Literature DB >> 17293854

Retroviruses can establish filopodial bridges for efficient cell-to-cell transmission.

Nathan M Sherer1, Maik J Lehmann, Luisa F Jimenez-Soto, Christina Horensavitz, Marc Pypaert, Walther Mothes.   

Abstract

The spread of retroviruses between cells is estimated to be 2-3 orders of magnitude more efficient when cells can physically interact with each other. The underlying mechanism is largely unknown, but transfer is believed to occur through large-surface interfaces, called virological or infectious synapses. Here, we report the direct visualization of cell-to-cell transmission of retroviruses in living cells. Our results reveal a mechanism of virus transport from infected to non-infected cells, involving thin filopodial bridges. These filopodia originate from non-infected cells and interact, through their tips, with infected cells. A strong association of the viral envelope glycoprotein (Env) in an infected cell with the receptor molecules in a target cell generates a stable bridge. Viruses then move along the outer surface of the filopodial bridge toward the target cell. Our data suggest that retroviruses spread by exploiting an inherent ability of filopodia to transport ligands from cell to cell.

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Year:  2007        PMID: 17293854      PMCID: PMC2628976          DOI: 10.1038/ncb1544

Source DB:  PubMed          Journal:  Nat Cell Biol        ISSN: 1465-7392            Impact factor:   28.824


  26 in total

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3.  Visualization of retroviral replication in living cells reveals budding into multivesicular bodies.

Authors:  Nathan M Sherer; Maik J Lehmann; Luisa F Jimenez-Soto; Alyssa Ingmundson; Stacy M Horner; Gregor Cicchetti; Philip G Allen; Marc Pypaert; James M Cunningham; Walther Mothes
Journal:  Traffic       Date:  2003-11       Impact factor: 6.215

4.  Retroviral entry mediated by receptor priming and low pH triggering of an envelope glycoprotein.

Authors:  W Mothes; A L Boerger; S Narayan; J M Cunningham; J A Young
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5.  Spread of HTLV-I between lymphocytes by virus-induced polarization of the cytoskeleton.

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Journal:  Science       Date:  2003-02-13       Impact factor: 47.728

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  220 in total

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4.  Cellular bridges: Routes for intercellular communication and cell migration.

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6.  3D visualization of HIV transfer at the virological synapse between dendritic cells and T cells.

Authors:  Richard L Felts; Kedar Narayan; Jacob D Estes; Dan Shi; Charles M Trubey; Jing Fu; Lisa M Hartnell; Gordon T Ruthel; Douglas K Schneider; Kunio Nagashima; Julian W Bess; Sina Bavari; Bradley C Lowekamp; Donald Bliss; Jeffrey D Lifson; Sriram Subramaniam
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7.  Determining the involvement and therapeutic implications of host cellular factors in hepatitis C virus cell-to-cell spread.

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Review 8.  Imaging of HIV/host protein interactions.

Authors:  Cindy M Danielson; Thomas J Hope
Journal:  Curr Top Microbiol Immunol       Date:  2009       Impact factor: 4.291

9.  HIV-1 Nef inhibits ruffles, induces filopodia, and modulates migration of infected lymphocytes.

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10.  GPI anchoring facilitates propagation and spread of misfolded Sup35 aggregates in mammalian cells.

Authors:  Jonathan O Speare; Danielle K Offerdahl; Aaron Hasenkrug; Aaron B Carmody; Gerald S Baron
Journal:  EMBO J       Date:  2010-01-07       Impact factor: 11.598

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