Area of research
Public Health, Environmental and Occupational Health · Immunology
Research interest
Research interests include Malaria Research and Control, Invertebrate Immune Response Mechanisms, vaccines and immunoinformatics approaches, and Mosquito-borne diseases and control.
Multi-omics analysis reveals distinct gene regulatory mechanisms between primary and organoid-derived human hepatocytes.
Vesicle adaptors in malaria parasites show conservation and flexibility of protein sorting machinery
CUT&Tag and DiBioCUT&Tag enable investigation of the AT-rich epigenome of Plasmodium falciparum from low-input samples.
Unravelling malaria latency: parasite intrinsic and environmental factors influencing dormant liver stages.
The <i>Plasmodium falciparum</i> histone methyltransferase PfSET10 is dispensable for the regulation of antigenic variation and gene expression in blood stage parasites
CUT&Tag and DiBioCUT&Tag enable investigation of the AT-rich and dynamic epigenome of
<i>Plasmodium falciparum</i>
from low input samples
A genome-wide map of DNA replication at single-molecule resolution in the malaria parasite Plasmodium falciparum.
Epigenetically regulated RNA-binding proteins signify malaria hypnozoite dormancy.
The troubled puberty of malaria parasites.
Human branching cholangiocyte organoids recapitulate functional bile duct formation
Gene-by-gene screen of the unknown proteins encoded on
<i>P. falciparum</i>
chromosome 3
The ApiAP2 factor PfAP2-HC is an integral component of heterochromatin in the malaria parasite <i>Plasmodium falciparum</i>.
Cholangiocyte organoids from human bile retain a local phenotype and can repopulate bile ducts in vitro.
An unusual trafficking domain in MSRP6 defines a complex needed for Maurer’s clefts anchoring and maintenance in
<i>P. falciparum</i>
infected red blood cells
A Kelch13-defined endocytosis pathway mediates artemisinin resistance in malaria parasites
Gene knockdown in malaria parasites via non-canonical RNAi.
The ApiAP2 factor PfAP2-HC is an integral component of heterochromatin in the malaria parasite <i>Plasmodium falciparum</i>
Epigenetic reader complexes of the human malaria parasite, Plasmodium falciparum.
What functional genomics has taught us about transcriptional regulation in malaria parasites.
Epigenetic regulation underlying <i>Plasmodium berghei</i> gene expression during its developmental transition from host to vector
Comparative Heterochromatin Profiling Reveals Conserved and Unique Epigenome Signatures Linked to Adaptation and Development of Malaria Parasites
Gonad Differentiation in Zebrafish Is Regulated by the Canonical Wnt Signaling Pathway1
Polygenic Sex Determination System in Zebrafish