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Integration of high-resolution array comparative genomic hybridization analysis of chromosome 16q with expression array data refines common regions of loss at16q23-qter and identifies underlying candidate tumor suppressor genes in prostate cancer

机译:将16q染色体的高分辨率阵列比较基因组杂交分析与表达阵列数据进行整合,可精炼16q23-qter的常见缺失区域,并鉴定前列腺癌中潜在的候选肿瘤抑制基因

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摘要

We have constructed a high-resolution genomic microarray of human chromosome 16q, and used it for comparative genomic hybridization analysis of 16 prostate tumors. We demarcated 10 regions of genomic loss between 16q23.1 and 16qter that occurred in five or more samples. Mining expression array data from four independent studies allowed us to identify 11 genes that were frequently underexpressed in prostate cancer and that co-localized with a region of genomic loss. Quantitative expression analyses of these genes in matched tumor and benign tissue from 13 patients showed that six of these 11 (WWOX, WFDC1, MAF, FOXF1, MVD and the predicted novel transcript Q9H0B8 (NM_031476)) had significant and consistent downregulation in the tumors relative to normal prostate tissue expression making them candidate tumor suppressor genes.
机译:我们已经构建了人类16q染色体的高分辨率基因组微阵列,并将其用于16个前列腺肿瘤的比较基因组杂交分析。我们划定了在五个或更多样本中发生的16q23.1和16qter之间的10个基因组丢失区域。来自四项独立研究的表达阵列数据的挖掘使我们能够鉴定出11种在前列腺癌中经常表达不足且与基因组缺失区域共定位的基因。这些基因在13例患者的匹配肿瘤和良性组织中的定量表达分析表明,这11例中的6例(WWOX,WFDC1,MAF,FOXF1,MVD和预测的新转录本Q9H0B8(NM_031476))在肿瘤中具有显着且一致的下调正常前列腺组织表达,使其成为候选的抑癌基因。

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