Area of research
Public Health, Environmental and Occupational Health · Virology
Research interest
Research interests include Biology, Virology, Allosteric regulation, Dengue virus, Viral replication, and NS3.
Defining neutralization and allostery by antibodies against COVID-19 variants
SARS-CoV-2 S protein:ACE2 interaction reveals novel allosteric targets
Plasmodium vivax binds host CD98hc (SLC3A2) to enter immature red blood cells
Non-nucleoside Inhibitors of Zika Virus RNA-Dependent RNA Polymerase
Pyruvate kinase from Plasmodium falciparum: Structural and kinetic insights into the allosteric mechanism
Structure of the human metapneumovirus polymerase phosphoprotein complex
Targeting the Bacterial Epitranscriptome for Antibiotic Development: Discovery of Novel tRNA-(N<sup>1</sup>G37) Methyltransferase (TrmD) Inhibitors
Pyruvate Kinase Regulates the Pentose-Phosphate Pathway in Response to Hypoxia in Mycobacterium tuberculosis
NS3 helicase from dengue virus specifically recognizes viral RNA sequence to ensure optimal replication
Allosteric pyruvate kinase-based “logic gate” synergistically senses energy and sugar levels in Mycobacterium tuberculosis
The C-terminal 18 Amino Acid Region of Dengue Virus NS5 Regulates its Subcellular Localization and Contains a Conserved Arginine Residue Essential for Infectious Virus Production
Methylation at position 32 of tRNA catalyzed by TrmJ alters oxidative stress response in<i>Pseudomonas aeruginosa</i>
A Crystal Structure of the Dengue Virus NS5 Protein Reveals a Novel Inter-domain Interface Essential for Protein Flexibility and Virus Replication
Structure-Guided Design of an Anti-dengue Antibody Directed to a Non-immunodominant Epitope
Molecular basis for specific viral RNA recognition and 2′-O-ribose methylation by the dengue virus nonstructural protein 5 (NS5)
The C-terminal 50 Amino Acid Residues of Dengue NS3 Protein Are Important for NS3-NS5 Interaction and Viral Replication
Structural Insights into the Regulatory Mechanism of the Response Regulator RocR from Pseudomonas aeruginosa in Cyclic Di-GMP Signaling