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Effects of phosphorylation of herpes simplex virus 1 envelope glycoprotein B by Us3 kinase in vivo and in vitro. | LitMetric

Effects of phosphorylation of herpes simplex virus 1 envelope glycoprotein B by Us3 kinase in vivo and in vitro.

J Virol

Department of Infectious Disease Control, International Research Center for Infectious, The University of Tokyo, Tokyo 108-8639, Japan.

Published: January 2010

AI Article Synopsis

  • * Replacing gB Thr-887 with alanine significantly decreased HSV-1 replication and related diseases in mice, indicating the importance of this phosphorylation.
  • * A monoclonal antibody was created to study phosphorylated gB Thr-887, revealing that this modification affects how gB is positioned on the surface of infected cells.

Article Abstract

We recently reported that the herpes simplex virus 1 (HSV-1) Us3 protein kinase phosphorylates threonine at position 887 (Thr-887) in the cytoplasmic tail of envelope glycoprotein B (gB) (A. Kato, J. Arii, I. Shiratori, H. Akashi, H. Arase, and Y. Kawaguchi, J. Virol. 83:250-261, 2009; T. Wisner, C. C. Wright, A. Kato, Y. Kawaguchi, F. Mou, J. D. Baines, R. J. Roller and D. C. Johnson, J. Virol. 83:3115-3126, 2009). In the studies reported here, we examined the effect(s) of this phosphorylation on viral replication and pathogenesis in vivo and present data showing that replacement of gB Thr-887 by alanine significantly reduced viral replication in the mouse cornea and development of herpes stroma keratitis and periocular skin disease in mice. The same effects have been reported for mice infected with a recombinant HSV-1 carrying a kinase-inactive mutant of Us3. These observations suggested that Us3 phosphorylation of gB Thr-887 played a critical role in viral replication in vivo and in HSV-1 pathogenesis. In addition, we generated a monoclonal antibody that specifically reacted with phosphorylated gB Thr-887 and used this antibody to show that Us3 phosphorylation of gB Thr-887 regulated subcellular localization of gB, particularly on the cell surface of infected cells.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2798420PMC
http://dx.doi.org/10.1128/JVI.01447-09DOI Listing

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