Area of research
Molecular Biology · Cellular and Molecular Neuroscience
Research interest
Research interests include Receptor, Chemistry, G protein-coupled receptor, Stereochemistry, Agonist, and Histamine.
High-Affinity and Proteolytically Stable Peptidic Fluorescent NTS<sub>1</sub>R Ligands
Illuminating Neuropeptide Y Y<sub>4</sub> Receptor Binding: Fluorescent Cyclic Peptides with Subnanomolar Binding Affinity as Novel Molecular Tools
Activation of Multiple G Protein Pathways to Characterize the Five Dopamine Receptor Subtypes Using Bioluminescence Technology
Endogenous Promotor-Driven Split Nanoluciferase Biosensor for Assessing G Protein Recruitment
Monitoring the Reversibility of GPCR Signaling by Combining Photochromic Ligands with Label‐free Impedance Analysis
Monitoring the Reversibility of GPCR Signaling by Combining Photochromic Ligands with Label‐free Impedance Analysis
Stereochemistry-Driven Interactions of α,γ-Peptide Ligands with the Neuropeptide Y Y<sub>4</sub>-Receptor
Cardiac Effects of Novel Histamine H2 Receptor Agonists
Specific Engineered G Protein Coupling to Histamine Receptors Revealed from Cellular Assay Experiments and Accelerated Molecular Dynamics Simulations
Dibenzodiazepinone-type muscarinic receptor antagonists conjugated to basic peptides: Impact of the linker moiety and unnatural amino acids on M2R selectivity
A Dynamic, Split-Luciferase-Based Mini-G Protein Sensor to Functionally Characterize Ligands at All Four Histamine Receptor Subtypes
Structural modifications in the distal, regulatory region of histamine H3 receptor antagonists leading to the identification of a potent anti-obesity agent
Discovery of a G Protein-Biased Radioligand for the Histamine H<sub>2</sub> Receptor with Reversible Binding Properties