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FUSION-DEFECTIVE MUTANTS OF MOUSE HEPATITIS VIRUS-A59 CONTAIN A MUTATION IN THE SPIKE PROTEIN CLEAVAGE SIGNAL
被引:105
作者:
GOMBOLD, JL
[1
]
HINGLEY, ST
[1
]
WEISS, SR
[1
]
机构:
[1] UNIV PENN,SCH MED,DEPT MICROBIOL,PHILADELPHIA,PA 19104
关键词:
D O I:
10.1128/JVI.67.8.4504-4512.1993
中图分类号:
Q93 [微生物学];
学科分类号:
071005 ;
100705 ;
摘要:
Infection of primary mouse glial cell cultures with mouse hepatitis vims strain A59 results in a productive, persistent infection, but without any obvious cytopathic effect. Mutant viruses isolated from infected glial cultures 16 to 18 weeks postinfection replicate with kinetics similar to those of wild-type vims but produce small plaques on fibroblasts and cause only minimal levels of cell-to-cell fusion under conditions in which wild type causes nearly complete cell fusion. However, since extensive fusion is present in mutant-infected cells at late times postinfection, the defect is actually a delay in kinetics rather than an absolute block in activity. Addition of trypsin to mutant-infected fibroblast cultures enhanced cell fusion a small (two- to fivefold) but significant degree, indicating that the defect could be due to a lack of cleavage of the viral spike (fusion) protein. Sequencing of portions of the spike genes of six fusion-defective mutants revealed that all contained the same single nucleotide mutation resulting in a substitution of aspartic acid for histidine in the spike cleavage signal. Mutant virions contained only the 180-kDa form of spike protein, suggesting that this mutation prevented the normal proteolytic cleavage of the 180-kDa protein into the 90-kDa subunits. Examination of revertants of the mutants supports this hypothesis. Acquisition of fusion competence correlates with the replacement of the negatively charged aspartic acid with either the wild-type histidine or a nonpolar amino acid and the restoration of spike protein cleavage. These data confirm and extend previous reports concluding cleavage of S is required for efficient cell-cell fusion by mouse hepatitis vims but not for virus-cell fusion (infectivity).
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页码:4504 / 4512
页数:9
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