Literature DB >> 9500613

Efficient transduction of nondividing human cells by feline immunodeficiency virus lentiviral vectors.

E M Poeschla1, F Wong-Staal, D J Looney.   

Abstract

The molecular bases for species barriers to lentiviral replication are not well understood, but are of interest for explaining lentiviral pathogenesis, devising therapeutic strategies, and adapting lentiviruses to gene therapy. HIV-1-based lentiviral vectors efficiently transduce nondividing cells, but present complex safety concerns. Nonprimate (ungulate or feline) lentiviruses might provide safer alternatives, but these viruses display highly restricted tropisms, and their potential for adaptation as replication-defective vectors capable of transducing human cells is unknown. Feline immunodeficiency virus (FIV) does not infect humans or other non-Felidae despite prevalent natural exposure. Although long terminal repeat (LTR)-directed FIV expression was found to be negligible in human cells, promoter substitution enabled an env-deleted, three-plasmid, human cell-FIV lentiviral vector system to express high levels of FIV proteins and FIV vectors in human cells, thus bypassing the hazards of feline vector producer cells. Pseudotyped FIV vectors efficiently transduced dividing, growth-arrested, and postmitotic human targets. The experiments delineate mechanisms involved in species-restricted replication of this lentivirus and show that human cells support both productive- and infective-phase mechanisms of the FIV life cycle needed for efficient lentiviral vector transduction. Nonprimate lentiviral vectors may offer safety advantages, and FIV vectors provide unique experimental opportunities.

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Year:  1998        PMID: 9500613     DOI: 10.1038/nm0398-354

Source DB:  PubMed          Journal:  Nat Med        ISSN: 1078-8956            Impact factor:   53.440


  109 in total

1.  Bad for cats, good for humans? Modified feline immunodeficiency virus for gene therapy.

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2.  Woodchuck hepatitis virus posttranscriptional regulatory element enhances expression of transgenes delivered by retroviral vectors.

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3.  Characterization of promoter function and cell-type-specific expression from viral vectors in the nervous system.

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4.  Development of minimal lentivirus vectors derived from simian immunodeficiency virus (SIVmac251) and their use for gene transfer into human dendritic cells.

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7.  Characterization of retroviral and lentiviral vectors pseudotyped with xenotropic murine leukemia virus-related virus envelope glycoprotein.

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8.  Dual-reporter Imaging and its Potential Application in Tracking Studies.

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Review 9.  Prospects for lentiviral vector mediated prostaglandin F synthase gene delivery in monkey eyes in vivo.

Authors:  Eun Suk Lee; Carol A Rasmussen; Mark S Filla; Sarah R Slauson; Aaron W Kolb; Donna M Peters; Paul L Kaufman; B'Ann T Gabelt; Curtis R Brandt
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10.  DNA polymerase beta-dependent long patch base excision repair in living cells.

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Journal:  DNA Repair (Amst)       Date:  2009-12-16
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