A plant mechanism of hijacking pathogen virulence factors to trigger innate immunity.

Xiao, Yu; Sun, Guangzheng; Yu, Qiangsheng; Gao, Teng; Zhu, Qinsheng; Wang, Rui; Huang, Shijia; Han, Zhifu et al. · Science · 2024

basic_science · Level V

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Abstract

Polygalacturonase-inhibiting proteins (PGIPs) interact with pathogen-derived polygalacturonases to inhibit their virulence-associated plant cell wall-degrading activity but stimulate immunity-inducing oligogalacturonide production. Here we show that interaction between <i>Phaseolus vulgaris</i> PGIP2 (PvPGIP2) and <i>Fusarium phyllophilum</i> polygalacturonase (FpPG) enhances substrate binding, resulting in inhibition of the enzyme activity of FpPG. This interaction promotes FpPG-catalyzed production of long-chain immunoactive oligogalacturonides, while diminishing immunosuppressive short oligogalacturonides. PvPGIP2 binding creates a substrate binding site on PvPGIP2-FpPG, forming a new polygalacturonase with boosted substrate binding activity and altered substrate preference. Structure-based engineering converts a putative PGIP that initially lacks FpPG-binding activity into an effective FpPG-interacting protein. These findings unveil a mechanism for plants to transform pathogen virulence activity into a defense trigger and provide proof of principle for engineering PGIPs with broader specificity.

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