Proteomics

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PID14 processing by Maize AF PLCPs


ABSTRACT: Ustilago maydis is a biotrophic fungus causing corn smut disease in maize. To downregulate immune responses and promote host colonization, U. maydis secretes a set of effector proteins into the plant apoplast. An effector essential for U. maydis virulence is Pit2, an inhibitor of papain-like cysteine proteases (PLCPs). Pit2 virulence function relies on a 14 amino acids motif (PID14). While sequence of the Pit2 effector is highly diverse amongst related pathogen species, the PID14 motif is highly conserved. Interestingly, synthetic PID14 peptides act more efficiently as PLCP inhibitors than the full-length Pit2 effector. In line with this finding, mass spectrometry showed processing of Pit2 by maize PLCPs, which releases an inhibitory core motif of the PID14. Mutational analysis demonstrated that two residues of the released inhibitor peptide are essential for Pit2 function and, consequently, for U. maydis virulence. Based on these findings, we propose a model, in which the Pit2 effector functions as a decoy: Pit2 represents a favorable substrate for apoplastic PLCPs, which are central hubs of the maize immune system. Processing of Pit2 releases the inhibitor peptide, which in turn efficiently blocks PLCPs to modulate host immunity.

INSTRUMENT(S): maXis

ORGANISM(S): Zea Mays (maize)

TISSUE(S): Plant Cell

SUBMITTER: Fatih Demir  

LAB HEAD: Pitter Florian Huesgen

PROVIDER: PXD010584 | Pride | 2019-02-25

REPOSITORIES: Pride

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Publications

A fungal substrate mimicking molecule suppresses plant immunity via an inter-kingdom conserved motif.

Misas Villamil Johana C JC   Mueller André N AN   Demir Fatih F   Meyer Ute U   Ökmen Bilal B   Schulze Hüynck Jan J   Breuer Marlen M   Dauben Helen H   Win Joe J   Huesgen Pitter F PF   Doehlemann Gunther G  

Nature communications 20190405 1


Ustilago maydis is a biotrophic fungus causing corn smut disease in maize. The secreted effector protein Pit2 is an inhibitor of papain-like cysteine proteases (PLCPs) essential for virulence. Pit2 inhibitory function relies on a conserved 14 amino acids motif (PID14). Here we show that synthetic PID14 peptides act more efficiently as PLCP inhibitors than the full-length Pit2 effector. Mass spectrometry shows processing of Pit2 by maize PLCPs, which releases an inhibitory core motif from the PID  ...[more]

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