Area of research
Molecular Biology · Reproductive Medicine
Research interest
Research interests include Receptor Mechanisms and Signaling, Single-cell and spatial transcriptomics, Hypothalamic control of reproductive hormones, and interferon and immune responses.
Heterogeneous Macrophage Activation in Acute Skeletal Muscle Sterile Injury and mdx5cv Model of Muscular Dystrophy
Temporal dynamics of the multi-omic response to endurance exercise training
Physiological Adaptations to Progressive Endurance Exercise Training in Adult and Aged Rats: Insights from the Molecular Transducers of Physical Activity Consortium (MoTrPAC)
Molecular Transducers of Physical Activity Consortium (MoTrPAC): human studies design and protocol
Mapping disease regulatory circuits at cell-type resolution from single-cell multiomics data
Single nucleus transcriptome and chromatin accessibility of postmortem human pituitaries reveal diverse stem cell regulatory mechanisms
Skeletal muscle transcriptome response to a bout of endurance exercise in physically active and sedentary older adults
Diverse effector and regulatory functions of fibro/adipogenic progenitors during skeletal muscle fibrosis in muscular dystrophy
Pre-infection antiviral innate immunity contributes to sex differences in SARS-CoV-2 infection
Single nucleus multi-omics regulatory landscape of the murine pituitary
TGFBR3L is an inhibin B co-receptor that regulates female fertility
Endocrinology of a Single Cell: Tools and Insights
Single-cell transcriptional profiles in human skeletal muscle
Heterogeneous origins and functions of mouse skeletal muscle-resident macrophages
Rehabilitative Impact of Exercise Training on Human Skeletal Muscle Transcriptional Programs in Parkinson’s Disease
Innate Immune Response to Influenza Virus at Single-Cell Resolution in Human Epithelial Cells Revealed Paracrine Induction of Interferon Lambda 1
Skeletal muscle transcriptional networks linked to type I myofiber grouping in Parkinson’s disease
Cytogenetic, Genomic, and Functional Characterization of Pituitary Gonadotrope Cell Lines
Tellurium notebooks—An environment for reproducible dynamical modeling in systems biology
Regulatory Architecture of the LβT2 Gonadotrope Cell Underlying the Response to Gonadotropin-Releasing Hormone
Single-cell stabilization method identifies gonadotrope transcriptional dynamics and pituitary cell type heterogeneity
Modeling and high-throughput experimental data uncover the mechanisms underlying Fshb gene sensitivity to gonadotropin-releasing hormone pulse frequency
RIPK3 Activates Parallel Pathways of MLKL-Driven Necroptosis and FADD-Mediated Apoptosis to Protect against Influenza A Virus
Cross-signaling in metabotropic glutamate 2 and serotonin 2A receptor heteromers in mammalian cells
Understanding multicellular function and disease with human tissue-specific networks
Homer1 Alternative Splicing Is Regulated by Gonadotropin-Releasing Hormone and Modulates Gonadotropin Gene Expression
Reconstruction of regulatory networks through temporal enrichment profiling and its application to H1N1 influenza viral infection
Cytokine Response Is Determined by Duration of Receptor and Signal Transducers and Activators of Transcription 3 (STAT3) Activation
Identification of Three Residues Essential for 5-Hydroxytryptamine 2A-Metabotropic Glutamate 2 (5-HT2A·mGlu2) Receptor Heteromerization and Its Psychoactive Behavioral Function