Literature DB >> 16940502

Vaccinia virus entry into cells via a low-pH-dependent endosomal pathway.

Alan C Townsley1, Andrea S Weisberg, Timothy R Wagenaar, Bernard Moss.   

Abstract

Previous studies established that vaccinia virus could enter cells by fusion with the plasma membrane at neutral pH. However, low pH triggers fusion of vaccinia virus-infected cells, a hallmark of viruses that enter by the endosomal route. Here, we demonstrate that entry of mature vaccinia virions is accelerated by brief low-pH treatment and severely reduced by inhibitors of endosomal acidification, providing evidence for a predominant low-pH-dependent endosomal pathway. Entry of vaccinia virus cores into the cytoplasm, measured by expression of firefly luciferase, was increased more than 10-fold by exposure to a pH of 4.0 to 5.5. Furthermore, the inhibitors of endosomal acidification bafilomycin A1, concanamycin A, and monensin each lowered virus entry by more than 70%. This reduction was largely overcome by low-pH-induced entry through the plasma membrane, confirming the specificities of the drugs. Entry of vaccinia virus cores with or without brief low-pH treatment was visualized by electron microscopy of thin sections of immunogold-stained cells. Although some virus particles fused with the plasma membrane at neutral pH, 30 times more fusions and a greater number of cytoplasmic cores were seen within minutes after low-pH treatment. Without low-pH exposure, the number of released cores lagged behind the number of virions in vesicles until 30 min posttreatment, when they became approximately equal, perhaps reflecting the time of endosome acidification and virus fusion. The choice of two distinct pathways may contribute to the ability of vaccinia virus to enter a wide range of cells.

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Year:  2006        PMID: 16940502      PMCID: PMC1563910          DOI: 10.1128/JVI.01053-06

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  37 in total

1.  Entry of the two infectious forms of vaccinia virus at the plasma membane is signaling-dependent for the IMV but not the EEV.

Authors:  J K Locker; A Kuehn; S Schleich; G Rutter; H Hohenberg; R Wepf; G Griffiths
Journal:  Mol Biol Cell       Date:  2000-07       Impact factor: 4.138

2.  High-speed mass transit for poxviruses on microtubules.

Authors:  B Moss; B M Ward
Journal:  Nat Cell Biol       Date:  2001-11       Impact factor: 28.824

Review 3.  The formation and function of extracellular enveloped vaccinia virus.

Authors:  Geoffrey L Smith; Alain Vanderplasschen; Mansun Law
Journal:  J Gen Virol       Date:  2002-12       Impact factor: 3.891

4.  Vaccinia virus envelope H3L protein binds to cell surface heparan sulfate and is important for intracellular mature virion morphogenesis and virus infection in vitro and in vivo.

Authors:  C L Lin; C S Chung; H G Heine; W Chang
Journal:  J Virol       Date:  2000-04       Impact factor: 5.103

5.  Development and use of a vaccinia virus neutralization assay based on flow cytometric detection of green fluorescent protein.

Authors:  Patricia L Earl; Jeffrey L Americo; Bernard Moss
Journal:  J Virol       Date:  2003-10       Impact factor: 5.103

6.  Vaccinia virus H2 protein is an essential component of a complex involved in virus entry and cell-cell fusion.

Authors:  Tatiana G Senkevich; Bernard Moss
Journal:  J Virol       Date:  2005-04       Impact factor: 5.103

7.  Vaccinia virus envelope D8L protein binds to cell surface chondroitin sulfate and mediates the adsorption of intracellular mature virions to cells.

Authors:  J C Hsiao; C S Chung; W Chang
Journal:  J Virol       Date:  1999-10       Impact factor: 5.103

8.  Vaccinia virus entry into cells is dependent on a virion surface protein encoded by the A28L gene.

Authors:  Tatiana G Senkevich; Brian M Ward; Bernard Moss
Journal:  J Virol       Date:  2004-03       Impact factor: 5.103

Review 9.  The many mechanisms of viral membrane fusion proteins.

Authors:  L J Earp; S E Delos; H E Park; J M White
Journal:  Curr Top Microbiol Immunol       Date:  2005       Impact factor: 4.291

10.  The uptake and development of vaccinia virus in strain L cells followed with labeled viral deoxyribonucleic acid.

Authors:  S DALES
Journal:  J Cell Biol       Date:  1963-07       Impact factor: 10.539

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  93 in total

1.  Skin mast cells protect mice against vaccinia virus by triggering mast cell receptor S1PR2 and releasing antimicrobial peptides.

Authors:  Zhenping Wang; Yuping Lai; Jamie J Bernard; Daniel T Macleod; Anna L Cogen; Bernard Moss; Anna Di Nardo
Journal:  J Immunol       Date:  2011-12-02       Impact factor: 5.422

2.  Vaccinia virus A25 and A26 proteins are fusion suppressors for mature virions and determine strain-specific virus entry pathways into HeLa, CHO-K1, and L cells.

Authors:  Shu-Jung Chang; Yu-Xun Chang; Roza Izmailyan; Yin-Liang Tang; Wen Chang
Journal:  J Virol       Date:  2010-06-10       Impact factor: 5.103

3.  Myxoma virus induces type I interferon production in murine plasmacytoid dendritic cells via a TLR9/MyD88-, IRF5/IRF7-, and IFNAR-dependent pathway.

Authors:  Peihong Dai; Hua Cao; Taha Merghoub; Francesca Avogadri; Weiyi Wang; Tanvi Parikh; Chee-Mun Fang; Paula M Pitha; Katherine A Fitzgerald; Masmudur M Rahman; Grant McFadden; Xiaoyu Hu; Alan N Houghton; Stewart Shuman; Liang Deng
Journal:  J Virol       Date:  2011-08-10       Impact factor: 5.103

4.  Vaccinia mature virus fusion regulator A26 protein binds to A16 and G9 proteins of the viral entry fusion complex and dissociates from mature virions at low pH.

Authors:  Shu-Jung Chang; Ao-Chun Shih; Yin-Liang Tang; Wen Chang
Journal:  J Virol       Date:  2012-01-25       Impact factor: 5.103

5.  Myxoma and vaccinia viruses exploit different mechanisms to enter and infect human cancer cells.

Authors:  Nancy Y Villa; Eric Bartee; Mohamed R Mohamed; Masmudur M Rahman; John W Barrett; Grant McFadden
Journal:  Virology       Date:  2010-03-24       Impact factor: 3.616

6.  Sequence-independent targeting of transmembrane proteins synthesized within vaccinia virus factories to nascent viral membranes.

Authors:  Matloob Husain; Andrea S Weisberg; Bernard Moss
Journal:  J Virol       Date:  2006-12-27       Impact factor: 5.103

7.  Association of vaccinia virus fusion regulatory proteins with the multicomponent entry/fusion complex.

Authors:  Timothy R Wagenaar; Bernard Moss
Journal:  J Virol       Date:  2007-04-04       Impact factor: 5.103

8.  Two distinct low-pH steps promote entry of vaccinia virus.

Authors:  Alan C Townsley; Bernard Moss
Journal:  J Virol       Date:  2007-06-06       Impact factor: 5.103

9.  Vaccinia virus strain differences in cell attachment and entry.

Authors:  Zain Bengali; Alan C Townsley; Bernard Moss
Journal:  Virology       Date:  2009-05-09       Impact factor: 3.616

10.  Vaccinia Virus Phospholipase Protein F13 Promotes Rapid Entry of Extracellular Virions into Cells.

Authors:  Peter Bryk; Matthew G Brewer; Brian M Ward
Journal:  J Virol       Date:  2018-05-14       Impact factor: 5.103

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