Open Access. Powered by Scholars. Published by Universities.®

Viruses Commons™

Open Access. Powered by Scholars. Published by Universities.®

Articles 1 - 8 of 8

Full-Text Articles in Viruses

Ns5-Targeting Nucleoside Analogs Inhibit Dengue Virus And Other Flaviviruses, Priyanka Bhakt, Swechha Pokharel, Yue Li, Tamanna Srivastava, Jesse Miller, Mark Dittmar, Yongqing Zhu, David Nguyen, Zachary Walter, Kasirajan Ayyanathan, Matthew Tudor, Chenguang Yu, Arnab Chatterjee, Holly Ramage, David Schultz, Sara Cherry Feb 2026

Ns5-Targeting Nucleoside Analogs Inhibit Dengue Virus And Other Flaviviruses, Priyanka Bhakt, Swechha Pokharel, Yue Li, Tamanna Srivastava, Jesse Miller, Mark Dittmar, Yongqing Zhu, David Nguyen, Zachary Walter, Kasirajan Ayyanathan, Matthew Tudor, Chenguang Yu, Arnab Chatterjee, Holly Ramage, David Schultz, Sara Cherry

Department of Microbiology and Immunology Faculty Papers

Dengue virus (DENV) is a mosquito-transmitted flavivirus that circulates globally as four distinct serotypes and poses a substantial threat to public health. There are an estimated ~96 million symptomatic infections yearly, including severe cases of dengue fever, underscoring the urgency of identifying effective therapeutics targeting all four serotypes. Nucleoside analogs, which mimic endogenous nucleosides to inhibit viral RNA replication, offer a promising strategy for broad-spectrum antiviral development. Here, we conducted a high-throughput screen of 1,101 nucleoside analogs against DENV serotype 2 (DENV2) in a panel of human cell models, including human epithelial cells, hepatocytes, and fibroblasts. Candidates that were active …


The Ptp4a3 Inhibitor Kvx-053 Reduces Severe Acute Respiratory Syndrome Coronavirus 2 (Sars-Cov-2) Virulence, Inflammation, And Development Of Acute Lung Injury In K18-Hace2 Mice, Ruben M. L. Colunga-Biancatelli, Pavel A. Solopov, Caitlin M. Woodson, Irving Coy Allen, Ivan Akhrymuk, Maryna Akhrymuk, Brittany N. Heath, Hannah M. Ivester, Tierney Day, Dan E. Austin, Kylene Kehn-Hall, John S. Lazo, Elizabeth R. Sharlow, John D. Catravas Jan 2025

The Ptp4a3 Inhibitor Kvx-053 Reduces Severe Acute Respiratory Syndrome Coronavirus 2 (Sars-Cov-2) Virulence, Inflammation, And Development Of Acute Lung Injury In K18-Hace2 Mice, Ruben M. L. Colunga-Biancatelli, Pavel A. Solopov, Caitlin M. Woodson, Irving Coy Allen, Ivan Akhrymuk, Maryna Akhrymuk, Brittany N. Heath, Hannah M. Ivester, Tierney Day, Dan E. Austin, Kylene Kehn-Hall, John S. Lazo, Elizabeth R. Sharlow, John D. Catravas

Bioelectrics Publications

Severe Acute Respiratory Syndrome Coronavirus 2 (SARS-CoV-2) has caused a global health crisis, marked by high transmissibility and virulence. Despite widespread vaccination efforts, effective treatments for COVID-19, particularly for severe cases leading to Acute Respiratory Distress Syndrome (ARDS), remain limited. This study investigates the efficacy of KVX-053, a protein tyrosine phosphatase type IVA (PTP4A3) small molecule inhibitor, in modulating SARS-CoV-2-induced inflammation and lung injury using in vitro cell models and in vivo K18-hACE2 transgenic mice. KVX-053 reduced in vitro pro-inflammatory cytokine expression, including TNFα, CXCL10, and CXCL11, without impacting viral replication or cell viability. K18-hACE2 mice treated with KVX-053 demonstrated …


Zika Virus Modulates Arthropod Histone Methylation For Its Survival In Mosquito Cells, Telvin Harrell Jan 2025

Zika Virus Modulates Arthropod Histone Methylation For Its Survival In Mosquito Cells, Telvin Harrell

Biological Sciences Faculty Publications

Zika virus (ZIKV) is a mosquito-borne human pathogen that causes mild febrile illness in adults and severe neurological complications and microcephaly in newborns. Studies have reported that ZIKV modulates methylation of human and viral RNA critical for its replication in vertebrate cells. In this study, we show that ZIKV modulates mosquito S-adenosyl methionine (SAMe)-synthase, an enzyme involved in the production of SAMe (methyl donor), and histone methylation for its survival in mosquito cells. Reverse transcription quantitative PCR followed by immunoblotting analysis showed increased amounts of SAMe synthase at both RNA and protein levels, respectively, in C6/36 mosquito cells infected with …


Intra-Decadal Increase In Globally-Spread Magallana Gigas In Southern California Estuaries, Marah L Wolfe, Chelsea M Bowers-Doerning, Anabell Espinosa, Ty Frantz, William J Hoese, Joann G Lam, Kailee R Lamp, Rachael A Lyons, Justin K Nguyen, Bryce D Keyes, Jada Smith, Holly L Suther, Meaghan Swintek, Juliann C Vannordstrand, Danielle C Zacherl Jan 2024

Intra-Decadal Increase In Globally-Spread Magallana Gigas In Southern California Estuaries, Marah L Wolfe, Chelsea M Bowers-Doerning, Anabell Espinosa, Ty Frantz, William J Hoese, Joann G Lam, Kailee R Lamp, Rachael A Lyons, Justin K Nguyen, Bryce D Keyes, Jada Smith, Holly L Suther, Meaghan Swintek, Juliann C Vannordstrand, Danielle C Zacherl

