Weber R G, Hoischen A, Ehrler M, Zipper P, Kaulich K, Blaschke B, Becker A J, Weber-Mangal S, Jauch A, Radlwimmer B, Schramm J, Wiestler O D, Lichter P, Reifenberger G
Department of Human Genetics, Rheinische Friedrich-Wilhelms-University, Bonn, Germany.
Oncogene. 2007 Feb 15;26(7):1088-97. doi: 10.1038/sj.onc.1209851. Epub 2006 Aug 7.
The molecular pathogenesis of pleomorphic xanthoastrocytoma (PXA), a rare astrocytic brain tumor with a relatively favorable prognosis, is still poorly understood. We characterized 50 PXAs by comparative genomic hybridization (CGH) and found the most common imbalance to be loss on chromosome 9 in 50% of tumors. Other recurrent losses affected chromosomes 17 (10%), 8, 18, 22 (4% each). Recurrent gains were identified on chromosomes X (16%), 7, 9q, 20 (8% each), 4, 5, 19 (4% each). Two tumors demonstrated amplifications mapping to 2p23-p25, 4p15, 12q13, 12q21, 21q21 and 21q22. Analysis of 10 PXAs with available high molecular weight DNA by high-resolution array-based CGH indicated homozygous 9p21.3 deletions involving the CDKN2A/p14(ARF)/CDKN2B loci in six tumors (60%). Interphase fluorescence in situ hybridization to tissue sections confirmed the presence of tumor cells with homozygous 9p21.3 deletions. Mutational analysis of candidate genes on 9q, PTCH and TSC1, revealed no mutations in PXAs with 9q loss and no evidence of TSC1 promoter methylation. However, PXAs consistently showed low TSC1 transcript levels. Taken together, our study identifies loss of chromosome 9 as the most common chromosomal imbalance in PXAs and suggests important roles for homozygous CDKN2A/p14(ARF)/CDKN2B deletion as well as low TSC1 mRNA expression in these tumors.
多形性黄色星形细胞瘤(PXA)是一种预后相对较好的罕见星形细胞脑肿瘤,其分子发病机制仍知之甚少。我们通过比较基因组杂交(CGH)对50例PXA进行了特征分析,发现最常见的失衡是50%的肿瘤中9号染色体缺失。其他常见缺失涉及17号染色体(10%)、8号、18号、22号染色体(各4%)。常见的增益发生在X染色体(16%)、7号、9q、20号染色体(各8%)、4号、5号、19号染色体(各4%)。两个肿瘤显示扩增定位于2p23 - p25、4p15、12q13、12q21、21q21和21q22。通过基于高分辨率阵列的CGH对10例有高分子量DNA的PXA进行分析,表明6例肿瘤(60%)中涉及CDKN2A/p14(ARF)/CDKN2B基因座的9p21.3纯合缺失。对组织切片进行间期荧光原位杂交证实存在9p21.3纯合缺失的肿瘤细胞。对9q上的候选基因PTCH和TSC1进行突变分析,发现在9q缺失的PXA中没有突变,也没有TSC1启动子甲基化的证据。然而,PXA始终显示出低水平的TSC1转录本。综上所述,我们的研究确定9号染色体缺失是PXA中最常见的染色体失衡,并表明纯合CDKN2A/p14(ARF)/CDKN2B缺失以及低水平TSC1 mRNA表达在这些肿瘤中起重要作用。