Cargando…

Engineering Chimeras by Fusing Plant Receptor-like Kinase EMS1 and BRI1 Reveals the Two Receptors’ Structural Specificity and Molecular Mechanisms

Brassinosteriods (BRs) are plant hormones essential for plant growth and development. The receptor-like kinase (RLK) BRI1 perceives BRs to initiate a well-known transduction pathway which finally activate the transcription factors BZR1/BES1 specifically regulating BR-mediated gene expression. The RL...

Descripción completa

Detalles Bibliográficos
Autores principales: Bai, Qunwei, Li, Chenxi, Wu, Lei, Liu, Huan, Ren, Hongyan, Li, Guishuang, Wang, Qiuling, Wu, Guang, Zheng, Bowen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8876890/
https://www.ncbi.nlm.nih.gov/pubmed/35216268
http://dx.doi.org/10.3390/ijms23042155
_version_ 1784658277268717568
author Bai, Qunwei
Li, Chenxi
Wu, Lei
Liu, Huan
Ren, Hongyan
Li, Guishuang
Wang, Qiuling
Wu, Guang
Zheng, Bowen
author_facet Bai, Qunwei
Li, Chenxi
Wu, Lei
Liu, Huan
Ren, Hongyan
Li, Guishuang
Wang, Qiuling
Wu, Guang
Zheng, Bowen
author_sort Bai, Qunwei
collection PubMed
description Brassinosteriods (BRs) are plant hormones essential for plant growth and development. The receptor-like kinase (RLK) BRI1 perceives BRs to initiate a well-known transduction pathway which finally activate the transcription factors BZR1/BES1 specifically regulating BR-mediated gene expression. The RLK EMS1 governs tapetum formation via the same signaling pathway shared with BRI1. BRI1 and EMS1 have a common signal output, but the gene structural specificity and the molecular response remain unclear. In this study, we identified that the transmembrane (TM), intracellular juxtamembrane (iJM), kinase, and leucin-rich repeats 1-13 (LRR1-13) domains of EMS1 could replace the corresponding BRI1 domain to maintain the BR receptor function, whereas the extracellular juxtamembrane (eJM) and LRR1-14 domains could not, indicating that the LRR14-EJM domain conferred functional specificity to BRI1. We compared the kinase domains of EMS1 and BRI1, and found that EMS1’s kinase activity was weaker than BRI1’s. Further investigation of the specific phosphorylation sites in BRI1 and EMS1 revealed that the Y1052 site in the kinase domain was essential for the BRI1 biological function, but the corresponding site in EMS1 showed no effect on the biological function of EMS1, suggesting a site regulation difference in the two receptors. Furthermore, we showed that EMS1 shared the substrate BSKs with BRI1. Our study provides insight into the structural specificity and molecular mechanism of BRI1 and EMS1, as well as the origin and divergence of BR receptors.
format Online
Article
Text
id pubmed-8876890
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-88768902022-02-26 Engineering Chimeras by Fusing Plant Receptor-like Kinase EMS1 and BRI1 Reveals the Two Receptors’ Structural Specificity and Molecular Mechanisms Bai, Qunwei Li, Chenxi Wu, Lei Liu, Huan Ren, Hongyan Li, Guishuang Wang, Qiuling Wu, Guang Zheng, Bowen Int J Mol Sci Article Brassinosteriods (BRs) are plant hormones essential for plant growth and development. The receptor-like kinase (RLK) BRI1 perceives BRs to initiate a well-known transduction pathway which finally activate the transcription factors BZR1/BES1 specifically regulating BR-mediated gene expression. The RLK EMS1 governs tapetum formation via the same signaling pathway shared with BRI1. BRI1 and EMS1 have a common signal output, but the gene structural specificity and the molecular response remain unclear. In this study, we identified that the transmembrane (TM), intracellular juxtamembrane (iJM), kinase, and leucin-rich repeats 1-13 (LRR1-13) domains of EMS1 could replace the corresponding BRI1 domain to maintain the BR receptor function, whereas the extracellular juxtamembrane (eJM) and LRR1-14 domains could not, indicating that the LRR14-EJM domain conferred functional specificity to BRI1. We compared the kinase domains of EMS1 and BRI1, and found that EMS1’s kinase activity was weaker than BRI1’s. Further investigation of the specific phosphorylation sites in BRI1 and EMS1 revealed that the Y1052 site in the kinase domain was essential for the BRI1 biological function, but the corresponding site in EMS1 showed no effect on the biological function of EMS1, suggesting a site regulation difference in the two receptors. Furthermore, we showed that EMS1 shared the substrate BSKs with BRI1. Our study provides insight into the structural specificity and molecular mechanism of BRI1 and EMS1, as well as the origin and divergence of BR receptors. MDPI 2022-02-15 /pmc/articles/PMC8876890/ /pubmed/35216268 http://dx.doi.org/10.3390/ijms23042155 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bai, Qunwei
Li, Chenxi
Wu, Lei
Liu, Huan
Ren, Hongyan
Li, Guishuang
Wang, Qiuling
Wu, Guang
Zheng, Bowen
Engineering Chimeras by Fusing Plant Receptor-like Kinase EMS1 and BRI1 Reveals the Two Receptors’ Structural Specificity and Molecular Mechanisms
title Engineering Chimeras by Fusing Plant Receptor-like Kinase EMS1 and BRI1 Reveals the Two Receptors’ Structural Specificity and Molecular Mechanisms
title_full Engineering Chimeras by Fusing Plant Receptor-like Kinase EMS1 and BRI1 Reveals the Two Receptors’ Structural Specificity and Molecular Mechanisms
title_fullStr Engineering Chimeras by Fusing Plant Receptor-like Kinase EMS1 and BRI1 Reveals the Two Receptors’ Structural Specificity and Molecular Mechanisms
title_full_unstemmed Engineering Chimeras by Fusing Plant Receptor-like Kinase EMS1 and BRI1 Reveals the Two Receptors’ Structural Specificity and Molecular Mechanisms
title_short Engineering Chimeras by Fusing Plant Receptor-like Kinase EMS1 and BRI1 Reveals the Two Receptors’ Structural Specificity and Molecular Mechanisms
title_sort engineering chimeras by fusing plant receptor-like kinase ems1 and bri1 reveals the two receptors’ structural specificity and molecular mechanisms
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8876890/
https://www.ncbi.nlm.nih.gov/pubmed/35216268
http://dx.doi.org/10.3390/ijms23042155
work_keys_str_mv AT baiqunwei engineeringchimerasbyfusingplantreceptorlikekinaseems1andbri1revealsthetworeceptorsstructuralspecificityandmolecularmechanisms
AT lichenxi engineeringchimerasbyfusingplantreceptorlikekinaseems1andbri1revealsthetworeceptorsstructuralspecificityandmolecularmechanisms
AT wulei engineeringchimerasbyfusingplantreceptorlikekinaseems1andbri1revealsthetworeceptorsstructuralspecificityandmolecularmechanisms
AT liuhuan engineeringchimerasbyfusingplantreceptorlikekinaseems1andbri1revealsthetworeceptorsstructuralspecificityandmolecularmechanisms
AT renhongyan engineeringchimerasbyfusingplantreceptorlikekinaseems1andbri1revealsthetworeceptorsstructuralspecificityandmolecularmechanisms
AT liguishuang engineeringchimerasbyfusingplantreceptorlikekinaseems1andbri1revealsthetworeceptorsstructuralspecificityandmolecularmechanisms
AT wangqiuling engineeringchimerasbyfusingplantreceptorlikekinaseems1andbri1revealsthetworeceptorsstructuralspecificityandmolecularmechanisms
AT wuguang engineeringchimerasbyfusingplantreceptorlikekinaseems1andbri1revealsthetworeceptorsstructuralspecificityandmolecularmechanisms
AT zhengbowen engineeringchimerasbyfusingplantreceptorlikekinaseems1andbri1revealsthetworeceptorsstructuralspecificityandmolecularmechanisms