XCP1 cleaves Pathogenesis-related protein 1 into CAPE9 for systemic immunity in Arabidopsis
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ABSTRACT: This repository is related to the work: XCP1 cleaves Pathogenesis-related protein 1 into CAPE9 for systemic immunity in Arabidopsis. In this study, we found that the C-terminal proteolytic processing of a caspase-like substrate motif CNYD within Pathogenesis-related protein 1 (PR1) generates an immunomodulatory cytokine (CAPE9) in Arabidopsis. Salicylic acid enhances CNYD-targeted protease activity and the proteolytic release of CAPE9 from PR1 in Arabidopsis. This process involves a protease exhibiting caspase-like enzyme activity, identified as Xylem cysteine peptidase 1 (XCP1). XCP1 exhibits a calcium-modulated pH-activity profile and a comparable activity to human caspases. XCP1 is required to induce systemic immunity triggered by pathogen-associated molecular patterns. This work reveals XCP1 as a key protease for plant immunity, which produces the cytokine CAPE9 from the canonical salicylic acid signaling marker PR1 to activate systemic immunity The following files are stored here: four MS datasets (.raw files)generated in this work, including: (1) The SA contents in Arabidopsis treated with water or AtCAPE9 on Orbitrap Elite (fig1a); (2) MS/MS spectra of endogenous and synthetic AtCAPE9 on Orbitrap Elite (fig1b); (3) Quantification of endogenous AtCAPE9 in Arabidopsis leaves with or without SA treatment on Orbitrap Elite (fig3a); (4) Quantification of endogenous AtCAPE9 in WT or xcp1 Arabidopsis leaves treated with SA on Orbitrap LTQ XL (figS7c)
INSTRUMENT(S): LTQ Orbitrap XL, LTQ Orbitrap Elite
ORGANISM(S): Arabidopsis Thaliana (ncbitaxon:3702)
SUBMITTER: Yet-Ran Chen
PROVIDER: MSV000091833 | MassIVE | Tue May 02 02:08:00 BST 2023
REPOSITORIES: MassIVE
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