Proteomics

Dataset Information

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Lauroylation-assisted workflow for both PICS and N-terminomics


ABSTRACT: (1) Lauroylation-assisted workflow for PICS using E. coli proteome-derived tryptic peptide libraries which were blocked (succinylation or dimethylation). (2) Lauroylation-assisted N-terminomics to profile protein N-termini, ORF and non-ORF protein N-termini, using etoposide-treated cholangiocarcinoma cells by exploiting negative selection.

ORGANISM(S): Homo Sapiens (human) Escherichia Coli

SUBMITTER: Ryoji Masui, Yoshikatsu Kanai 

PROVIDER: PXD067596 | JPOST Repository | Fri May 01 00:00:00 GMT+01:00 2026

REPOSITORIES: jPOST

Dataset's files

Source:
Action DRS
20250420_PL_01_GluC_100.mgf Mgf
20250420_PL_01_GluC_100.mzid Mzid
20250420_PL_01_GluC_100.raw Raw
20250420_PL_02_GluC_10000.mgf Mgf
20250420_PL_02_GluC_10000.mzid Mzid
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Publications

A Sensitive, Specific, and Cost-Effective Lauroylation-Assisted Workflow for Profiling Peptide-Level Protease Specificity Using Proteomic Identification of Cleavage Sites (PICS), with Applicability to Protein-Level N-Terminomics.

Okanishi Hiroki H   Uno Isayuki I   Nishimura Sho-Ichi SI   Kanai Yoshikatsu Y   Masui Ryoji R  

Journal of proteome research 20260310 4


Proteases play crucial roles in numerous biological processes through specific protein cleavage, and their dysregulation has been implicated in various diseases. To better understand protease specificity, we developed a lauroylation-assisted proteomic identification of protease cleavage sites (PICS) workflow that labels and enriches targeted protease-generated neo-N-termini using economical reagents and standard laboratory equipment. The lauroylation enables both discrimination of the neo-N-term  ...[more]

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