Cargando…

Structural analysis of receptor-like kinase SOBIR1 reveals mechanisms that regulate its phosphorylation-dependent activation

Plant leucine-rich repeat (LRR) receptor-like kinases (RLKs) and LRR receptor-like proteins (RLPs) comprise a large family of cell surface receptors that play critical roles in signal perception and transduction. Both LRR-RLKs and LRR-RLPs rely on regulatory LRR-RLKs to initiate downstream signaling...

Descripción completa

Detalles Bibliográficos
Autores principales: Wei, Xue, Wang, Yulu, Zhang, Su, Gu, Tianyi, Steinmetz, Gabryel, Yu, Haiyan, Guo, Guoguang, Liu, Xin, Fan, Shilong, Wang, Fengzhong, Gu, Yangnan, Xin, Fengjiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9073325/
https://www.ncbi.nlm.nih.gov/pubmed/35529948
http://dx.doi.org/10.1016/j.xplc.2022.100301
_version_ 1784701259180146688
author Wei, Xue
Wang, Yulu
Zhang, Su
Gu, Tianyi
Steinmetz, Gabryel
Yu, Haiyan
Guo, Guoguang
Liu, Xin
Fan, Shilong
Wang, Fengzhong
Gu, Yangnan
Xin, Fengjiao
author_facet Wei, Xue
Wang, Yulu
Zhang, Su
Gu, Tianyi
Steinmetz, Gabryel
Yu, Haiyan
Guo, Guoguang
Liu, Xin
Fan, Shilong
Wang, Fengzhong
Gu, Yangnan
Xin, Fengjiao
author_sort Wei, Xue
collection PubMed
description Plant leucine-rich repeat (LRR) receptor-like kinases (RLKs) and LRR receptor-like proteins (RLPs) comprise a large family of cell surface receptors that play critical roles in signal perception and transduction. Both LRR-RLKs and LRR-RLPs rely on regulatory LRR-RLKs to initiate downstream signaling pathways. BRASSINOSTEROID INSENSITIVE 1-ASSOCIATED KINASE 1/SOMATIC EMBRYOGENESIS RECEPTOR KINASE 3 (BAK1/SERK3) and SUPPRESSOR OF BIR1-1 (SOBIR1) are important and extensively studied regulatory LRR-RLKs with distinct functions. Although the regulatory mechanism of BAK1 activation has been studied in detail, the activation mechanism of SOBIR1 remains poorly understood. Here, the crystal structures of the catalytically inactive kinase domain of SOBIR1 (SOBIR1-KD) from Arabidopsis thaliana were determined in complexes with AMP-PNP and Mg(2+). The results show that SOBIR1-KD contains a uniquely long β3-αC loop and adopts an Src-like inactive conformation with an unusual architecture at the activation segment, which comprises three helices. Biochemical studies revealed that SOBIR1 is transphosphorylated by BAK1 following its autophosphorylation via an intermolecular mechanism, and the phosphorylation of Thr529 in the activation segment and the β3-αC loop are critical for SOBIR1 phosphorylation. Further functional analysis confirmed the importance of Thr529 and the β3-αC loop for the SOBIR1-induced cell death response in Nicotiana benthamiana. Taken together, these findings provide a structural basis for the regulatory mechanism of SOBIR1 and reveal the important elements and phosphorylation events in the special stepwise activation of SOBIR1-KD, the first such processes found in regulatory LRR-RLKs.
format Online
Article
Text
id pubmed-9073325
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-90733252022-05-07 Structural analysis of receptor-like kinase SOBIR1 reveals mechanisms that regulate its phosphorylation-dependent activation Wei, Xue Wang, Yulu Zhang, Su Gu, Tianyi Steinmetz, Gabryel Yu, Haiyan Guo, Guoguang Liu, Xin Fan, Shilong Wang, Fengzhong Gu, Yangnan Xin, Fengjiao Plant Commun Research Article Plant leucine-rich repeat (LRR) receptor-like kinases (RLKs) and LRR receptor-like proteins (RLPs) comprise a large family of cell surface receptors that play critical roles in signal perception and transduction. Both LRR-RLKs and LRR-RLPs rely on regulatory LRR-RLKs to initiate downstream signaling pathways. BRASSINOSTEROID INSENSITIVE 1-ASSOCIATED KINASE 1/SOMATIC EMBRYOGENESIS RECEPTOR KINASE 3 (BAK1/SERK3) and SUPPRESSOR OF BIR1-1 (SOBIR1) are important and extensively studied regulatory LRR-RLKs with distinct functions. Although the regulatory mechanism of BAK1 activation has been studied in detail, the activation mechanism of