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

Veterinary Infectious Diseases Commons

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

Articles 1 - 2 of 2

Full-Text Articles in Veterinary Infectious Diseases

New World Mammarenaviral Hemorrhagic Fever Virus Determinants Of Infection And Disease, Brady T. Hickerson Aug 2020

New World Mammarenaviral Hemorrhagic Fever Virus Determinants Of Infection And Disease, Brady T. Hickerson

All Graduate Theses and Dissertations, Spring 1920 to Summer 2023

Several New World mammarenaviruses (NWM) are able to cause life-threatening hemorrhagic disease in humans. These agents use human transferrin receptor 1 (hTfR1), the main protein involved in cellular uptake of iron, to infect cells. Furthermore, use of hTfR1 correlates with the ability of these viruses to cause severe disease in humans. The most prevalent pathogenic NWM is Jun√≠n virus (JUNV), which is the etiological agent of Argentine hemorrhagic fever (AHF).The pathogenesis of AHF is poorly understood. A cardinal feature of severe cases of AHF is a prolonged increase of serum interferon-a (IFN-a) concentration. This increase is hypothesized to play a …


Functional Genomics And Immunologic Tools: The Impact Of Viral And Host Genetic Variations On The Outcome Of Zika Virus Infection, Sang-Im Yun, Byung-Hak Song, Jordan C. Frank, Justin G. Julander, Aaron L. Olsen, Irina A. Polejaeva, Christopher J. Davies, Kenneth L. White, Young-Min Lee Aug 2018

Functional Genomics And Immunologic Tools: The Impact Of Viral And Host Genetic Variations On The Outcome Of Zika Virus Infection, Sang-Im Yun, Byung-Hak Song, Jordan C. Frank, Justin G. Julander, Aaron L. Olsen, Irina A. Polejaeva, Christopher J. Davies, Kenneth L. White, Young-Min Lee

Animal, Dairy, and Veterinary Science Faculty Publications

Zika virus (ZIKV) causes no-to-mild symptoms or severe neurological disorders. To investigate the importance of viral and host genetic variations in determining ZIKV infection outcomes, we created three full-length infectious cDNA clones as bacterial artificial chromosomes for each of three spatiotemporally distinct and genetically divergent ZIKVs: MR-766 (Uganda, 1947), P6-740 (Malaysia, 1966), and PRVABC-59 (Puerto Rico, 2015). Using the three molecularly cloned ZIKVs, together with 13 ZIKV region-specific polyclonal antibodies covering nearly the entire viral protein-coding region, we made three conceptual advances: (i) We created a comprehensive genome-wide portrait of ZIKV gene products and their related species, with several previously …