VACCINIA DNA-LIGASE COMPLEMENTS SACCHAROMYCES-CEREVISIAE CDC9, LOCALIZES IN CYTOPLASMIC FACTORIES AND AFFECTS VIRULENCE AND VIRUS SENSITIVITY TO DNA DAMAGING AGENTS
被引:59
作者:
KERR, SM
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机构:UNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, S PK RD, OXFORD OX1 3RE, ENGLAND
KERR, SM
JOHNSTON, LH
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机构:UNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, S PK RD, OXFORD OX1 3RE, ENGLAND
JOHNSTON, LH
ODELL, M
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机构:UNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, S PK RD, OXFORD OX1 3RE, ENGLAND
ODELL, M
DUNCAN, SA
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机构:UNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, S PK RD, OXFORD OX1 3RE, ENGLAND
DUNCAN, SA
LAW, KM
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机构:UNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, S PK RD, OXFORD OX1 3RE, ENGLAND
LAW, KM
SMITH, GL
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机构:UNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, S PK RD, OXFORD OX1 3RE, ENGLAND
SMITH, GL
机构:
[1] UNIV OXFORD, SIR WILLIAM DUNN SCH PATHOL, S PK RD, OXFORD OX1 3RE, ENGLAND
[2] NATL INST MED RES, YEAST GENET LAB, LONDON NW7 1AA, ENGLAND
ATTENUATION;
CDC9;
COMPLEMENTATION;
CYTOPLASMIC FACTORIES;
DNA LIGASE;
VACCINA VIRUS;
D O I:
10.1002/j.1460-2075.1991.tb05012.x
中图分类号:
Q5 [生物化学];
Q7 [分子生物学];
学科分类号:
071010 ;
081704 ;
摘要:
The functional compatability of vaccinia virus DNA ligase with eukaryotic counterparts was demonstrated by its ability to complement Saccharomyces cerevisiae cdc9. The vaccinia DNA ligase is a 63 kDa protein expressed early during infection that is non-essential for virus DNA replication and recombination in cultured cells. This implies complementation by a mammalian DNA ligase, yet no obvious recruitment of host DNA ligase I from the nucleus to the cytoplasm was observed during infection. An antiserum raised against a peptide conserved in eukaryotic DNA ligases identified the virus enzyme in discrete cytoplasmic 'factories', the sites of virus DNA synthesis, demonstrating immunological cross-reactivity between host DNA ligase I and the vaccinia enzyme. DNA ligase was not detected in the factories of a mutant virus lacking the ligase gene. Despite this, no difference in growth between wild-type (WT) and mutant virus was detectable even in Bloom's syndrome cells which have reduced DNA ligase I activity. However, DNA ligase negative virus showed an increased sensitivity to UV or bleomycin in cultured cells, and the importance of DNA ligase for virus virulence in vivo was demonstrated by the attenuated phenotype of the deletion mutant in intranasally infected mice.