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ENZYMOLOGY OF DNA DOUBLE STRAND BREAK REJOINING

ENZYMOLOGY OF DNA DOUBLE STRAND BREAK REJOINING
DNA 双链断裂重新连接的酶学
批准号:
2023247
负责人:
William F Morgan
金额:
$15.98万
依托单位国家:
美国
项目类别:
财政年份:
1997
资助国家:
美国
项目状态:
已结题
起止时间:
1997-01-01 至 1999-12-31

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中文摘要
翻译
电离辐射和一些仿射剂诱导DNA倍增 链断裂(DSB)。细胞机制重新连接这些断裂的末端 偶尔会导致染色体异常,如易位。 染色体易位会导致基因表达的改变, 转化的细胞表型和肿瘤发生。参与其中的蛋白质 DSB重新加入尚未完全确定;然而,一些 DNA聚合酶、Ku和p350(DNA-PK)等蛋白质已经被 与这一反应有关。DNA聚合酶已被证明参与其中, 在末端连接反应的后期,在填充单链缺口时。这个 人类Ku异源二聚体和p350,DNA依赖蛋白的组成部分 激酶(DNA-PK)被认为参与了DSB重联反应 因为缺乏这些因子的突变细胞也对 电离辐射和DNA末端连接水平下降。虽然 这些蛋白质与DSB的重新连接有关,它们的个体 在DSB重新加入中的作用尚未明确确定。 这项提案的总体目标是确定哺乳动物体内的因子 参与DNA双链断裂(DSB)两端重新连接的细胞。 利用纯化的无核酸外切酶Klenow片段(KF)的研究证明 它能够对齐DSB的两端,并在缝隙中合成DNA 在体外(King等人)(1994年)。此外,对得到的序列进行排序 这种聚合酶留下的连接显示出与 限制性内切酶诱导的非同源突变谱 中国仓鼠卵巢(CHO)细胞中APRT基因座的重组 (Phillips和Morgan,1994)。 1.根据这一证据和其他证据(见初步结果),我们 假设哺乳动物DNA聚合酶作用于DSB的两端 在一起。 2.我们还假设其他一些已知或未知的因素 可能与DNA聚合酶相互作用,促进DNA末端连接 哺乳动物细胞。 3.此外,我们假设DNA的某些特征 (例如,序列同源性或错配的小范围)将影响 反式作用因子连接DNA末端的效率。
英文摘要
Ionizing Radiation and a number of radiomimetic agents induce DNA double strand breaks (DSB). Cellular mechanisms rejoin these broken ends occasionally resulting in chromosomal aberrations such as translocations. Chromosomal translocations can lead to altered gene expression, transformed cellular phenotype and oncogenesis. The proteins involved in DSB rejoining have not been fully identified; however, a number of proteins such as DNA polymerase, Ku and p350(DNA -pk) have been implicated in the reaction. DNA polymerase has been shown to be involved, late in the end-joining reaction, in filling in single strand gaps. The human Ku heterodimer and p350, components of a DNA dependent protein kinase (DNA-pk) are thought to be involved in DSB rejoining reaction because mutant cells deficient in these factors are also sensitive to ionizing radiation and show decreased levels of DNA end joining. Although these proteins have been implicated in DSB rejoining, their individual roles in DSB rejoining have not been clearly established. The overall goal of this proposal is to identify the factors in mammalian cells involved in rejoining two ends of a DNA double strand break (DSB). Studies using purified exonuclease-free Klenow fragment (KF) demonstrated its capacity to align two ends of a DSB and synthesize DNA across the gap in vitro (King et al. 1994). Furthermore, sequencing of the resultant junctions left by this polymerase showed striking similarities to the mutational spectra seen for restriction enzyme-induced nonhomologous recombination in the APRT locus in Chinese Hamster Ovary (CHO) cells (Phillips and Morgan 1994). 1. Based on this and other evidence (see Preliminary Results), we hypothesize that mammalian DNA polymerase acts to bring two ends of a DSB together. 2. We also hypothesize that a number of other known or unknown factors may interact with DNA polymerase to facilitate DNA end-joining in mammalian cells. 3. Furthermore, we hypothesize that certain features of the DNA ends (e.g. small stretches of sequence homology or mismatches)will affect the efficiency of trans-acting factors to join DNA ends.
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2010 Radiation Oncology Gordon Research Conference
  • 批准号:
    7800639
  • 项目类别:
  • 资助金额:
    $1.0万
  • 财政年份:
    2010
  • 负责人:
    William F Morgan
  • 依托单位:
High Throughput Screens of Novel Radiation Sensitizers and Protectors
High Throughput Screens of Novel Radiation Sensitizers and Protectors
High Throughput Screens of Novel Radiation Sensitizers and Protectors
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