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Journal of Virological Methods|June 1, 1994
Quantitative micro P30 and reverse transcriptase assays for Moloney murine leukemia virusC A Wilson, M V Eiden, J W MarshJournal of Virology|December 1, 1992
The requirements for viral entry differ from those for virally induced syncytium formation in NIH 3T3/DTras cells exposed to Moloney murine leukemia virusC A Wilson, J W Marsh, M V EidenJournal of Virology|November 1, 1991
Viral and cellular factors governing hamster cell infection by murine and gibbon ape leukemia virusesC A Wilson, M V EidenJournal of Virology|February 1, 1994
Glycosylation-dependent inactivation of the ecotropic murine leukemia virus receptorM V Eiden, K Farrell, C A WilsonThe Journal of General Virology|August 1, 1994
Comparison of cDNAs encoding the gibbon ape leukaemia virus receptor from susceptible and non-susceptible murine cellsC A Wilson, K B Farrell, M V EidenJournal of Virology|December 1, 1994
Properties of a unique form of the murine amphotropic leukemia virus receptor expressed on hamster cellsC A Wilson, K B Farrell, M V EidenJournal of Virology|February 1, 1996
Substitution of a single amino acid residue is sufficient to allow the human amphotropic murine leukemia virus receptor to also function as a gibbon ape leukemia virus receptorM V Eiden, K B Farrell, C A WilsonJournal of Virology|September 1, 1993
Gibbon ape leukemia virus and the amphotropic murine leukemia virus 4070A exhibit an unusual interference pattern on E36 Chinese hamster cellsM A Eglitis, M V Eiden, C A WilsonJournal of Virology|May 30, 1998
Entry of amphotropic murine leukemia virus is influenced by residues in the putative second extracellular domain of its receptor, Pit2B D Leverett, K B Farrell, M V Eiden, et al.Journal of Virology|October 1, 1996
The Japanese feral mouse Pit1 and Pit2 homologs lack an acidic residue at position 550 but still function as gibbon ape leukemia virus receptors: implications for virus binding motifR D Schneiderman, K B Farrell, C A Wilson, et al.Pageof 36