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Almqvist, P. and Carlsson, S. R (1988). Characterisation of a hydrophilic form of Thy-1 purified from human cerebrospinal fluid. J. Biol. Chem 263, 12709-12715.[Abstract/Free Full Text]

Bardeltti, G., Tektoff, J. and Gautheron, D (1979). Rubella virus maturation and production in two host cell systems. Intervirology 11, 97-103.[Medline]

Barboni, E., Rivero, B. P., George, A. J. T., Martin, S. R., Renouf, D. V., Hounsell, E. F., Barber, P. C. and Morris, R. J (1995). The glycosylphosphatidylinositol anchor affects the conformation of Thy-1 protein. J. Cell Sci 108, 487-497.[Abstract]

Baron, M. D., Ebel, T. and Suomalainen, M (1992). Intracellular transport of rubella virus structural proteins expressed from cloned cDNA. J. Gen. Virol 73, 1073-1086.[Abstract/Free Full Text]

Beghdadi-Rais, C., Schreyer, M., Rousseaux, M., Borel, P., Eisenberg, R. J., Cohen, G. H., Bron, C. and Fasel, N (1993). Carboxyl terminus structural requirements for glycosyl-phosphatidylinositol anchor addition to cell surface proteins. J. Cell Sci 105, 831-840.[Abstract]

Bron, C. and Fasel, N (1991). Glycolipid-anchored membrane proteins. Bull. Inst. Pasteur 89, 59-69.

Brown, D. and Rose, J. K (1992). Sorting of GPI-anchored proteins to glycolipid-enriched membrane subdomains during transport to the apical cell surface. Cell 68, 533-544.[Medline]

Chaye, H., Chong, P., Tripet, B., Brush, B. and Gillam, S (1992). Localization of the virus neutralizing and hemagglutinin epitopes of E1 glycoprotein of rubella virus. Virology 189, 483-492.[Medline]

Conzelmann, A., Spiazzi, A. and Bron, C (1987). Glycolipid anchors are attached to Thy-1 glycoprotein rapidly after translation. Biochem. J 246, 605-610.[Medline]

Coyne, R. S., Siebrecht, M., Peitsch, M. C. and Casanova, J. E (1994). Mutational analysis of polymeric immunoglobulin receptor/ligand interactions. J. Biol. Chem 269, 31620-31625.[Abstract/Free Full Text]

Crise, B., Ruusala, A., Zagouras, P., Shaw, A. and Rose, J. K (1989). Oligomerization of glycolipid-anchored and soluble forms of the vesicular stomatitis virus glycoprotein. J. Virol 63, 5328-5333.[Abstract/Free Full Text]

Cross, G. A. M (1990). Glycolipid anchoring of plasma membrane proteins. Annu. Rev. Cell Biol 6, 1-39.

Davitz, M. A., Low, M. G. and Nussenzweig, V (1986). Release of decay-accelerating factor (DAF) from the cell membrane by phosphatidylinositol-specific phospholipase C (PI-PLC): Selective modification of a complement regulatory protein. J. Exp. Med 163, 1150-.[Abstract/Free Full Text]

Dominguez, G., Wang, C.-Y. and Frey, T. K (1990). Sequence of the genome RNA of rubella virus: evidence for genetic rearrangement during togavirus evolution. Virology 177, 225-238.[Medline]

Fasel, N. J. and Deglon, N (1992). Multi-level regulation of Thy-1 antigen expression in mouse T lymphomas. Immunogenetics 35, 126-130.[Medline]

Ferguson, M. A. J. and Williams, A. F (1988). Cell-surface anchoring of proteins via glycosylphosphatidylinositol structures. Annu. Rev. Biochem 57, 285-320.[Medline]

Gascard, P., Sauvage, M., Sulpice, J.-C. and Giraud, F (1993). Characterization of structural and functional phosphoinositide domains in human erythrocyte membranes. Biochemistry 32, 5941-5948.[Medline]

Green, K. Y. and Dorsett, P. H (1986). Rubella virus antigen: localization of epitopes involved in hemagglutination and neutralization by using monoclonal antibodies. J. Virol 57, 893-898.[Abstract/Free Full Text]

