Biologically active peptides of the vesicular stomatitis virus glycoprotein
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[1] J. Rose,et al. A cell line expressing vesicular stomatitis virus glycoprotein fuses at low pH. , 1984, Science.
[2] H. Garoff,et al. Cell surface expression of fusogenic vesicular stomatitis virus G protein from cloned cDNA. , 1984, The EMBO journal.
[3] H. Koprowski,et al. Characterization of saturable binding sites for rabies virus , 1984, Journal of virology.
[4] R. Schlegel,et al. A synthetic peptide corresponding to the NH2 terminus of vesicular stomatitis virus glycoprotein is a pH-dependent hemolysin. , 1984, The Journal of biological chemistry.
[5] R. Schlegel,et al. pH-dependent fusion induced by vesicular stomatitis virus glycoprotein reconstituted into phospholipid vesicles. , 1984, The Journal of biological chemistry.
[6] D. K. Miller,et al. Effects of DEAE-dextran on infection and hemolysis by VSV. Evidence that nonspecific electrostatic interactions mediate effective binding of VSV to cells. , 1984, Virology.
[7] J. Capone,et al. Viral membrane glycoproteins: comparison of the amino terminal amino acid sequences of the precursor and mature glycoproteins of three serotypes of vesicular stomatitis virus. , 1983, Virology.
[8] I. Pastan,et al. Inhibition of VSV binding and infectivity by phosphatidylserine: Is phosphatidylserine a VSV-binding site? , 1983, Cell.
[9] I. Pastan,et al. Saturable binding sites for vesicular stomatitis virus on the surface of Vero cells , 1982, Journal of virology.
[10] S. Inouye,et al. Role of positive charge on the amino-terminal region of the signal peptide in protein secretion across the membrane. , 1982, Proceedings of the National Academy of Sciences of the United States of America.
[11] A. Helenius,et al. Pathway of vesicular stomatitis virus entry leading to infection. , 1982, Journal of molecular biology.
[12] I. Pastan,et al. Amantadine and dansylcadaverine inhibit vesicular stomatitis virus uptake and receptor-mediated endocytosis of alpha 2-macroglobulin. , 1982, Proceedings of the National Academy of Sciences of the United States of America.
[13] J. Capone,et al. Synthesis and assembly of membrane glycoproteins. Membrane anchoring COOH-terminal domain of vesicular stomatitis virus envelope glycoprotein G contains fatty acids. , 1982, The Journal of biological chemistry.
[14] I. Pastan,et al. Monensin blocks endocytosis of vesicular stomatitis virus. , 1981, Biochemical and biophysical research communications.
[15] A. Helenius,et al. Cell fusion by Semliki Forest, influenza, and vesicular stomatitis viruses , 1981, The Journal of cell biology.
[16] I. Pastan,et al. alpha 2-macroglobulin adsorbed to colloidal gold: a new probe in the study of receptor-mediated endocytosis , 1981, The Journal of cell biology.
[17] B. Sefton,et al. The entry into host cells of Sindbis virus, vesicular stomatitis virus and Sendai virus , 1978, Cell.
[18] J. Dahlberg. Quantitative electron microscopic analysis of the penetration of VSV into L cells. , 1974, Virology.
[19] R. W. Simpson,et al. Viropexis of vesicular stomatitis virus by L cells. , 1969, Virology.