EXPRESSION AND REGULATION OF VACCINIA VIRUS LATE GENES
EXPRESSION AND REGULATION OF VACCINIA VIRUS LATE GENES
批准号:
3131337
负责人:
DENNIS E. HRUBY
金额:
$9.16万
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 1986-11-30
关键词:
cell free system endonuclease gel electrophoresis gene expression genetic manipulation genetic markers genetic regulation genetic transcription genetic translation molecular cloning nucleic acid sequence plasmids temperature sensitive mutant vaccinia virus virus DNA virus RNA virus genetics virus replication
中文摘要
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英文摘要
For simplicity, vaccinia virus (VV) genes are routinely grouped into early
or late classes depending on whether their expression is independent of, or
dependent on, viral DNA synthesis. Very little is known concerning the
mechanisms which govern the switch between early and late gene expression
modes during the VV replicative cycle. Recently a considerable amount of
data has been obtained concerning the structure, nucleotide sequence, and
regulation of some "typical" early VV genetic loci. This information
should provide the basis for the subsequent identification of VV early gene
regulatory signals and the factors which recognize them. To date however,
similar analyses have not been carried on the VV late genes. It is towards
this problem that the experiments outlined in this proposal are directed.
The genomic location of a number of VV late genes will be determined by two
methods. First, DNA-mediated marker rescue techniques will be employed to
map the positions of temperature-sensitive or drug-resistant VV mutants
which exhibit a defective late phenotype in vivo. Second, VV late mRNA
will be translated in cell-free protein synthesizing systems and late gene
products identified on the basis of their enzymatic activities (virion
enzymes) or polypeptide structure (e.g., VP62, or VP11). These cell-free
assays can then be coupled with hybrid-arrest or hybrid-selection
procedures in order to map these functions. Once representative VV late
genes have been located, state-of-the-art recombinant DNA and molecular
biology techniques will be used to study the structure of the
transcriptional units, how they are expressed and regulated during
infection, and the nature and activity of the encoded polypeptides. When
compared and contrasted to the information already available concerning VV
early genes, these results should provide some insight into the mechanisms
which VV employs to achieve the ordered expression of it's complex
developmental program within the infected cell.
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