Hobman, T. C., Woodward, L. and Farquhar, M. G (1992). The rubella virus E1 glycoprotein is arrested in a novel post-ER, pre-Golgi compartment. J. Cell Biol 118, 795-811.[Abstract/Free Full Text]

Hobman, T. C., Woodward, L. and Farquhar, M. G (1993). The rubella virus E2 and E1 spike glycoproteins are targeted to the Golgi complex. J. Cell Biol 121, 269-281.[Abstract/Free Full Text]

Hobman, T. C., Lundstrom, M. L., Mauracher, C. A., Woodward, L., Gillam, S. and Farquhar, M. G (1994). Assembly of rubella virus structural proteins into virus-like particles in transfected cells. Virology 202, 574-585.[Medline]

Hobman, T. C., Seto, N. O. L. and Gillam, S (1994). Expression of soluble forms of rubella virus glycoproteins in mammalian cells. Virus Res 31, 277-289.[Medline]

Hobman, T. C., Woodward, L. and Farquhar, M. G (1995). Targeting of a heterodimeric membrane protein complex to the Golgi: Rubella virus E2 glycoprotein contains a transmembrane Golgi retention signal. Mol. Biol. Cell 6, 7-20.[Abstract]

Kaetzel, D. M., Singh, N., Kennedy, G. C., Virgin, J. B., Farr, G., Kitagawa, Y., Nilson, J. H. and Tartakoff, A. M (1990). Complete and partial glycophospholipid anchors are found on a fusion protein consisting of luteinizing hormonesubunit followed by a carboxyl-terminal domain of Thy-1. J. Biol. Chem 265, 15932-15937.[Abstract/Free Full Text]

Lin, A. Y., Devaux, B., Green, A., Sagerstr\232m, C., Elliott, J. and Davis, M. M (1990). Expression of T cell antigen receptor heterodimers in a lipid-linked form. Science 249, 677-679.[Abstract/Free Full Text]

Low, M. G., Stiernberg, J., Waneck, G. L., Flavell, R. A. and Kincade, P. W (1988). Cell-specific heterogeneity in sensitivity of phosphatidylinositol-anchored membrane antigens to release by phospholipase C. J. Immunol. Meth 113, 101-111.[Medline]

Machamer, C. E. and Rose, J. K (1988). Vesicular stomatitis virus G proteins with altered glycosylation sites display temperature-sensitive intracellular transport and are subject to aberrant intermolecular disulfide bonding. J. Biol. Chem 263, 5955-5960.[Abstract/Free Full Text]

Machamer, C. E., Mentone, S. A., Rose, J. K. and Farquhar, M. G (1990). The E1 glycoprotein of an avian coronavirus is targeted to the cis Golgi complex. Proc. Nat. Acad. Sci. USA 87, 6944-6948.[Abstract/Free Full Text]

Matsuoka, Y., Chen, S.-Y. and Compans, R. W (1994). A signal for Golgi retention in the bunyavirus G1 glycoprotein. J. Biol. Chem 269, 22565-22573.[Abstract/Free Full Text]

Metz, C. N., Choi, N. H., Caras, I. W., Patel, S. R., Altszuler, N. and Davitz, M. A (1993). Physiological cleavage of the glycosylphosphatidylinositol (GPI)-anchored protein, decay accelerating factor (DAF) by a GPI-specific phospholipase D (GPI-PLD). FASEB J 7, 1049-.

Metz, C. N., Brunner, G., Choi-Muira, N. H., Nguyen, H., Gabrilove, J., Caras, I. W., Altszuler, N., Rifkin, D. B., Wilson, E. L. and Davitz, M. A (1994). Release of GPI-anchored membrane proteins by a cell-associated GPI-specific phospholipase D. EMBO J 13, 1741-1751.[Medline]

Moran, P. and Caras, I. W (1991). A non-functional sequence converted to a signal for glycophosphatidylinositol membrane anchor attachment. J. Cell Biol 115, 329-336.[Abstract/Free Full Text]

Moran, P. and Caras, I. W (1992). Proteins containing an uncleaved signal for glycophosphatidylinositol membrane anchor attachment are retained in a post-ER compartment. J. Cell Biol 119, 763-772.[Abstract/Free Full Text]

