课题基金 / 基金详情

INDUCTION OF A PROTHROMBINASE GENE DURING HEPATITIS

INDUCTION OF A PROTHROMBINASE GENE DURING HEPATITIS
肝炎期间凝血酶原基因的诱导
批准号:
3146062
负责人:
JULIAN L LEIBOWITZ
金额:
$12.06万
依托单位国家:
美国
项目类别:
财政年份:
1992
资助国家:
美国
项目状态:
已结题
起止时间:
1992-02-01 至 1997-01-31

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中文摘要
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英文摘要
This grant proposes to study the mechanism of induction of a biologically important inflammatory mediator, a macrophage/monocyte procoagulant (a prothrombinase). This molecule is an important mediator in the pathogenesis of hepatic lesions produced during mouse hepatitis virus (MHV) infection. cDNAs representing the MHV-induced procoagulant gene will be synthesized, cloned, and sequenced. These cDNA clones will be used to directly determine if up-regulation of the procoagulant gene occurs at the level of transcription. The possibilities of translational up-regulation and post-translational activation of a procoagulant precursor protein will also be investigated. Genomic clones of the MHV-induced procoagulant gene will be isolated. These will be and characterized as to their organization by Southern blot hybridization and S1 nuclease mapping as well as sequenced. Sequences upstream from the procoagulant coding sequences will be characterized as to their ability to function as promoter element for this gene. A deletion analysis of the promoter region will be performed to determine the contribution different sequence motifs make to the procoagulant promoter, and as to their inducibility by MHV infection. DNA footprinting will further define cis-acting regulatory elements present in this gene. Studies to determine which MHV genes are important to the induction of procoagulant will be initiated. Molecular clones representing individual MHV genes will be expressed in macrophages and their effect on procoagulant activity determined. MHV gene products which bind to putative procoagulant regulatory elements will be sought through DNA binding assays.
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Conserved RNA Secondary Structures in three Betacoronaviruses: MHV, BCoV, and MERS-CoV
A Genetic Analysis of Pneumotropism and Pneumovirulence in an MHV-1 Model of Sars
A Genetic Analysis of Pneumotropism and Pneumovirulence in an MHV-1 Model of Sars
Role of the MHV S Protein Fc Receptor Activity in Immune Evasion in the CNS