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5. Cell-free fatty acylation of microsomal integrated and detergent-solubilized glycoprotein of vesicular stomatitis virus. Mack D; Berger M; Schmidt MF; Kruppa J J Biol Chem; 1987 Mar; 262(9):4297-302. PubMed ID: 3031069 [TBL] [Abstract][Full Text] [Related]
6. Synthesis and assembly of transmembrane viral and cellular glycoproteins. Lodish HF; Zilberstein A; Porter M Methods Cell Biol; 1981; 23():5-25. PubMed ID: 6276668 [No Abstract] [Full Text] [Related]
7. Role of fatty acid acylation of membrane glycoproteins. Absence of palmitic acid in glycoproteins of two serotypes of vesicular stomatitis virus. Kotwal GJ; Ghosh HP J Biol Chem; 1984 Apr; 259(8):4699-701. PubMed ID: 6325406 [TBL] [Abstract][Full Text] [Related]
8. Palmitylation of viral membrane glycoproteins takes place after exit from the endoplasmic reticulum. Bonatti S; Migliaccio G; Simons K J Biol Chem; 1989 Jul; 264(21):12590-5. PubMed ID: 2545712 [TBL] [Abstract][Full Text] [Related]
9. Synthesis and assembly of membrane glycoproteins. Membrane anchoring COOH-terminal domain of vesicular stomatitis virus envelope glycoprotein G contains fatty acids. Capone J; Toneguzzo F; Ghosh HP J Biol Chem; 1982 Jan; 257(1):16-9. PubMed ID: 6273422 [TBL] [Abstract][Full Text] [Related]
10. Vesicular stomatitis virus and sindbis virus glycoprotein transport to the cell surface is inhibited by ionophores. Johnson DC; Schlesinger MJ Virology; 1980 Jun; 103(2):407-24. PubMed ID: 6247822 [No Abstract] [Full Text] [Related]
11. Impaired intracellular migration and altered solubility of nonglycosylated glycoproteins of vesicular stomatitis virus and Sindbis virus. Leavitt R; Schlesinger S; Kornfeld S J Biol Chem; 1977 Dec; 252(24):9018-23. PubMed ID: 200626 [TBL] [Abstract][Full Text] [Related]
12. Scanning fluorescence correlation spectroscopy. II. Application to virus glycoprotein aggregation. Petersen NO; Johnson DC; Schlesinger MJ Biophys J; 1986 Apr; 49(4):817-20. PubMed ID: 3013328 [TBL] [Abstract][Full Text] [Related]
13. Fatty acid binding to vesicular stomatitis virus glycoprotein: a new type of post-translational modification of the viral glycoprotein. Schmidt MF; Schlesinger MJ Cell; 1979 Aug; 17(4):813-9. PubMed ID: 226266 [No Abstract] [Full Text] [Related]
14. Hazelhurst-vesicular-stomatitis-virus G and Sindbis-virus E1 glycoproteins undergo similar host-cell-dependent variation in oligosaccharide processing. Davidson SK; Hunt LA Biochem J; 1985 Jul; 229(1):47-55. PubMed ID: 2994631 [TBL] [Abstract][Full Text] [Related]
15. Localization of membrane proteins by the use of a photoreactive fatty acid incorporated in vivo into vesicular stomatitis virus. Capone J; Leblanc P; Gerber GE; Ghosh HP J Biol Chem; 1983 Feb; 258(3):1395-8. PubMed ID: 6296092 [TBL] [Abstract][Full Text] [Related]
16. Fatty acid acylation is not required for membrane fusion activity or glycoprotein assembly into VSV virions. Whitt MA; Rose JK Virology; 1991 Dec; 185(2):875-8. PubMed ID: 1660205 [TBL] [Abstract][Full Text] [Related]
17. Synthesis and assembly of viral membrane proteins. Lodish HF; Wirth D; Porter M Ann N Y Acad Sci; 1980; 343():319-37. PubMed ID: 6249165 [No Abstract] [Full Text] [Related]
18. Fatty acid binding: a new kind of posttranslational modification of membrane proteins. Schmidt MF Curr Top Microbiol Immunol; 1983; 102():101-29. PubMed ID: 6301760 [No Abstract] [Full Text] [Related]