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Journal Abstract Search


199 related items for PubMed ID: 16254321

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  • 4. Isomerization of the intersubunit disulphide-bond in Env controls retrovirus fusion.
    Wallin M, Ekström M, Garoff H.
    EMBO J; 2004 Jan 14; 23(1):54-65. PubMed ID: 14685283
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  • 6. Receptor-triggered but alkylation-arrested env of murine leukemia virus reveals the transmembrane subunit in a prehairpin conformation.
    Wallin M, Ekström M, Garoff H.
    J Virol; 2006 Oct 14; 80(19):9921-5. PubMed ID: 16973599
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  • 7. Activation of membrane fusion by murine leukemia viruses is controlled in cis or in trans by interactions between the receptor-binding domain and a conserved disulfide loop of the carboxy terminus of the surface glycoprotein.
    Lavillette D, Boson B, Russell SJ, Cosset FL.
    J Virol; 2001 Apr 14; 75(8):3685-95. PubMed ID: 11264358
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  • 8. Sequential activation of the three protomers in the Moloney murine leukemia virus Env.
    Sjöberg M, Löving R, Lindqvist B, Garoff H.
    Proc Natl Acad Sci U S A; 2017 Mar 07; 114(10):2723-2728. PubMed ID: 28223490
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  • 9. Intersubunit disulfide isomerization controls membrane fusion of human T-cell leukemia virus Env.
    Li K, Zhang S, Kronqvist M, Wallin M, Ekström M, Derse D, Garoff H.
    J Virol; 2008 Jul 07; 82(14):7135-43. PubMed ID: 18480461
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  • 10. Stabilization of TM trimer interactions during activation of moloney murine leukemia virus Env.
    Sjöberg M, Lindqvist B, Garoff H.
    J Virol; 2008 Mar 07; 82(5):2358-66. PubMed ID: 18094169
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  • 11. Analysis of cysteine mutations on the transmembrane protein of Moloney murine leukemia virus.
    Thomas A, Roth MJ.
    Virology; 1995 Aug 01; 211(1):285-9. PubMed ID: 7645222
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  • 12. R-Peptide cleavage potentiates fusion-controlling isomerization of the intersubunit disulfide in Moloney murine leukemia virus Env.
    Löving R, Li K, Wallin M, Sjöberg M, Garoff H.
    J Virol; 2008 Mar 01; 82(5):2594-7. PubMed ID: 18094170
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  • 13. Turning of the receptor-binding domains opens up the murine leukaemia virus Env for membrane fusion.
    Wu SR, Sjöberg M, Wallin M, Lindqvist B, Ekström M, Hebert H, Koeck PJ, Garoff H.
    EMBO J; 2008 Oct 22; 27(20):2799-808. PubMed ID: 18800055
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  • 14. HTLV-1 and -2 envelope SU subdomains and critical determinants in receptor binding.
    Kim FJ, Manel N, Garrido EN, Valle C, Sitbon M, Battini JL.
    Retrovirology; 2004 Dec 02; 1():41. PubMed ID: 15575958
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  • 15. Localization of the labile disulfide bond between SU and TM of the murine leukemia virus envelope protein complex to a highly conserved CWLC motif in SU that resembles the active-site sequence of thiol-disulfide exchange enzymes.
    Pinter A, Kopelman R, Li Z, Kayman SC, Sanders DA.
    J Virol; 1997 Oct 02; 71(10):8073-7. PubMed ID: 9311907
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  • 16. Stoichiometry of murine leukemia virus envelope protein-mediated fusion and its neutralization.
    Ou W, Silver J.
    J Virol; 2006 Dec 02; 80(24):11982-90. PubMed ID: 17035325
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  • 17. Analysis of mutations within the cytoplasmic domain of the Moloney murine leukemia virus transmembrane protein.
    Thomas A, Gray KD, Roth MJ.
    Virology; 1997 Jan 20; 227(2):305-13. PubMed ID: 9018129
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  • 18. Effect of epitope position on neutralization by anti-human immunodeficiency virus monoclonal antibody 2F5.
    Ou W, Lu N, Yu SS, Silver J.
    J Virol; 2006 Mar 20; 80(5):2539-47. PubMed ID: 16474160
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  • 19. Palmitoylation of the murine leukemia virus envelope glycoprotein transmembrane subunits.
    Yang C, Compans RW.
    Virology; 1996 Jul 01; 221(1):87-97. PubMed ID: 8661417
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  • 20. Characterization of R peptide of murine leukemia virus envelope glycoproteins in syncytium formation and entry.
    Kubo Y, Tominaga C, Yoshii H, Kamiyama H, Mitani C, Amanuma H, Yamamoto N.
    Arch Virol; 2007 Jul 01; 152(12):2169-82. PubMed ID: 17851730
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