Literature DB >> 31634432

LysargiNase and Chemical Derivatization Based Strategy for Facilitating In-Depth Profiling of C-Terminome.

Hao Hu1, Wensi Zhao1,2, Mengdi Zhu1,2, Lei Zhao1, Linhui Zhai1, Jun-Yu Xu1, Ping Liu1, Minjia Tan1,2.   

Abstract

Global identification of protein C-termini is highly challenging due to their low abundance in conventional shotgun proteomics. Several enrichment strategies have been developed to facilitate the detection of C-terminal peptides. One major issue of previous approaches is the limited C-terminome coverage. Herein, we integrated LysargiNase digestion, chemical acetylation on neo-N-terminus, and a-ion-aided peptide matching into poly(allylamine)-based C-terminomics (termed as LAACTer). In this strategy, we leveraged LysargiNase, a protease with cleavage specificity N-terminal to Lys and Arg residues, to cover previously unidentifiable C-terminome and employed chemical acetylation and a-ion-aided peptide matching to efficiently boost peptide identifications. Triplicates of LAACTer identified a total of 834 C-termini from proteome of 293T cell, which expanded the coverage by 164% (643 more unique C-termini) compared with the parallel experiments using the original workflow. Compared with the largest human C-terminome data sets (containing 800-900 C-termini), LAACTer not only achieved comparable profiling depth but also yielded 465 previously unidentified C-termini. In a SILAC (stable isotope labeling with amino acids in cell culture)-based quantitative study for identification of GluC-cleaved products, LAACTer quantified 300% more C-terminal peptides than the original workflow. Using LAACTer and the original workflow, we performed global analysis for the C-terminal sequences of 293T cell. The original and processed C-termini displayed distinct sequence patterns, implying the "C-end rules" that regulates protein stability could be more complex than just amino acid motifs. In conclusion, we reason LAACTer could be a powerful proteomic tool for in-depth C-terminomics and would benefit better functional understanding of protein C-termini.

Entities:  

Year:  2019        PMID: 31634432     DOI: 10.1021/acs.analchem.9b03543

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  5 in total

1.  PBC, an easy and efficient strategy for high-throughput protein C-terminome profiling.

Authors:  Linhui Zhai; Le Wang; Hao Hu; Quan Liu; Sangkyu Lee; Minjia Tan; Yinan Zhang
Journal:  Front Cell Dev Biol       Date:  2022-08-31

2.  [Mirror cutting-assisted orthogonal digestion enabling large-scale and accurate protein complex characterization].

Authors:  Ruonan Han; Lili Zhao; Yuxin An; Zhen Liang; Qun Zhao; Lihua Zhang; Yukui Zhang
Journal:  Se Pu       Date:  2022-03-08

3.  [Optimization and evaluation of protein C-terminal peptide enrichment strategy based on arginine cleavage].

Authors:  Xiaoxiao Zhao; Hao Hu; Wensi Zhao; Ping Liu; Minjia Tan
Journal:  Se Pu       Date:  2022-01

4.  Drug repurposing for cancer treatment through global propagation with a greedy algorithm in a multilayer network.

Authors:  Xi Cheng; Wensi Zhao; Mengdi Zhu; Bo Wang; Xuege Wang; Xiaoyun Yang; Yuqi Huang; Minjia Tan; Jing Li
Journal:  Cancer Biol Med       Date:  2021-04-24       Impact factor: 4.248

Review 5.  The quest for substrates and binding partners: A critical barrier for understanding the role of ADAMTS proteases in musculoskeletal development and disease.

Authors:  Brandon Satz-Jacobowitz; Dirk Hubmacher
Journal:  Dev Dyn       Date:  2020-09-17       Impact factor: 3.780

  5 in total

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