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首页> 外文期刊>Genes, Chromosomes and Cancer >Combined restriction landmark genomic scanning and virtual genome scans identify a novel human homeobox gene, ALX3, that is hypermethylated in neuroblastoma.
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Combined restriction landmark genomic scanning and virtual genome scans identify a novel human homeobox gene, ALX3, that is hypermethylated in neuroblastoma.

机译:结合限制性地标基因组扫描和虚拟基因组扫描,可以鉴定出一种新的人类同源盒基因ALX3,该基因在神经母细胞瘤中甲基化程度较高。

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Restriction landmark genome scanning (RLGS) allows comparative analysis of several thousand DNA fragments in the genome and provides a means to identify CpG islands that are altered in tumor cells as a result of amplification, deletion, or methylation changes. We have developed a novel informatics tool, designated virtual genome scan (VGS), that makes it possible to predict automatically the sequence of fragments in RLGS patterns by matching to the human genome sequence. A combination of RLGS and VGS was utilized to identify changes of chromosome 1-derived fragments in neuroblastoma. A NotI-EcoRV fragment was found to be absent frequently in neuroblastoma cell line RLGS patterns. Sequence prediction by VGS as well as cloning of the fragment showed that it contained a CpG island that is part of the human orthologue of the hamster homeobox gene Alx3. Expression analysis in a panel of human and mouse tissues showed predominant expression of ALX3 in brain tissue. Methylation-sensitive sequence analysis of the promoter region in neuroblastoma cell lines indicated that methylation of specific sequences correlated with repression of the ALX3 gene. Expression was re-induced after treatment with the methylation inhibitor 5-aza-2'-deoxycytidine. Promoter methylation analysis of ALX3 in primary neuroblastoma tumors, using methylation-sensitive polymerase chain reaction, found preferential ALX3 methylation in advanced-stage tumors. The VGS approach we have implemented in combination with RLGS is useful for the identification of genomic CpG island-related methylation changes or deletions in cancer. Copyright 2002 Wiley-Liss, Inc.
机译:限制性地标基因组扫描(RLGS)允许对基因组中的数千个DNA片段进行比较分析,并提供一种手段来鉴定由于扩增,缺失或甲基化改变而在肿瘤细胞中改变的CpG岛。我们开发了一种新颖的信息学工具,称为虚拟基因组扫描(VGS),该工具可以通过与人类基因组序列匹配来自动预测RLGS模式中的片段序列。 RLGS和VGS的组合用于鉴定神经母细胞瘤中染色体1衍生片段的变化。发现在神经母细胞瘤细胞系RLGS模式中经常缺席NotI-EcoRV片段。通过VGS进行的序列预测以及该片段的克隆表明,它包含一个CpG岛,该岛是仓鼠同源盒基因Alx3的人类直系同源物的一部分。在一组人和小鼠组织中的表达分析表明,ALX3在脑组织中主要表达。对神经母细胞瘤细胞系中启动子区域的甲基化敏感序列分析表明,特定序列的甲基化与ALX3基因的抑制有关。用甲基化抑制剂5-氮杂-2'-脱氧胞苷处理后,表达被重新诱导。使用甲基化敏感的聚合酶链反应,对原发性神经母细胞瘤肿瘤中的ALX3进行启动子甲基化分析,发现晚期肿瘤中存在优先的ALX3甲基化。我们与RLGS结合实施的VGS方法可用于鉴定基因组CpG岛相关的甲基化变化或癌症缺失。版权所有2002 Wiley-Liss,Inc.

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