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Journal of Virology|January 1, 1991
Internally located cleavable signal sequences direct the formation of Semliki Forest virus membrane proteins from a polyprotein precursorP Liljeström, H GaroffProceedings of the National Academy of Sciences of the United States of America|October 1, 1974
Location of the spike glycoproteins in the Semliki Forest virus membraneH Garoff, K SimonsTrends in Microbiology|September 13, 2001
The missing link between envelope formation and fusion in alphavirusesH Garoff, R H ChengThe Journal of Biological Chemistry|November 15, 1990
Mannosidase II and the 135-kDa Golgi-specific antigen recognized monoclonal antibody 53FC3 are the same dimeric proteinM D Baron, H GaroffThe Journal of Cell Biology|January 1, 1992
Membrane fusion process of Semliki Forest virus. I: Low pH-induced rearrangement in spike protein quaternary structure precedes virus penetration into cellsJ M Wahlberg, H GaroffProceedings of the National Academy of Sciences of the United States of America|May 9, 1998
Packaging of intron-containing genes into retrovirus vectors by alphavirus vectorsK J Li, H GaroffJournal of Virology|October 6, 1997
The nucleocapsid-binding spike subunit E2 of Semliki Forest virus requires complex formation with the E1 subunit for activityB U Barth, H GaroffProceedings of the National Academy of Sciences of the United States of America|October 15, 1996
Production of infectious recombinant Moloney murine leukemia virus particles in BHK cells using Semliki Forest virus-derived RNA expression vectorsK J Li, H GaroffThe Journal of General Virology|February 1, 1982
Construction of a hybrid plasmid molecule containing the total coding region of Semliki Forest virus 26S mRNAC Kondor-Koch, H GaroffCurrent Opinion in Biotechnology|November 20, 1998
Recent advances in gene expression using alphavirus vectorsH Garoff, K J LiPageof 9