Structural requirements of KAI2 ligands for activation of signal transduction

R Rito Kushihara (Department of Agriculture, Graduate School of Science and Technology, Shizuoka University) A Akihiko Nakamura (Department of Applied Life Sciences, Faculty of Agriculture, Shizuoka University) K Katsuki Takegami (Department of Agriculture, Graduate School of Science and Technology, Shizuoka University) Y Yoshiya Seto (Department of Molecular and Chemical Life Sciences, Graduate School of Life Sciences, Tohoku University) Y Yusuke Kato (Laboratory of Plant Chemical Regulation, Department of Agricultural Chemistry, School of Agriculture, Meiji University) H Hideo Dohra (Research Institute of Green Science and Technology, Shizuoka University) T Toshiyuki Ohnishi (Department of Applied Life Sciences, Faculty of Agriculture, Shizuoka University) Y Yasushi Todoroki (Department of Applied Life Sciences, Faculty of Agriculture, Shizuoka University) J Jun Takeuchi (Department of Applied Life Sciences, Faculty of Agriculture, Shizuoka University)

Abstract

Karrikin Insensitive 2 (KAI2), identified as the receptor protein for karrikins (KARs), which are smoke-derived seed germination stimulants, belongs to the same α/β-hydrolase family as D14, the receptor for strigolactones (SLs). KAI2 is believed to recognize an endogenous butenolide (KAI2 ligand; KL), but the identity of this compound remains unknown. Recent studies have suggested that ligand hydrolysis by KAI2 is a prerequisite for receptor activation to induce interaction with the target proteins, similar to the situation with D14. However, direct experimental evidence has been lacking. Here, we designed KAI2 ligands (carba-dMGers) whose butenolide rings were modified so that they cannot be hydrolyzed or dissociated from the original ligand molecule by KAI2, by structurally modifying dMGer, a potent and selective KAI2 agonist. Using these dMGer analogs, we found that the strongly bioactive ligand, (+)-dMGer, was hydrolyzed by KAI2 at a lower enzymatic rate compared with the weakly bioactive ligand, (+)-1′-carba-dMGer, and the hydrolyzed butenolide ring of (+)-dMGer was transiently trapped in the catalytic pocket of KAI2. Additionally, structural analysis revealed that (+)-6′-carba-dMGer bound to the catalytic pocket of KAI2 in the unhydrolyzed state. However, this binding did not induce the interaction between KAI2 and SMAX1, indicating that ligand binding to the receptor alone was not sufficient for KAI2 signaling. This study showed experimental data from a ligand structure–activity study that ligand hydrolysis and subsequent covalent adduct formation with the catalytic triad plays a key role in KAI2 activation, providing insight into the chemical structure of the Arabidopsis KL.

Article Details

Volume / Issue Vol. 122, Issue 8
Published February 25, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (9)

R

Rito Kushihara

Department of Agriculture, Graduate School of Science and Technology, Shizuoka University

A

Akihiko Nakamura

Department of Applied Life Sciences, Faculty of Agriculture, Shizuoka University

K

Katsuki Takegami

Department of Agriculture, Graduate School of Science and Technology, Shizuoka University

Y

Yoshiya Seto

Department of Molecular and Chemical Life Sciences, Graduate School of Life Sciences, Tohoku University

Y

Yusuke Kato

Laboratory of Plant Chemical Regulation, Department of Agricultural Chemistry, School of Agriculture, Meiji University

H

Hideo Dohra

Research Institute of Green Science and Technology, Shizuoka University

T

Toshiyuki Ohnishi

Department of Applied Life Sciences, Faculty of Agriculture, Shizuoka University

Y

Yasushi Todoroki

Department of Applied Life Sciences, Faculty of Agriculture, Shizuoka University

J

Jun Takeuchi

Department of Applied Life Sciences, Faculty of Agriculture, Shizuoka University