Area of research
Cellular and Molecular Neuroscience · Molecular Biology
Research interest
Research interests include Neuroscience and Neuropharmacology Research, Neurotransmitter Receptor Influence on Behavior, Ion channel regulation and function, and Receptor Mechanisms and Signaling.
L-type calcium channels and neuropsychiatric diseases: Insights into genetic risk variant-associated genomic regulation and impact on brain development
Sex differences in the medial prefrontal cortical glutamate system
Novel Insights into the Role of Voltage-Gated Calcium Channel Genes in Psychiatric Disorders
Dual-process brain mitochondria isolation preserves function and clarifies protein composition
A Machine Learning Approach to Predicting Autism Risk Genes: Validation of Known Genes and Discovery of New Candidates
Endocannabinoid genetic variation enhances vulnerability to THC reward in adolescent female mice
Ligand-mediated protein degradation reveals functional conservation among sequence variants of the CUL4-type E3 ligase substrate receptor cereblon
From Gene to Behavior: L-Type Calcium Channel Mechanisms Underlying Neuropsychiatric Symptoms
Energy deficit in parvalbumin neurons leads to circuit dysfunction, impaired sensory gating and social disability
Amyloid Precursor Protein (APP) May Act as a Substrate and a Recognition Unit for CRL4CRBN and Stub1 E3 Ligases Facilitating Ubiquitination of Proteins Involved in Presynaptic Functions and Neurodegeneration
The Neuropsychiatric Disease-Associated Gene<i>cacna1c</i>Mediates Survival of Young Hippocampal Neurons
Sensory-Derived Glutamate Regulates Presynaptic Inhibitory Terminals in Mouse Spinal Cord
Ca<sub>v</sub>1.2 and Ca<sub>v</sub>1.3 L-type calcium channels regulate dopaminergic firing activity in the mouse ventral tegmental area
Markers of Celiac Disease and Gluten Sensitivity in Children with Autism
Forebrain elimination of cacna1c mediates anxiety-like behavior in mice