Header Logo

Search Result Details

This page shows the details of why an item matched the keywords from your search.
One or more keywords matched the following properties of Somasundaran, Mohan
PropertyValue
overview

Our labs have a vibrant culture that supports academic research.  Our multidisciplinary research team focuses on virus-cell interactions and the discovery of antiviral drug candidates. We use Influenza virus and SARS-CoV2 as model systems to study virus entry mechanisms and neutralization, to elucidate the roles of HA-mediated and Spike-mediated membrane fusion, and to develop the next generation of viral entry inhibitors and small molecule antivirals. We utilize techniques in Virology, Molecular Biology, Cell Biology, Structural Biology, Biochemistry, Cryo EM and Cryo ET to achieve our goals. 

Influenza A virus (IAV) and SARS-CoV2 are causative agents of respiratory infections associated with high morbidity and mortality worldwide. Both pathogens pose a public health threat for which currently available vaccines are not always completely protective. Combating rapidly evolving pathogens evading immune pressures and resisting antivirals, along with emerging new human pathogens underscore the urgent need for defining the key pathways in virus-host cell interactions, entry and replication. Our studies focus on molecular virology, molecular biology, and structural biology of HIV, Influenza and SARS-CoV2 entry, neutralization, replication and inhibitors.  We use several experimental models, including in vitro cell culture systems, structure-based drug design, computational approaches and Cryo EM & ET, to study disease pathogenesis.  Our goal is to identify primary targets in virus attachment, entry and replication, and to quantitatively characterize virion morphology and glycoprotein density in its native state that can be used to design therapeutic strategies as well as next generation antivirals to thwart infection and disease progression. 

One or more keywords matched the following items that are connected to Somasundaran, Mohan
Item TypeName
Academic Article Development and characterization of a severe acute respiratory syndrome-associated coronavirus-neutralizing human monoclonal antibody that provides effective immunoprophylaxis in mice.
Academic Article Angiotensin-converting enzyme 2 is a functional receptor for the SARS coronavirus.
Concept Hemagglutinin Glycoproteins, Influenza Virus
Concept Membrane Glycoproteins
Academic Article High Epstein-Barr Virus Load and Genomic Diversity Are Associated with Generation of gp350-Specific Neutralizing Antibodies following Acute Infectious Mononucleosis.
Academic Article HIV-1 R5 Macrophage-Tropic Envelope Glycoprotein Trimers Bind CD4 with High Affinity, while the CD4 Binding Site on Non-macrophage-tropic, T-Tropic R5 Envelopes Is Occluded.
Academic Article Mutations in Influenza A Virus Neuraminidase and Hemagglutinin Confer Resistance against a Broadly Neutralizing Hemagglutinin Stem Antibody.
Academic Article Unique structural solution from a VH3-30 antibody targeting the hemagglutinin stem of influenza A viruses.
Concept Spike Glycoprotein, Coronavirus
Academic Article Quantitative structural analysis of influenza virus by cryo-electron tomography and convolutional neural networks.
Academic Article A Newly Engineered A549 Cell Line Expressing ACE2 and TMPRSS2 Is Highly Permissive to SARS-CoV-2, Including the Delta and Omicron Variants.
Academic Article Virion-associated influenza hemagglutinin clusters upon sialic acid binding visualized by cryoelectron tomography.
Search Criteria
  • Glycoproteins