An Unbiased Proteomic Platform for Activity-based Arginylation Profiling

基于活性的精氨酰化分析的无偏蛋白质组学平台

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作者:Zongtao Lin, Yixuan Xie, Joanna Gongora, Xingyu Liu, Emily Zahn, Bibhuti Bhusana Palai, Daniel Ramirez, Rick M Searfoss, Francisca N Vitorino, Geoffrey P Dann, Chenfeng Zhao, Xian Han, Brittany MacTaggart, Xin Lan, Dechen Fu, Lina Greenberg, Yi Zhang, Kory J Lavine, Michael J Greenberg, Dongwen Lv, 

Abstract

Protein arginylation is an essential posttranslational modification (PTM) catalyzed by arginyl-tRNA-protein transferase 1 (ATE1) in mammalian systems. Arginylation features a post-translational conjugation of an arginyl to a protein, making it extremely challenging to differentiate from translational arginine residues with the same mass in a protein sequence. Here we present a general activity-based arginylation profiling (ABAP) platform for the unbiased discovery of arginylation substrates and their precise modification sites. This method integrates isotopic arginine labeling into an ATE1 assay utilizing biological lysates (ex vivo) rather than live cells, thus eliminating translational bias derived from the ribosomal activity and enabling bona fide arginylation identification using isotopic features. ABAP has been successfully applied to an array of peptide, protein, cell, patient, and animal tissue samples using 20 μg sample input, with 229 unique arginylation sites revealed from human proteomes. Representative sites were validated and followed up for their biological functions. The developed platform is globally applicable to the aforementioned sample types and therefore paves the way for functional studies of this difficult-to-characterize protein modification.

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