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Understanding and manipulating the recognition of necrosis-inducing secreted protein 1 (NIS1) by BRI1-associated receptor kinase 1 (BAK1). | LitMetric

Understanding and manipulating the recognition of necrosis-inducing secreted protein 1 (NIS1) by BRI1-associated receptor kinase 1 (BAK1).

Int J Biol Macromol

State Key Laboratory of Maize Bio-breeding, Joint International Research Laboratory of Crop Molecular Breeding, Ministry of Agriculture Key Laboratory for Crop Pest Monitoring and Green Control, College of Plant Protection, China Agricultural University, Beijing 100193, China. Electronic address:

Published: October 2024

AI Article Synopsis

  • NIS1 is a crucial protein in certain fungi that helps them evade plant immune responses by interacting with a receptor kinase called BAK1, but the details of this interaction were previously unclear.
  • The study provides the first crystal structure of a NIS1 protein (MoNIS1) from the fungus Magnaporthe oryzae, revealing its unique β barrel structure and the specific regions involved in binding to BAK1.
  • Researchers also discovered a chemical compound that can block the MoNIS1-BAK1 interaction, which could lead to new strategies for developing fungicides to combat rice diseases caused by this fungus.

Article Abstract

Necrosis-inducing secreted protein 1 (NIS1) is a core effector of Ascomycota and Basidiomycota fungi. They inhibit the immune responses of host plants mainly through interaction with the multi-functional coreceptor BRI1-associated receptor kinase 1 (BAK1). However, the structural mechanism of the NIS1 family and how they are recognized by BAK1 are unknown. Herein, we report the first crystal structure of the NIS1 family protein, the Magnaporthe oryzae NIS1 (MoNIS1), analyze the recognition mechanism of NIS1s by BAK1, and explore regulation of the NIS1-BAK1 interaction by a chemical compound. MoNIS1 exists as a β barrel formed by eight β strands, a folding mode that has not been reported. Hydrogen/deuterium exchange mass spectrometry (HDX-MS) assay suggested that β4-β5 loop and β5 strand of MoNIS1 participate in OsBAK1 interaction, which was supported by further single-point mutational assays. For OsBAK1, HDX-MS assay suggested four regions involved in MoNIS1 interaction. Additionally, we identified a compound that blocks MoNIS1-OsBAK1 interaction in vitro and inhibits the virulence of M. oryzae on rice. Collectively, we determined the first structure of NIS1 family effectors, presented the recognition mechanism of NIS1 by BAK1, and showed that blocking NIS1-BAK1 interaction could be a new target for fungicide development.

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Source
http://dx.doi.org/10.1016/j.ijbiomac.2024.134821DOI Listing

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