Factors Influencing Genetic Transcription Initiation And Termination
Factors Influencing Genetic Transcription Initiation And Termination
批准号:
8149217
负责人:
ROBERT J CROUCH
金额:
$127.08万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
中文摘要
RNA形成部分的研究旨在理解和利用细胞DNA复制过程,HIV复制与这些细胞事件的关系,以及如何将这些信息用于治疗目的。我们正在研究在DNA复制和/或转录过程中形成的RNA/DNA杂交体的形成和分辨率。核糖核酸酶H是参与去除RNA/DNA杂交体中RNA的重要酶,在病毒RNA基因组转化为DNA的过程中,与细胞中的DNA复制和HIV复制密切相关。细胞的RNA酶H和HIV利用相似的蛋白质结构来切割RNA的酶机制是相同的。利用细胞内的rnase H,正在开发改变特定疾病相关基因水平的药物。调控RNases H的表达可增强药物的疗效。在这些努力中采用了分子遗传学、生物化学和小鼠动物模型。
英文摘要
Research in the Section on Formation of RNA is directed toward understanding and utilization of processes involved in cellular DNA replication, the relationship of HIV replication to these cellular events, and how to use this information for therapeutic purposes. We are examining the formation and resolution of RNA/DNA hybrids formed during DNA replication and/or transcription. Ribonucleases H are important enzymes participating in removal of the RNA of the RNA/DNA hybrids and are intimately related to DNA replication in cells and in HIV replication, during the conversion of the RNA genome of this virus to DNA. RNases H of cells and HIV share common enzymatic mechanisms of cleavage of RNA utilizing similar protein architectures. Drugs to alter levels of specific disease-related genes are being developed to take advantage of RNases H within the cell. Regulated expression of RNases H could enhance the efficacy of the drugs. Molecular genetic, biochemical, and mouse animal models are employed in these efforts.
During transcription, RNA/DNA hybrids can form and are usually cleaved by RNase H. RNase H recognizes and specifically cleaves RNA of hybrids by several contacts to the RNA and interactions with the DNA strand using a two metal ion mechanism. We now know that the eukaryotic RNases H are more complex than the bacterial enzymes, and that the enzymatic activity of eukaryotic RNases H1 form a complex when binding to an RNA/DNA hybrid that enables the enzyme to be more efficient when degrading certain types of RNA/DNA hybrids. In collaboration with the groups at NCI- Frederick, we have been examined inhibitors of RNases H that could prove useful in HIV-AIDS therapy. From our earlier work showing that the mouse RNase H1 is critical for development, we know that it is important to have drugs that specifically target the HIV-AIDS RNase H not the cellular enzyme. Screening of potential drugs now includes use of the human RNase H1 isolated in our laboratory.
AGS is a syndrome is characterized as a severe neurological disorder that mimics in utero viral infection resulting in loss of white matter in the brain and producing high levels of interferon alpha in the cerebral spinal fluid. The disorder in many of the AGS patients results from mutations in any of the three subunits of human RNase H2. Our work on the homologous enzyme from Saccharomyces cerevisiae was the first describing the three subunit composition of eukaryotic RNases H2. Deletion of any genes encoding the three subunits of RNase H2 in S. cerevisiae does not result in any major phenotype unless the mutant is combined with any of several other gene deletions, a condition known as synthetic lethality. We are currently examining the biochemical properties of human and S. cerevisiae RNase H2, and, in particular, are examining the role of RNase H2 in DNA replication, repair and recombination. Our in vitro studies show that most of the proteins with mutations found in AGS patients have nearly normal enzymatic activity but it seems likely that these mutations affect interaction with other cellular proteins or components and from recent structural analysis, some weakening of the subunit interactions may occur leading to more severe problems in brain than in other organs.
Recent work at NIEHS has found that S. cerevisiae DNA polymerases mistakenly incorporate ribonucleotides rather than deoxynucleotides into DNA during replication. Removal of the ribonucleotides appears to depend on RNase H2 cleavage.
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Factors Influencing Genetic Transcription Initiation
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批准号:6811573
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项目类别:
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资助金额:$0.0万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And
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批准号:6991140
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资助金额:$0.0万
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负责人:ROBERT J CROUCH
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依托单位:
Factors For Genetic Transcription Initiation/Termination
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批准号:7198237
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资助金额:$0.0万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And Termination
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批准号:9550250
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资助金额:$119.09万
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负责人:ROBERT J CROUCH
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Factors Influencing Genetic Transcription Initiation And Termination
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批准号:10001286
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资助金额:$155.39万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And
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批准号:6541082
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资助金额:$0.0万
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负责人:ROBERT J CROUCH
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Factors Influencing Genetic Transcription Initiation And Termination
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批准号:8351083
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资助金额:$117.93万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And Termination
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批准号:8736794
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资助金额:$121.01万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And Termination
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批准号:10913216
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项目类别:
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资助金额:$164.06万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And
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批准号:6677325
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资助金额:$0.0万
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负责人:ROBERT J CROUCH
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Factors Influencing Genetic Transcription Initiation And Termination
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批准号:10688909
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资助金额:$126.51万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And Termination
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批准号:7734665
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资助金额:$112.38万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And
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批准号:7333367
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资助金额:$0.0万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And Termination
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批准号:10266452
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项目类别:
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资助金额:$145.11万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And Termination
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批准号:8553821
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资助金额:$113.1万
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负责人:ROBERT J CROUCH
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依托单位:
FACTORS INFLUENCING GENETIC TRANSCRIPTION INITIATION AND TERMINATION
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批准号:6290149
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资助金额:$0.0万
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负责人:ROBERT J CROUCH
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依托单位:
FACTORS INFLUENCING GENETIC TRANSCRIPTION INITIATION AND TERMINATION
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批准号:6432489
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资助金额:$0.0万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And Termination
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批准号:7968447
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项目类别:
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资助金额:$116.72万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And Termination
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批准号:9150042
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项目类别:
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资助金额:$120.66万
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负责人:ROBERT J CROUCH
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依托单位:
Factors Influencing Genetic Transcription Initiation And Termination
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批准号:7594108
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项目类别:
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资助金额:$107.16万
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负责人:ROBERT J CROUCH
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依托单位:
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