MUTATIONAL ANALYSIS OF THE VESICULAR STOMATITIS-VIRUS GLYCOPROTEIN-G FOR MEMBRANE-FUSION DOMAINS

被引:68
作者
LI, Y [1 ]
DRONE, C [1 ]
SAT, E [1 ]
GHOSH, HP [1 ]
机构
[1] MCMASTER UNIV,DEPT BIOCHEM,1200 MAIN ST W,HAMILTON L8N 3Z5,ONTARIO,CANADA
关键词
D O I
10.1128/JVI.67.7.4070-4077.1993
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The spike glycoprotein G of vesicular stomatitis virus (VSV) induces membrane fusion at low pH. We used linker insertion mutagenesis to characterize the domain(s) of G glycoprotein involved in low-pH-induced membrane fusion. Two or three amino acids were inserted in frame into various positions in the extracellular domain of G, and 14 mutants were isolated. All of the mutants expressed fully glycosylated proteins in COS cells. However, only seven mutant G glycoproteins were transported to the cell surface. Two of these mutants, D1 and A6, showed wild-type fusogenic properties. The mutant A2 had a temperature-sensitive defect in the transport of the mutant G glycoprotein to the cell surface. The other four mutants, H2, H5, H10, and A4, although present in cell surface, failed to induce cell fusion when cells expressing these mutant glycoproteins were exposed to acidic pH. These four mutant G proteins could form trimers, indicating that the defect in fusion was not due to defective oligomerization. One of these mutations, H2, is within a region of conserved, uncharged amino acids that has been proposed as a possible fusogenic sequence. The mutation in H5 was about 70 amino acids downstream of the mutation in H2, while mutations in H10 and A4 were about 300 amino acids downstream of the mutation in H2. Conserved sequences were also noted in the H10 and A4 segment. The results suggest that in the case of VSV G glycoprotein, the fusogenic activity may involve several spatially separated regions in the extracellular domain of the protein.
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页码:4070 / 4077
页数:8
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