Area of research
Cellular and Molecular Neuroscience · Developmental Neuroscience
Research interest
Research interests include Neurogenesis and neuroplasticity mechanisms, Receptor Mechanisms and Signaling, Zebrafish Biomedical Research Applications, and Neuropeptides and Animal Physiology.
Astrocyte growth is driven by the Tre1/S1pr1 phospholipid-binding G protein-coupled receptor
Behaviorally consequential astrocytic regulation of neural circuits
Live-imaging of astrocyte morphogenesis and function in zebrafish neural circuits
Structural basis for adhesion G protein-coupled receptor Gpr126 function
GAIN domain–mediated cleavage is required for activation of G protein–coupled receptor 56 (GPR56) by its natural ligands and a small-molecule agonist
Myelinating Schwann cells ensheath multiple axons in the absence of E3 ligase component Fbxw7
The expanding functional roles and signaling mechanisms of adhesion G protein–coupled receptors
Structural Basis for Regulation of GPR56/ADGRG1 by Its Alternatively Spliced Extracellular Domains
International Union of Basic and Clinical Pharmacology. XCIV. Adhesion G Protein–Coupled Receptors
The Adhesion GPCR GPR126 Has Distinct, Domain-Dependent Functions in Schwann Cell Development Mediated by Interaction with Laminin-211
New functions and signaling mechanisms for the class of adhesion G protein–coupled receptors
Organ-specific function of adhesion G protein-coupled receptor GPR126 is domain-dependent
Dissecting signaling and functions of adhesion G protein–coupled receptors
The NF2 tumor suppressor regulates microtubule-based vesicle trafficking via a novel Rac, MLK and p38SAPK pathway