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高分辨率分析滤泡性淋巴瘤基因组揭示了体细胞非等位基因杂合性丢失的频发点和靶向单个基因的拷贝数改变。

High resolution analysis of follicular lymphoma genomes reveals somatic recurrent sites of copy-neutral loss of heterozygosity and copy number alterations that target single genes.

机构信息

Center for Lymphoid Cancer, British Columbia Cancer Agency, Vancouver, BC, Canada.

出版信息

Genes Chromosomes Cancer. 2010 Aug;49(8):669-81. doi: 10.1002/gcc.20780.

Abstract

A multiplatform approach, including conventional cytogenetic techniques, BAC array comparative genomic hybridization, and Affymetrix 500K SNP arrays, was applied to the study of the tumor genomes of 25 follicular lymphoma biopsy samples with paired normal DNA samples to characterize balanced translocations, copy number imbalances, and copy-neutral loss of heterozygosity (cnLOH). In addition to the t(14;18), eight unique balanced translocations were found. Commonly reported FL-associated copy number regions were revealed including losses of 1p32-36, 6q, and 10q, and gains of 1q, 6p, 7, 12, 18, and X. The most frequent regions affected by copy-neutral loss of heterozygosity were 1p36.33 (28%), 6p21.3 (20%), 12q21.2-q24.33 (16%), and 16p13.3 (24%). We also identified by SNP analysis, 45 aberrant regions that each affected one gene, including CDKN2A, CDKN2B, FHIT, KIT, PEX14, and PTPRD, which were associated with canonical pathways involved in tumor development. This study illustrates the power of using complementary high-resolution platforms on paired tumor/normal specimens and computational analysis to provide potential insights into the significance of single-gene somatic aberrations in FL tumorigenesis.

摘要

采用了一种多平台方法,包括常规细胞遗传学技术、BAC 阵列比较基因组杂交和 Affymetrix 500K SNP 阵列,对 25 例滤泡性淋巴瘤活检样本的肿瘤基因组和配对的正常 DNA 样本进行了研究,以鉴定平衡易位、拷贝数失衡和拷贝数中性杂合性丢失(cnLOH)。除了 t(14;18) 之外,还发现了 8 个独特的平衡易位。揭示了常见的与 FL 相关的拷贝数区域缺失,包括 1p32-36、6q 和 10q 的缺失,以及 1q、6p、7、12、18 和 X 的获得。受拷贝数中性杂合性丢失影响最频繁的区域是 1p36.33(28%)、6p21.3(20%)、12q21.2-q24.33(16%)和 16p13.3(24%)。通过 SNP 分析,我们还鉴定了 45 个异常区域,每个区域都影响一个基因,包括 CDKN2A、CDKN2B、FHIT、KIT、PEX14 和 PTPRD,这些基因与涉及肿瘤发展的经典途径有关。这项研究说明了使用互补的高分辨率平台对配对的肿瘤/正常样本进行分析和计算分析的强大功能,为在 FL 肿瘤发生中单个基因体细胞异常的意义提供了潜在的见解。

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