Area of research
Molecular Biology · Plant Science
Research interest
Research interests include Chromosomal and Genetic Variations, Genomic variations and chromosomal abnormalities, Single-cell and spatial transcriptomics, and Epigenetics and DNA Methylation.
Long interspersed nuclear elements safeguard neural progenitors from precocious differentiation
Control-independent mosaic single nucleotide variant detection with DeepMosaic
Genomic data resources of the Brain Somatic Mosaicism Network for neuropsychiatric diseases
Author Correction: Machine learning reveals bilateral distribution of somatic L1 insertions in human neurons and glia
Author Correction: The landscape of somatic mutation in cerebral cortex of autistic and neurotypical individuals revealed by ultra-deep whole-genome sequencing
Analysis of somatic mutations in 131 human brains reveals aging-associated hypermutability
Somatic mosaicism reveals clonal distributions of neocortical development
Reduced synaptic activity and dysregulated extracellular matrix pathways in midbrain neurons from Parkinson’s disease patients
Human-specific regulation of neural maturation identified by cross-primate transcriptomics
The role of retrotransposable elements in ageing and age-associated diseases
The landscape of somatic mutation in cerebral cortex of autistic and neurotypical individuals revealed by ultra-deep whole-genome sequencing
Incorporation of a nucleoside analog maps genome repair sites in postmitotic human neurons
Deficient LEF1 expression is associated with lithium resistance and hyperexcitability in neurons derived from bipolar disorder patients
Machine learning reveals bilateral distribution of somatic L1 insertions in human neurons and glia
Loss of the neural-specific BAF subunit ACTL6B relieves repression of early response genes and causes recessive autism
Species-specific maturation profiles of human, chimpanzee and bonobo neural cells
Using single nuclei for RNA-seq to capture the transcriptome of postmortem neurons
Sequencing, identification and mapping of primed L1 elements (SIMPLE) reveals significant variation in full length L1 elements between individuals
KLF4 N-Terminal Variance Modulates Induced Reprogramming to Pluripotency