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首页> 外文期刊>Cytogenetic and genome research >Close encounters: RIDGEs, hyperacetylated chromatin, radiation breakpoints and genes differentially expressed in tumors cluster at specific human chromosome regions.
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Close encounters: RIDGEs, hyperacetylated chromatin, radiation breakpoints and genes differentially expressed in tumors cluster at specific human chromosome regions.

机译:亲密接触:RIDGE,超乙酰化染色质,辐射断点和在肿瘤中差异表达的基因聚集在特定的人类染色体区域。

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摘要

Through analysis of published data we positioned along human chromosome idiograms (850 bands) hyperacetylated H4 chromatin (H4(+a)), regions of increased gene expression (RIDGEs), antiRIDGEs, ionizing radiation breakpoints, integration sites of highly expressed GFP reporter constructs and candidate genes differentially expressed in tumor tissues. Highly expressed regions of the human genome (especially RIDGEs) seem to be more sensitive to radiation damage. Comparatively, antiRIDGEs appear as radiation resistant. Tumor deregulated genes tend to cluster along and in the neighborhood of RIDGEs. We detected 35 clusters of genes differentially expressed in tumor tissues which colocalize with RIDGEs; 23 of these clusters also exhibit radiation damage. RIDGEs also accumulate highly expressed GFP reporter construct integration sites, evolutionary breakpoints as well as amplicons and/or deletion-prone chromosome segments in tumors. This could indicate that abnormal gene (up- or down-) regulation might require high-throughput transcription nuclear micro-environments to occur. Our results suggest that the human genome is a combination of regions with marked disparities regarding the topology of increased gene expression, ionizing radiation damage, evolutionary breakpoints, integration sites, and abnormal gene regulation. Copyright 2010 S. Karger AG, Basel.
机译:通过分析已发布的数据,我们沿着人类染色体特征图(850条带)定位了超乙酰化的H4染色质(H4(+ a)),基因表达增强的区域(RIDGE),antiRIDGE,电离辐射断点,高表达的GFP报告基因构建体的整合位点和在肿瘤组织中差异表达的候选基因。人类基因组的高度表达区域(尤其是RIDGE)似乎对辐射损伤更为敏感。相对而言,antiRIDGEs具有抗辐射性。肿瘤失调的基因倾向于沿RIDGEs及其附近聚集。我们检测到35个在肿瘤组织中差异表达的基因簇,这些基因与RIDGEs共定位。这些星团中的23个也表现出辐射损伤。 RIDGEs还在肿瘤中积累高表达的GFP报告基因构建体整合位点,进化断点以及扩增子和/或易于缺失的染色体片段。这可能表明异常的基因(上调或下调)调节可能需要高通量转录核微环境的发生。我们的结果表明,人类基因组是有关基因表达增加,电离辐射损伤,进化断点,整合位点和异常基因调控的拓扑结构存在明显差异的区域的组合。版权所有2010 S. Karger AG,巴塞尔。

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