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Chitin-induced activation of immune signaling by the rice receptor CEBiP relies on a unique sandwich-type dimerization

Authors :
Yoshitake Desaki
Alba Silipo
Naoto Shibuya
Roberta Marchetti
Antonio Molinaro
Masahiro Hayafune
Flavia Squeglia
Rita Berisio
Miyu Kayama
Ken Tokuyasu
Alessia Ruggiero
Sakiko Arima
Hanae Kaku
Masahiro, Hayafune
Rita, Berisio
Marchetti, Roberta
Silipo, Alba
Miyu, Kayama
Yoshitake, Desaki
Sakiko, Arima
Flavia, Squeglia
Alessia, Ruggiero
Ken, Tokuyasu
Molinaro, Antonio
Hanae, Kaku
Naoto, Shibuya
Source :
Proceedings of the National Academy of Sciences of the United States of America 111 (2014): E404–E413. doi:10.1073/pnas.1312099111, info:cnr-pdr/source/autori:Hayafune, Masahiro; Berisio, Rita; Marchetti, Roberta; Silipo, Alba; Kayama, Miyu; Desaki, Yoshitake; Arima, Sakiko; Squeglia, Flavia; Ruggiero, Alessia; Tokuyasu, Ken; Molinaro, Antonio; Kaku, Hanae; Shibuya, Naoto/titolo:Chitin-induced activation of immune signaling by the rice receptor CEBiP relies on a unique sandwich-type dimerization/doi:10.1073%2Fpnas.1312099111/rivista:Proceedings of the National Academy of Sciences of the United States of America/anno:2014/pagina_da:E404/pagina_a:E413/intervallo_pagine:E404–E413/volume:111
Publication Year :
2014

Abstract

Perception of microbe-associated molecular patterns (MAMPs) through pattern recognition receptors (PRRs) triggers various defense responses in plants. This MAMP-triggered immunity plays a major role in the plant resistance against various pathogens. To clarify the molecular basis of the specific recognition of chitin oligosaccharides by the rice PRR, CEBiP (chitin-elicitor binding protein), as well as the formation and activation of the receptor complex, biochemical, NMR spectroscopic, and computational studies were performed. Deletion and domain-swapping experiments showed that the central lysine motif in the ectodomain of CEBiP is essential for the binding of chitin oligosaccharides. Epitope mapping by NMR spectroscopy indicated the preferential binding of longer-chain chitin oligosaccharides, such as heptamer-octamer, to CEBiP, and also the importance of N-acetyl groups for the binding. Molecular modeling/docking studies clarified the molecular interaction between CEBiP and chitin oligosaccharides and indicated the importance of Ile(122) in the central lysine motif region for ligand binding, a notion supported by site-directed mutagenesis. Based on these results, it was indicated that two CEBiP molecules simultaneously bind to one chitin oligosaccharide from the opposite side, resulting in the dimerization of CEBiP. The model was further supported by the observations that the addition of (GlcNAc)(8) induced dimerization of the ectodomain of CEBiP in vitro, and the dimerization and (GlcNAc)(8)-induced reactive oxygen generation were also inhibited by a unique oligosaccharide, (GlcN beta 1,4GlcNAc)(4), which is supposed to have N-acetyl groups only on one side of the molecule. Based on these observations, we proposed a hypothetical model for the ligand-induced activation of a receptor complex, involving both CEBiP and Oryza sativa chitin-elicitor receptor kinase-1.

Details

Language :
English
Database :
OpenAIRE
Journal :
Proceedings of the National Academy of Sciences of the United States of America 111 (2014): E404–E413. doi:10.1073/pnas.1312099111, info:cnr-pdr/source/autori:Hayafune, Masahiro; Berisio, Rita; Marchetti, Roberta; Silipo, Alba; Kayama, Miyu; Desaki, Yoshitake; Arima, Sakiko; Squeglia, Flavia; Ruggiero, Alessia; Tokuyasu, Ken; Molinaro, Antonio; Kaku, Hanae; Shibuya, Naoto/titolo:Chitin-induced activation of immune signaling by the rice receptor CEBiP relies on a unique sandwich-type dimerization/doi:10.1073%2Fpnas.1312099111/rivista:Proceedings of the National Academy of Sciences of the United States of America/anno:2014/pagina_da:E404/pagina_a:E413/intervallo_pagine:E404–E413/volume:111
Accession number :
edsair.doi.dedup.....bda9c76db615bb5684c611bbc1c921a2
Full Text :
https://doi.org/10.1073/pnas.1312099111