Neri, P., Corti, M., Lozzi, L. and Valensin, P. E (1991). Structure and antigenic activity of rubella E1 glycoprotein synthetic peptides. Biopolymers 31, 631-635.[Medline]

Newkirk, R. F. and Mack, J (1992). Improved indirect fluorescence immunocytochemical method using counterstains. BioTechniques 13, 536-538.[Medline]

Oker-Blom, C., Kalkkinen, N., Kaarianen, L. and Pettersson, R. F (1983). Rubella virus contains one capsid protein and three envelope glycoproteins, E1, E2a and E2b. J. Virol 46, 964-973.[Abstract/Free Full Text]

Pettersson, R. F (1991). Protein localization and virus assembly at intracellular membranes. Curr. Top. Microbiol. Immunol 170, 67-106.[Medline]

Rose, J. K. and Bergmann, J. E (1982). Expression from cloned cDNA of cell-surface secreted forms of the glycoprotein of vesicular stomatitis virus in eucaryotic cells. Cell 30, 753-762.[Medline]

Salzwedel, K., Johnston, P. B., Roberts, S. J., Dubay, J. W. and Hunter, E (1993). Expression and characterization of glycophospholipid-anchoredhuman immunodeficiency virus type 1 envelope glycoproteins. J. Virol 67, 5279-5288.[Abstract/Free Full Text]

Sambrook, J., Rodgers, L., White, J. and Gething, M.-J (1985). Lines of BPV-transformed murine cells that constitutively express influenza virus hemagglutinin. EMBO J 4, 91-103.[Medline]

Scallon, B. J., Fung, W.-J. C., Tsang, T. C., Li, S., Kado-Fong, H., Huang, K.-S. and Kochan, J. P (1991). Primary structure and functional activity of a phosphatidylinositol-glycan-specific phospholipase D. Science 252, 446-448.[Abstract/Free Full Text]

Seto, N. O. L. and Gillam, S (1994). Expression and characterization of a soluble rubella virus E1 envelope protein. J. Med. Virol 44, 192-199.[Medline]

Singh, I., Doms, R. W., Wagner, K. R. and Helenius, A (1990). Intracellular transport of soluble and membrane-bound glycoproteins: folding, assembly and secretion of anchor-free influenza hemagglutinin. EMBO J 9, 631-639.[Medline]

Swift, A. M. and Machamer, C. E (1991). A Golgi retention signal in a membrane-spanning domain of coronavirus E1 protein. J. Cell Biol 115, 19-30.[Abstract/Free Full Text]

Terry, G. M., Ho-Terry, L., Londesborough, P. and Rees, K. R (1988). Localization of the rubella E1 epitopes. Arch. Virol 98, 189-197.[Medline]

Vidal, S., Motter, G., Kolakofsky, D. and Roux, L (1989). Addition of high-mannose sugars must precede disulfide bond formation for proper folding of Sendai virus glycoprotein. J. Virol 63, 892-900.[Abstract/Free Full Text]

von Bonsdorff, C. and Vaheri, A (1969). Growth of rubella virus in BHK-21 cells: electron microscopy of morphogenesis. J. Gen. Virol 5, 47-51.[Abstract/Free Full Text]

Waxham, M. N. and Wolinsky, J. S (1985). Detailed immunologic analysis of the structural polypeptides of rubella virus using monoclonal antibodies. Virology 143, 153-165.[Medline]

Wolinsky, J. S., Sukholutsky, E., Moore, W. T., Lovett, A., McCarthy, M. and Adame, B (1993). An antibody-and synthetic peptide-defined rubella virus E1 glycoprotein neutralization domain. J. Virol 67, 961-968.[Abstract/Free Full Text]

Xie, M. and Low, M. G (1994). Expression and secretion of glycosylphosphatidylinositol-specific phospholipase D by myeloid cell lines. Biochem. J 297, 547-554.




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D. Yang, D. Hwang, Z. Qiu, and S. Gillam
Effects of Mutations in the Rubella Virus E1 Glycoprotein on E1-E2 Interaction and Membrane Fusion Activity
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