课题基金 / 基金详情

Cancer Susceptibility and S Phase Initiation Sites

Cancer Susceptibility and S Phase Initiation Sites
癌症易感性和 S 期起始位点
批准号:
6920930
负责人:
David G. Kaufman
金额:
$28.24万
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-12-01 至 2010-03-31

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项目成果

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中文摘要
翻译
描述(由申请方提供):基因缺失和序列突变是评价肿瘤病因和进展时通常考虑的机制。在过去几十年中,这一专题得到了广泛的研究。同样,染色体数量和结构改变的发展所表现的遗传不稳定性也是癌症发展的典型特征,这一直是深入研究的主题。最近,人们认识到许多癌症表现出与基因突变不一致的基因表达改变。这些变化被认为与这些基因的启动子中DNA甲基化的改变以及这些启动子位点的组蛋白修饰有关。对于确定可以解释后一种类型的癌症相关变化的机制的努力要少得多。在这个项目中,我们试图了解的机制,可以解释过渡的非印迹基因的等位基因从同步到非同步复制时间在致癌作用。虽然已知复制时间的这种变化可以导致在许多类型的癌症中观察到的基因表达的改变,但负责复制时间保守的确切机制尚不清楚。我们发现DNA的复制和转录通常都是在基因启动子和相关的CpG岛或其附近启动的。在这个项目中,我们试图更好地定义在转录启动子中发现的DNA复制起点的功能所需的基本基因组元件。我们还提出了以下问题:在起源发射时间的差异对应于不同的结合时间的特定因素所必需的起源激活?在正常的人类细胞中,是否存在减缓或暂停DNA复制叉进程的位点?这些位点是否参与调控相邻DNA复制起点的激活时间顺序?为了深入了解这些机制并回答这些问题,我们提出以下建议 具体目标。具体目标1:表征HPRT复制起点活性所必需的遗传元件。 具体目标二:分析复制前复合物在HPRT和G6PD复制起点对女性人类细胞中活性和非活性X染色体的结合。 具体目标3:分析人类基因组早期复制区域的复制结构和潜在的分叉进展障碍。
英文摘要
DESCRIPTION (provided by applicant): Deletions and sequence mutations of genes are the mechanisms typically considered when evaluating the etiology and progression of neoplasia. This topic has been extensively examined over the past several decades. Likewise, genetic instability as manifested by development of numerical and structural alterations of chromosomes is also a typical feature of cancer development that has been the subject of intense study. More recently it has been recognized that many cancers manifest alterations in gene expression that are not coincident with gene mutations. These changes are thought to be associated with alterations of DNA methylation in the promoter of these genes and by histone modifications at the sites of these promoters. There have been far fewer efforts to identify the mechanisms that can explain these latter types of cancer-related changes. In this project we seek to understand mechanisms that can explain the transition of alleles of non-imprinted genes from synchronous to non-synchronous replication timing in carcinogenesis. While it is known that such shifts in replication timing can lead to the alterations in gene expression seen in many types of cancers, the exact mechanisms responsible for the conservation of replication timing are not known. Others and we found that both DNA replication and transcription are often initiated in or near the gene promoter and associated CpG island. In this project we seek to better define the essential genomic elements required for the function of DNA replication origins found at transcriptional promoters. We also pose the following questions: Do differences in origin firing times correspond to differences in the binding time of specific factors necessary for origin activation? Are there sites in normal human cells that slow or pause the progression of DNA replication forks? Are such sites involved in the regulation of the order of activation time of adjacent origins of DNA replication? To gain insights into these mechanisms and answer these questions we propose the following Specific Aims. Specific Aim 1: Characterize genetic elements necessary for activity of the HPRT origin of replication. Specific Aim 2: Analyze binding of the pre-replication complex at the HPRT and G6PD origins of replication on the active and the inactive X chromosome in female human cells. Specific Aim 3: Analyze the architecture of replication and potential fork progression barriers in an early replicated region of the human genome.
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