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PMID: 28949512 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Research Support, Non-U.S. Gov't

A Rationally Designed Agonist Defines Subfamily IIIA Abscisic Acid Receptors As Critical Targets for Manipulating Transpiration.

ACS chemical biology ·Vol. 12 ·No. 11 ·2017-00-17 ·Pages 2842-2848

Vaidya AS, Peterson FC, Yarmolinsky D, Merilo E, Verstraeten I, Park SY, Elzinga D, Kaundal A, Helander J, Lozano-Juste J, Otani M, Wu K, Jensen DR, Kollist H, Volkman BF, Cutler SR

Abstract

Increasing drought and diminishing freshwater supplies have stimulated interest in developing small molecules that can be used to control transpiration. Receptors for the plant hormone abscisic acid (ABA) have emerged as key targets for this application, because ABA controls the apertures of stomata, which in turn regulate transpiration. Here, we describe the rational design of cyanabactin, an ABA receptor agonist that preferentially activates Pyrabactin Resistance 1 (PYR1) with low nanomolar potency. A 1.63 Å X-ray crystallographic structure of cyanabactin in complex with PYR1 illustrates that cyanabactin's arylnitrile mimics ABA's cyclohexenone oxygen and engages the tryptophan lock, a key component required to stabilize activated receptors. Further, its sulfonamide and 4-methylbenzyl substructures mimic ABA's carboxylate and C6 methyl groups, respectively. Isothermal titration calorimetry measurements show that cyanabactin's compact structure provides ready access to high ligand efficiency on a relatively simple scaffold. Cyanabactin treatments reduce Arabidopsis whole-plant stomatal conductance and activate multiple ABA responses, demonstrating that its in vitro potency translates to ABA-like activity in vivo. Genetic analyses show that the effects of cyanabactin, and the previously identified agonist quinabactin, can be abolished by the genetic removal of PYR1 and PYL1, which form subclade A within the dimeric subfamily III receptors. Thus, cyanabactin is a potent and selective agonist with a wide spectrum of ABA-like activities that defines subfamily IIIA receptors as key target sites for manipulating transpiration.

MeSH Terms
Abscisic Acid/metabolism Agrochemicals/chemistry,metabolism Arabidopsis/drug effects,physiology Arabidopsis Proteins/agonists,chemistry,metabolism Crystallography, X-Ray Droughts Ligands Membrane Transport Proteins/agonists,chemistry,metabolism Models, Molecular Naphthalenes/chemistry,metabolism Plant Stomata/drug effects,physiology Small Molecule Libraries/chemistry,metabolism Sulfonamides/chemistry,metabolism
Chemicals
Agrochemicals Arabidopsis Proteins Ligands Membrane Transport Proteins Naphthalenes Pyr1 protein, Arabidopsis Small Molecule Libraries Sulfonamides cyanabactin pyrabactin Abscisic Acid
Authors & Affiliations
16 authors, click to expand affiliations / ORCID
Vaidya Aditya S
Department of Botany and Plant Sciences, Institute of Integrative Genome Biology, University of California , Riverside, California 92521, United States.
Peterson Francis C
Department of Biochemistry, Medical College of Wisconsin , Milwaukee, Wisconsin 53226, United States.
Yarmolinsky Dmitry
Institute of Technology, University of Tartu , Nooruse 1, Tartu 50411, Estonia.
Merilo Ebe
Institute of Technology, University of Tartu , Nooruse 1, Tartu 50411, Estonia.
Verstraeten Inge
Park Sang-Youl
Department of Botany and Plant Sciences, Institute of Integrative Genome Biology, University of California , Riverside, California 92521, United States.
Elzinga Dezi
Department of Botany and Plant Sciences, Institute of Integrative Genome Biology, University of California , Riverside, California 92521, United States.
Kaundal Amita
Department of Botany and Plant Sciences, Institute of Integrative Genome Biology, University of California , Riverside, California 92521, United States.
Helander Jonathan
Department of Botany and Plant Sciences, Institute of Integrative Genome Biology, University of California , Riverside, California 92521, United States.
Lozano-Juste Jorge ORCID
Otani Masato
Department of Botany and Plant Sciences, Institute of Integrative Genome Biology, University of California , Riverside, California 92521, United States.
Wu Kevin
Department of Botany and Plant Sciences, Institute of Integrative Genome Biology, University of California , Riverside, California 92521, United States.
Jensen Davin R
Department of Biochemistry, Medical College of Wisconsin , Milwaukee, Wisconsin 53226, United States.
Kollist Hannes
Institute of Technology, University of Tartu , Nooruse 1, Tartu 50411, Estonia.
Volkman Brian F
Department of Biochemistry, Medical College of Wisconsin , Milwaukee, Wisconsin 53226, United States.
Cutler Sean R ORCID
Department of Botany and Plant Sciences, Institute of Integrative Genome Biology, University of California , Riverside, California 92521, United States.
Article Info
Journal
ACS chemical biology
Abbr.
ACS Chem Biol
ISSN
1554-8937
Published
2017-00-17
Epub
2017-00-18
Pages
2842-2848
Language
English
Region
United States
NLM ID
101282906
Subset
IM
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