Target intelligence / Profile preview

Arabidopsis histidine kinase 3 (AHK3) (AHK3)

Target
AHK3
Molecular classification
Receptor, Histidine kinase, Two-component system protein, Transmembrane receptor
01

Overview

Arabidopsis histidine kinase 3 (AHK3) is a primary transmembrane receptor in the model plant Arabidopsis thaliana that perceives cytokinins, a group of hormones vital for plant growth and development [1, 2]. It consists of an extracellular CHASE domain for ligand binding, a cytoplasmic histidine kinase domain, and a receiver domain that facilitates a multi-step phosphorelay signaling cascade [1, 4]. AHK3 plays a predominant role in regulating the maintenance of the shoot apical meristem and is the principal receptor responsible for delaying leaf senescence [2, 3]. Beyond development, AHK3 is involved in the plant's response to environmental stressors, including drought, salinity, and cold, by modulating the expression of type-A Arabidopsis response regulators [3, 4]. While not a target for human clinical therapy, AHK3 is a major focus in agricultural biotechnology for developing crops with improved yield and enhanced tolerance to climate-related stress [2, 4]. The receptor interacts with various natural and synthetic cytokinins, such as trans-zeatin and thidiazuron, which act as agonists to trigger downstream signaling [1, 2].

Other names
Histidine kinase 3CRE2Cytokinin Response 2WOL2Wooden Leg 2AT1G27320
02

Mechanism of action

Cytokinin binding to the extracellular CHASE domain induces a conformational change that activates the intracellular histidine kinase domain, leading to autophosphorylation and a subsequent multi-step phosphorelay to Arabidopsis response regulators (ARRs).

03

Biological functions

Signal transductionCell cycleShoot developmentLeaf senescenceVascular developmentAbiotic stress response
04

Disease associations

Abiotic stress susceptibilityPlant pathogen resistancePremature leaf senescence
05

Safety considerations

Ecological impact on non-target plant speciesDisruption of endogenous plant hormonal balancePotential for altered plant-microbe symbiotic interactionsEnvironmental persistence of synthetic cytokinin analogs
06

Interacting drugs

trans-Zeatin

5 more in the full profile.

07

Biomarkers

ARR5 expression levelsARR7 expression levelsChlorophyll retentionShoot apical meristem size

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