrap Fusion Lumos

ORGANISM(S): Homo Sapiens (human)

SUBMITTER: Wen Liu  

LAB HEAD: Wen Liu

PROVIDER: PXD022424 | Pride | 2021-01-27

REPOSITORIES: Pride

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Publications

Profiling PRMT methylome reveals roles of hnRNPA1 arginine methylation in RNA splicing and cell growth.

Li Wen-Juan WJ   He Yao-Hui YH   Yang Jing-Jing JJ   Hu Guo-Sheng GS   Lin Yi-An YA   Ran Ting T   Peng Bing-Ling BL   Xie Bing-Lan BL   Huang Ming-Feng MF   Gao Xiang X   Huang Hai-Hua HH   Zhu Helen He HH   Ye Feng F   Liu Wen W  

Nature communications 20210329 1


Numerous substrates have been identified for Type I and II arginine methyltransferases (PRMTs). However, the full substrate spectrum of the only type III PRMT, PRMT7, and its connection to type I and II PRMT substrates remains unknown. Here, we use mass spectrometry to reveal features of PRMT7-regulated methylation. We find that PRMT7 predominantly methylates a glycine and arginine motif; multiple PRMT7-regulated arginine methylation sites are close to phosphorylations sites; methylation sites a  ...[more]

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