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Structural basis of salicylic acid perception by Arabidopsis NPR proteins.

Publication ,  Journal Article
Wang, W; Withers, J; Li, H; Zwack, PJ; Rusnac, D-V; Shi, H; Liu, L; Yan, S; Hinds, TR; Guttman, M; Dong, X; Zheng, N
Published in: Nature
October 2020

Salicylic acid (SA) is a plant hormone that is critical for resistance to pathogens1-3. The NPR proteins have previously been identified as SA receptors4-10, although how they perceive SA and coordinate hormonal signalling remain unknown. Here we report the mapping of the SA-binding core of Arabidopsis thaliana NPR4 and its ligand-bound crystal structure. The SA-binding core domain of NPR4 refolded with SA adopts an α-helical fold that completely buries SA in its hydrophobic core. The lack of a ligand-entry pathway suggests that SA binding involves a major conformational remodelling of the SA-binding core of NPR4, which we validated using hydrogen-deuterium-exchange mass spectrometry analysis of the full-length protein and through SA-induced disruption of interactions between NPR1 and NPR4. We show that, despite the two proteins sharing nearly identical hormone-binding residues, NPR1 displays minimal SA-binding activity compared to NPR4. We further identify two surface residues of the SA-binding core, the mutation of which can alter the SA-binding ability of NPR4 and its interaction with NPR1. We also demonstrate that expressing a variant of NPR4 that is hypersensitive to SA could enhance SA-mediated basal immunity without compromising effector-triggered immunity, because the ability of this variant to re-associate with NPR1 at high levels of SA remains intact. By revealing the structural mechanisms of SA perception by NPR proteins, our work paves the way for future investigation of the specific roles of these proteins in SA signalling and their potential for engineering plant immunity.

Duke Scholars

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Published In

Nature

DOI

EISSN

1476-4687

ISSN

0028-0836

Publication Date

October 2020

Volume

586

Issue

7828

Start / End Page

311 / 316

Related Subject Headings

  • Signal Transduction
  • Salicylic Acid
  • Protein Domains
  • Protein Binding
  • Plant Immunity
  • Plant Growth Regulators
  • Mutation
  • Models, Molecular
  • Mass Spectrometry
  • Ligands
 

Citation

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Wang, W., Withers, J., Li, H., Zwack, P. J., Rusnac, D.-V., Shi, H., … Zheng, N. (2020). Structural basis of salicylic acid perception by Arabidopsis NPR proteins. Nature, 586(7828), 311–316. https://doi.org/10.1038/s41586-020-2596-y
Wang, Wei, John Withers, Heng Li, Paul J. Zwack, Domnița-Valeria Rusnac, Hui Shi, Lijing Liu, et al. “Structural basis of salicylic acid perception by Arabidopsis NPR proteins.Nature 586, no. 7828 (October 2020): 311–16. https://doi.org/10.1038/s41586-020-2596-y.
Wang W, Withers J, Li H, Zwack PJ, Rusnac D-V, Shi H, et al. Structural basis of salicylic acid perception by Arabidopsis NPR proteins. Nature. 2020 Oct;586(7828):311–6.
Wang, Wei, et al. “Structural basis of salicylic acid perception by Arabidopsis NPR proteins.Nature, vol. 586, no. 7828, Oct. 2020, pp. 311–16. Epmc, doi:10.1038/s41586-020-2596-y.
Wang W, Withers J, Li H, Zwack PJ, Rusnac D-V, Shi H, Liu L, Yan S, Hinds TR, Guttman M, Dong X, Zheng N. Structural basis of salicylic acid perception by Arabidopsis NPR proteins. Nature. 2020 Oct;586(7828):311–316.
Journal cover image

Published In

Nature

DOI

EISSN

1476-4687

ISSN

0028-0836

Publication Date

October 2020

Volume

586

Issue

7828

Start / End Page

311 / 316

Related Subject Headings

  • Signal Transduction
  • Salicylic Acid
  • Protein Domains
  • Protein Binding
  • Plant Immunity
  • Plant Growth Regulators
  • Mutation
  • Models, Molecular
  • Mass Spectrometry
  • Ligands