Area of research
Cell Biology · Molecular Biology
Research interest
Research interests include Cellular transport and secretion, Lipid Membrane Structure and Behavior, Neuroscience and Neuropharmacology Research, and Computational Drug Discovery Methods.
ADMET-AI enables interpretable predictions of drug-induced cardiotoxicity
Structure and topography of the synaptic V-ATPase–synaptophysin complex
Beyond the MUN domain, Munc13 controls priming and depriming of synaptic vesicles
Observing isolated synaptic vesicle association and fusion ex vivo
A new method for isolation and purification of fusion-competent inhibitory synaptic vesicles
Abstract 4147781: ADMET-AI enables interpretable predictions of drug-induced cardiotoxicity
Abstract Tu100: Multiscale Drug Screening for Cardiac Fibrosis Identifies MD2 as a Therapeutic Target
Neutral lysophosphatidylcholine mediates α-synuclein-induced synaptic vesicle clustering
Inhibition of calcium-triggered secretion by hydrocarbon-stapled peptides
The Core Complex of the Ca2+-Triggered Presynaptic Fusion Machinery
Screening of Hydrocarbon-Stapled Peptides for Inhibition of Calcium-Triggered Exocytosis
A feature-guided, focused 3D signal permutation method for subtomogram averaging
Molecular Characterization of AMPA-Receptor-Containing Vesicles
The pre-synaptic fusion machinery
Molecular Mechanisms of Fast Neurotransmitter Release
Ca2+-Triggered Synaptic Vesicle Fusion Initiated by Release of Inhibition
Molecular Mechanisms of Synaptic Vesicle Priming by Munc13 and Munc18
C-terminal domain of mammalian complexin-1 localizes to highly curved membranes
Intrinsic and membrane-facilitated α-synuclein oligomerization revealed by label-free detection through solid-state nanopores