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Biochemical and Biophysical Research Communications|September 14, 2001
p38: A novel protein that associates with the vesicular stomatitis virus glycoproteinC S Sevier, C E MachamerThe Journal of Cell Biology|September 1, 1987
A specific transmembrane domain of a coronavirus E1 glycoprotein is required for its retention in the Golgi regionC E Machamer, J K RoseBiochemistry|February 7, 1998
Fragmentation of a Golgi-localized chimeric protein allows detergent solubilization and reveals an alternate conformation of the cytoplasmic domainC S Sevier, C E MachamerThe Journal of Cell Biology|June 1, 1986
Cytoplasmic domains of cellular and viral integral membrane proteins substitute for the cytoplasmic domain of the vesicular stomatitis virus glycoprotein in transport to the plasma membraneL Puddington, C E Machamer, J K RoseHuman Immunology|July 1, 1984
Analysis of monoclonal antibodies reactive with human class II beta chains by two-dimensional electrophoresis and Western blottingS F Radka, C E Machamer, P CresswellHuman Immunology|November 1, 1982
Elimination of mycoplasma from human B-lymphoblastoid cell linesD N Howell, C E Machamer, P CresswellMolecular Biology of the Cell|November 15, 1997
Heterogeneous distribution of the unusual phospholipid semilysobisphosphatidic acid through the Golgi complexE B Cluett, E Kuismanen, C E MachamerBiochemistry|April 14, 1992
Effects of a sphingolipid synthesis inhibitor on membrane transport through the secretory pathwayA G Rosenwald, C E Machamer, R E PaganoMolecular and Cellular Biology|November 1, 1985
A single N-linked oligosaccharide at either of the two normal sites is sufficient for transport of vesicular stomatitis virus G protein to the cell surfaceC E Machamer, R Z Florkiewicz, J K RoseJournal of Virology|September 1, 1989
A single-amino-acid substitution eliminates the stringent carbohydrate requirement for intracellular transport of a viral glycoproteinA M Pitta, J K Rose, C E MachamerPageof 4