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Allosteric activation of the co-receptor BAK1 by the EFR receptor kinase initiates immune signaling.
- Source :
-
ELife [Elife] 2024 Jul 19; Vol. 12. Date of Electronic Publication: 2024 Jul 19. - Publication Year :
- 2024
-
Abstract
- Transmembrane signaling by plant receptor kinases (RKs) has long been thought to involve reciprocal trans-phosphorylation of their intracellular kinase domains. The fact that many of these are pseudokinase domains, however, suggests that additional mechanisms must govern RK signaling activation. Non-catalytic signaling mechanisms of protein kinase domains have been described in metazoans, but information is scarce for plants. Recently, a non-catalytic function was reported for the leucine-rich repeat (LRR)-RK subfamily XIIa member EFR (elongation factor Tu receptor) and phosphorylation-dependent conformational changes were proposed to regulate signaling of RKs with non-RD kinase domains. Here, using EFR as a model, we describe a non-catalytic activation mechanism for LRR-RKs with non-RD kinase domains. EFR is an active kinase, but a kinase-dead variant retains the ability to enhance catalytic activity of its co-receptor kinase BAK1/SERK3 (brassinosteroid insensitive 1-associated kinase 1/somatic embryogenesis receptor kinase 3). Applying hydrogen-deuterium exchange mass spectrometry (HDX-MS) analysis and designing homology-based intragenic suppressor mutations, we provide evidence that the EFR kinase domain must adopt its active conformation in order to activate BAK1 allosterically, likely by supporting αC-helix positioning in BAK1. Our results suggest a conformational toggle model for signaling, in which BAK1 first phosphorylates EFR in the activation loop to stabilize its active conformation, allowing EFR in turn to allosterically activate BAK1.<br />Competing Interests: HM, YT, ML, KB, CZ No competing interests declared<br /> (© 2023, Mühlenbeck et al.)
- Subjects :
- Allosteric Regulation
Phosphorylation
Plant Immunity
Protein Kinases metabolism
Protein Kinases genetics
Protein Kinases chemistry
Protein Serine-Threonine Kinases metabolism
Protein Serine-Threonine Kinases genetics
Protein Serine-Threonine Kinases chemistry
Signal Transduction
Arabidopsis Proteins metabolism
Arabidopsis Proteins genetics
Arabidopsis Proteins chemistry
Arabidopsis genetics
Arabidopsis metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 2050-084X
- Volume :
- 12
- Database :
- MEDLINE
- Journal :
- ELife
- Publication Type :
- Academic Journal
- Accession number :
- 39028038
- Full Text :
- https://doi.org/10.7554/eLife.92110