Faculty, Staff and Student Publications

Introduction and establishment of non-indigenous species (NIS) has been accelerated on a global scale by climate change. NIS Magallana gigas' (formerly Crassostrea gigas') global spread over the past several decades has been linked to warming waters, specifically during summer months, raising the specter of more spread due to predicted warming. We tracked changes in density and size distribution of M. gigas in two southern California, USA bays over the decade spanning 2010-2020 using randomly placed quadrats across multiple intertidal habitats (e.g., cobble, seawalls, riprap) and documented density increases by 2.2 to 32.8 times at 7 of the 8 sites surveyed …


Promiscuous Feeding Across Multiple Honey Bee Hosts Amplifies The Vectorial Capacity Of Varroa Destructor, Zachary S. Lamas, Serhat Solmaz, Eugene V. Ryabov, Joseph Mowery, Matthew Heermann, Daniel Sonenshine, Jay D. Evans, David J. Hawthorne Jan 2023

Promiscuous Feeding Across Multiple Honey Bee Hosts Amplifies The Vectorial Capacity Of Varroa Destructor, Zachary S. Lamas, Serhat Solmaz, Eugene V. Ryabov, Joseph Mowery, Matthew Heermann, Daniel Sonenshine, Jay D. Evans, David J. Hawthorne

Biological Sciences Faculty Publications

Varroa destructor is a cosmopolitan pest and leading cause of colony loss of the European honey bee. Historically described as a competent vector of honey bee viruses, this arthropod vector is the cause of a global pandemic of Deformed wing virus, now endemic in honeybee populations in all Varroa-infested regions. Our work shows that viral spread is driven by Varroa actively switching from one adult bee to another as they feed. Assays using fluorescent microspheres were used to indicate the movement of fluids in both directions between host and vector when Varroa feed. Therefore, Varroa could be in either …


Role Of Protein Charge Density On Hepatitis B Virus Capsid Formation, Xinyu Sun, Dong Li, Zhaoshuai Wang, Panchao Yin, Rundong Hu, Rundong Hu, Hui Li, Qiao Liu, Yunyi Gao, Baiping Ren, Jie Zheng, Yinan Wei, Tianbo Liu Apr 2018

Role Of Protein Charge Density On Hepatitis B Virus Capsid Formation, Xinyu Sun, Dong Li, Zhaoshuai Wang, Panchao Yin, Rundong Hu, Rundong Hu, Hui Li, Qiao Liu, Yunyi Gao, Baiping Ren, Jie Zheng, Yinan Wei, Tianbo Liu

Chemistry Faculty Publications

The role of electrostatic interactions in the viral capsid assembly process was studied by comparing the assembly process of a truncated hepatitis B virus capsid protein Cp149 with its mutant protein D2N/D4N, which has the same conformational structure but four fewer charges per dimer. The capsid protein self-assembly was investigated under a wide range of protein surface charge densities by changing the protein concentration, buffer pH, and solution ionic strength. Lowering the protein charge density favored the capsid formation. However, lowering charge beyond a certain point resulted in capsid aggregation and precipitation. Interestingly, both the wild-type and D2N/D4N mutant displayed …


The Family Rhabdoviridae: Mono- And Bipartite Negative-Sense Rna Viruses With Diverse Genome Organization And Common Evolutionary Origins, Ralf G. Dietzgen, Hideki Kondo, Michael M. Goodin, Gael Kurath, Nikos Vasilakis Jan 2017

The Family Rhabdoviridae: Mono- And Bipartite Negative-Sense Rna Viruses With Diverse Genome Organization And Common Evolutionary Origins, Ralf G. Dietzgen, Hideki Kondo, Michael M. Goodin, Gael Kurath, Nikos Vasilakis

Plant Pathology Faculty Publications

The family Rhabdoviridae consists of mostly enveloped, bullet-shaped or bacilliform viruses with a negative-sense, single-stranded RNA genome that infect vertebrates, invertebrates or plants. This ecological diversity is reflected by the diversity and complexity of their genomes. Five canonical structural protein genes are conserved in all rhabdoviruses, but may be overprinted, overlapped or interspersed with several novel and diverse accessory genes. This review gives an overview of the characteristics and diversity of rhabdoviruses, their taxonomic classification, replication mechanism, properties of classical rhabdoviruses such as rabies virus and rhabdoviruses with complex genomes, rhabdoviruses infecting aquatic species, and plant rhabdoviruses with both mono- …


Murine Gammaherpesvirus 68 Lana Acts On Terminal Repeat Dna To Mediate Episome Persistence, Aline C. Habison, Chantal Beauchemin, J. Pedro Simas, Edward J. Usherwood Aug 2012

Murine Gammaherpesvirus 68 Lana Acts On Terminal Repeat Dna To Mediate Episome Persistence, Aline C. Habison, Chantal Beauchemin, J. Pedro Simas, Edward J. Usherwood

Dartmouth Scholarship

Murine gammaherpesvirus 68 (MHV68) ORF73 (mLANA) has sequence homology to Kaposi’s sarcoma-associated herpesvirus (KSHV) latency-associated nuclear antigen (LANA). LANA acts on the KSHV terminal repeat (TR) elements to mediate KSHV episome maintenance. Disruption of mLANA expression severely reduces the ability of MHV68 to establish latent infection in mice, consistent with the possibility that mLANA mediates episome persistence. Here we assess the roles of mLANA and MHV68 TR (mTR) elements in episome persistence. mTR-associated DNA persisted as an episome in latently MHV68-infected tumor cells, demonstrating that the mTR elements can serve as a cis-acting element for MHV68 episome maintenance. In some …