Area of research
Molecular Biology · Genetics
Research interest
Research interests include Genomics and Chromatin Dynamics, Epigenetics and DNA Methylation, RNA Research and Splicing, and Genomic variations and chromosomal abnormalities.
The neuronal chromatin landscape in brains from individuals with schizophrenia is linked to early fetal development
A genetically based computational drug repurposing framework for rapid identification of candidate compounds: application to COVID-19
The 3D Genome in Brain Development: An Exploration of Molecular Mechanisms and Experimental Methods
Multi-omic profiling of the developing human cerebral cortex at the single-cell level
Lineage specific 3D genome structure in the adult human brain and neurodevelopmental changes in the chromatin interactome
The neuronal chromatin landscape in adult schizophrenia brains is linked to early fetal development
Genetics of the human microglia regulome refines Alzheimer’s disease risk loci
Chromatin domain alterations linked to 3D genome organization in a large cohort of schizophrenia and bipolar disorder brains
The three-dimensional landscape of cortical chromatin accessibility in Alzheimer’s disease
Population-level variation in enhancer expression identifies disease mechanisms in the human brain
The Neuroepigenome: Implications of Chemical and Physical Modifications of Genomic DNA in Schizophrenia
Multi-omic profiling of the developing human cerebral cortex at the single cell level
Genetics of the human microglia regulome refines Alzheimer’s disease risk loci
The three-dimensional landscape of chromatin accessibility in Alzheimer’s disease
From compartments to gene loops: Functions of the 3D genome in the human brain
Population-level variation of enhancer expression identifies novel disease mechanisms in the human brain
Acetylated Chromatin Domains Link Chromosomal Organization to Cell- and Circuit-level Dysfunction in Schizophrenia and Bipolar Disorder
Posttranslational modifications of TDP-43
Genetic Variation in Long-Range Enhancers
Spatial Organization of Single mRNPs at Different Stages of the Gene Expression Pathway