SOBIR1 remains poorly understood. Here, the crystal structures of the catalytically inactive kinase domain of SOBIR1 (SOBIR1-KD) from Arabidopsis thaliana were determined in complexes with AMP-PNP and Mg(2+). The results show that SOBIR1-KD contains a uniquely long β3-αC loop and adopts an Src-like inactive conformation with an unusual architecture at the activation segment, which comprises three helices. Biochemical studies revealed that SOBIR1 is transphosphorylated by BAK1 following its autophosphorylation via an intermolecular mechanism, and the phosphorylation of Thr529 in the activation segment and the β3-αC loop are critical for SOBIR1 phosphorylation. Further functional analysis confirmed the importance of Thr529 and the β3-αC loop for the SOBIR1-induced cell death response in Nicotiana benthamiana. Taken together, these findings provide a structural basis for the regulatory mechanism of SOBIR1 and reveal the important elements and phosphorylation events in the special stepwise activation of SOBIR1-KD, the first such processes found in regulatory LRR-RLKs. Elsevier 2022-01-19 /pmc/articles/PMC9073325/ /pubmed/35529948 http://dx.doi.org/10.1016/j.xplc.2022.100301 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Wei, Xue
Wang, Yulu
Zhang, Su
Gu, Tianyi
Steinmetz, Gabryel
Yu, Haiyan
Guo, Guoguang
Liu, Xin
Fan, Shilong
Wang, Fengzhong
Gu, Yangnan
Xin, Fengjiao
Structural analysis of receptor-like kinase SOBIR1 reveals mechanisms that regulate its phosphorylation-dependent activation
title Structural analysis of receptor-like kinase SOBIR1 reveals mechanisms that regulate its phosphorylation-dependent activation
title_full Structural analysis of receptor-like kinase SOBIR1 reveals mechanisms that regulate its phosphorylation-dependent activation
title_fullStr Structural analysis of receptor-like kinase SOBIR1 reveals mechanisms that regulate its phosphorylation-dependent activation
title_full_unstemmed Structural analysis of receptor-like kinase SOBIR1 reveals mechanisms that regulate its phosphorylation-dependent activation
title_short Structural analysis of receptor-like kinase SOBIR1 reveals mechanisms that regulate its phosphorylation-dependent activation
title_sort structural analysis of receptor-like kinase sobir1 reveals mechanisms that regulate its phosphorylation-dependent activation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9073325/
https://www.ncbi.nlm.nih.gov/pubmed/35529948
http://dx.doi.org/10.1016/j.xplc.2022.100301
work_keys_str_mv AT weixue structuralanalysisofreceptorlikekinasesobir1revealsmechanismsthatregulateitsphosphorylationdependentactivation
AT wangyulu structuralanalysisofreceptorlikekinasesobir1revealsmechanismsthatregulateitsphosphorylationdependentactivation
AT zhangsu structuralanalysisofreceptorlikekinasesobir1revealsmechanismsthatregulateitsphosphorylationdependentactivation
AT gutianyi structuralanalysisofreceptorlikekinasesobir1revealsmechanismsthatregulateitsphosphorylationdependentactivation
AT steinmetzgabryel structuralanalysisofreceptorlikekinasesobir1revealsmechanismsthatregulateitsphosphorylationdependentactivation
AT yuhaiyan structuralanalysisofreceptorlikekinasesobir1revealsmechanismsthatregulateitsphosphorylationdependentactivation
AT guoguoguang structuralanalysisofreceptorlikekinasesobir1revealsmechanismsthatregulateitsphosphorylationdependentactivation
AT liuxin structuralanalysisofreceptorlikekinasesobir1revealsmechanismsthatregulateitsphosphorylationdependentactivation
AT fanshilong structuralanalysisofreceptorlikekinasesobir1revealsmechanismsthatregulateitsphosphorylationdependentactivation
AT wangfengzhong structuralanalysisofreceptorlikekinasesobir1revealsmechanismsthatregulateitsphosphorylationdependentactivation
AT guyangnan structuralanalysisofreceptorlikekinasesobir1revealsmechanismsthatregulateitsphosphorylationdependentactivation
AT xinfengjiao structuralanalysisofreceptorlikekinasesobir1revealsmechanismsthatregulateitsphosphorylationdependentactivation