EXPRESSION AND REGULATION OF VACCINIA VIRUS LATE GENES
EXPRESSION AND REGULATION OF VACCINIA VIRUS LATE GENES
批准号:
3131338
负责人:
DENNIS E. HRUBY
金额:
$10.15万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1983
资助国家:
美国
项目状态:
已结题
起止时间:
1983-12-01 至 1989-11-30
关键词:
DNA footprinting cell free system endonuclease gel electrophoresis gene expression gene mutation genetic manipulation genetic mapping genetic markers genetic promoter element genetic regulation genetic transcription genetic translation immunofluorescence technique molecular cloning molecular genetics nucleic acid probes nucleic acid sequence plasmids temperature sensitive mutant vaccinia virus viral rescue virus DNA virus RNA virus genetics virus protein virus replication
中文摘要
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英文摘要
The molecular mechanisms that are responsible for the expression and
regulation of vaccinia virus (VV) late genes remain an enigma. This class
of VV genes, which represents about half of the VV genetic potential, is
expressed only after viral DNA synthesis has begun. VV late transcripts
from any single locus are highly heterogeneous in size, apparently
initiating from a number of distinct 5' sites and terminating randomly.
The few VV late genes that have been mapped and sequenced to date, have
revealed the conspicious absence of regulatory elements previously
recognized as essential in other eukaryotic or prokaryotic systems, or even
VV early genes. Thus, the identity of the VV late gene control regions and
the viral proteins which presumably recognize them are unknown. Due to the
complexity of the situation, one approach to unraveling these questions is
to select a few VV late genes of interest, and to subject them to intense
molecular biological scrutiny. Towards this end, a number of VV genes
which participate in the late phase of VV replication [Alpha-amanitin
resistance, ts17, and a tandem array of six non-coordinately expressed VV
late genes] have recently been identified, mapped, and sequenced. The
experiments seek to use the information obtained thus far as a basis for:
1) A comparative kinetic analysis of how and when these genes are
expressed. 2) Preparation of immunological reagents sufficient to enable
functional identification of the encoded gene products and how they
participate in the viral life cycle. 3) Using directed-genetics, gene
fusion, and marker rescue techniques to reveal the salient regulatory
features of each gene. 4) Using footprinting and gel retardation
methodologies to identify the viral and/or cellular proteins which interact
with VV promoter and terminator regions. It is anticipated that such
experiments will provide considerable insight into the mechanisms which VV
employes to achieve the ordered expression of its complex developmental
program within the infected cell. This information may facilitate the
design and construction of future VV recombinant vaccine strains to be used
for the prophylaxsis of infectious diseases.
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依托单位:--
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海外基金