Literature DB >> 19224995

Foreign glycoproteins can be actively recruited to virus assembly sites during pseudotyping.

Rebecca L Jorgenson1, Volker M Vogt, Marc C Johnson.   

Abstract

Retroviruses like human immunodeficiency virus type 1 (HIV-1), as well as many other enveloped viruses, can efficiently produce infectious virus in the absence of their own surface glycoprotein if a suitable glycoprotein from a foreign virus is expressed in the same cell. This process of complementation, known as pseudotyping, often can occur even when the glycoprotein is from an unrelated virus. Although pseudotyping is widely used for engineering chimeric viruses, it has remained unknown whether a virus can actively recruit foreign glycoproteins to budding sites or, alternatively, if a virus obtains the glycoproteins through a passive mechanism. We have studied the specificity of glycoprotein recruitment by immunogold labeling viral glycoproteins and imaging their distribution on the host plasma membrane using scanning electron microscopy. Expressed alone, all tested viral glycoproteins were relatively randomly distributed on the plasma membrane. However, in the presence of budding HIV-1 or Rous sarcoma virus (RSV) particles, some glycoproteins, such as those encoded by murine leukemia virus and vesicular stomatitis virus, were dramatically redistributed to viral budding sites. In contrast, the RSV Env glycoprotein was robustly recruited only to the homologous RSV budding sites. These data demonstrate that viral glycoproteins are not in preformed membrane patches prior to viral assembly but rather that glycoproteins are actively recruited to certain viral assembly sites.

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Year:  2009        PMID: 19224995      PMCID: PMC2668502          DOI: 10.1128/JVI.02425-08

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


  31 in total

Review 1.  Do lipid rafts mediate virus assembly and pseudotyping?

Authors:  John A G Briggs; Thomas Wilk; Stephen D Fuller
Journal:  J Gen Virol       Date:  2003-04       Impact factor: 3.891

2.  Evidence for budding of human immunodeficiency virus type 1 selectively from glycolipid-enriched membrane lipid rafts.

Authors:  D H Nguyen; J E Hildreth
Journal:  J Virol       Date:  2000-04       Impact factor: 5.103

Review 3.  A guide to choosing fluorescent proteins.

Authors:  Nathan C Shaner; Paul A Steinbach; Roger Y Tsien
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4.  Efficient incorporation of human CD4 protein into avian leukosis virus particles.

Authors:  J A Young; P Bates; K Willert; H E Varmus
Journal:  Science       Date:  1990-12-07       Impact factor: 47.728

5.  VSV pseudotype particles with the coat of avian myeloblastosis virus.

Authors:  J Závada
Journal:  Nat New Biol       Date:  1972-11-22

Review 6.  The pseudotypic paradox.

Authors:  J Závada
Journal:  J Gen Virol       Date:  1982-11       Impact factor: 3.891

7.  Genetic evidence for an interaction between human immunodeficiency virus type 1 matrix and alpha-helix 2 of the gp41 cytoplasmic tail.

Authors:  T Murakami; E O Freed
Journal:  J Virol       Date:  2000-04       Impact factor: 5.103

8.  Novel monoclonal antibody directed at the receptor binding site on the avian sarcoma and leukosis virus Env complex.

Authors:  Christina Ochsenbauer-Jambor; Sue E Delos; Mary Ann Accavitti; Judith M White; Eric Hunter
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9.  Rescue of human immunodeficiency virus type 1 matrix protein mutants by envelope glycoproteins with short cytoplasmic domains.

Authors:  F Mammano; E Kondo; J Sodroski; A Bukovsky; H G Göttlinger
Journal:  J Virol       Date:  1995-06       Impact factor: 5.103

10.  HIV-1 assembly: viral glycoproteins segregate quantally to lipid rafts that associate individually with HIV-1 capsids and virions.

Authors:  Kwanyee Leung; Jae-Ouk Kim; Lakshmanan Ganesh; Juraj Kabat; Owen Schwartz; Gary J Nabel
Journal:  Cell Host Microbe       Date:  2008-05-15       Impact factor: 21.023

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  41 in total

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2.  Retrovirus glycoprotein functionality requires proper alignment of the ectodomain and the membrane-proximal cytoplasmic tail.

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Review 3.  Relationships between plasma membrane microdomains and HIV-1 assembly.

Authors:  Akira Ono
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4.  Gag induces the coalescence of clustered lipid rafts and tetraspanin-enriched microdomains at HIV-1 assembly sites on the plasma membrane.

Authors:  Ian B Hogue; Jonathan R Grover; Ferri Soheilian; Kunio Nagashima; Akira Ono
Journal:  J Virol       Date:  2011-08-03       Impact factor: 5.103

5.  Basic motifs target PSGL-1, CD43, and CD44 to plasma membrane sites where HIV-1 assembles.

Authors:  Jonathan R Grover; Sarah L Veatch; Akira Ono
Journal:  J Virol       Date:  2014-10-15       Impact factor: 5.103

6.  Sequence Determinants in Gammaretroviral Env Cytoplasmic Tails Dictate Virus-Specific Pseudotyping Compatibility.

Authors:  Yul Eum Song; Grace Y Olinger; Sanath Kumar Janaka; Marc C Johnson
Journal:  J Virol       Date:  2019-05-15       Impact factor: 5.103

7.  Elucidating the Basis for Permissivity of the MT-4 T-Cell Line to Replication of an HIV-1 Mutant Lacking the gp41 Cytoplasmic Tail.

Authors:  Melissa V Fernandez; Huxley K Hoffman; Nairi Pezeshkian; Philip R Tedbury; Schuyler B van Engelenburg; Eric O Freed
Journal:  J Virol       Date:  2020-11-09       Impact factor: 5.103

Review 8.  The role of matrix in HIV-1 envelope glycoprotein incorporation.

Authors:  Philip R Tedbury; Eric O Freed
Journal:  Trends Microbiol       Date:  2014-06-02       Impact factor: 17.079

9.  Targeting lentiviral vector to specific cell types through surface displayed single chain antibody and fusogenic molecule.

Authors:  Yuning Lei; Kye-Il Joo; Jonathan Zarzar; Clement Wong; Pin Wang
Journal:  Virol J       Date:  2010-02-11       Impact factor: 4.099

10.  The Role of Lipids in Retrovirus Replication.

Authors:  Abdul A Waheed; Eric O Freed
Journal:  Viruses       Date:  2010-05-01       Impact factor: 5.048

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