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E-GEOD-32711 GSE32711 genotyping by array, comparative geno... Homo sapiens

Analysis of copy number changes primary and metastatic colorectal cancer samples

·发布 2011年10月11日 ·更新 2011年10月17日
16
样本数
16
实验数
1
芯片平台
实验描述

Structural rearrangements form a major class of somatic variation in cancer genomes. Local chromosome shattering, termed chromothripsis, is a mechanism proposed to be the cause of clustered chromosomal rearrangements and was recently described to occur in a small percentage of tumors. The significance of these clusters for tumor development or metastatic spread is largely unclear. We used genome-wide long mate-pair sequencing and SNP array profiling to reveal that chromothripsis is a widespread phenomenon in primary colorectal cancer and metastases. We find large and small chromothripsis events in nearly every colorectal tumor sample and show that several breakpoints of chromothripsis clusters and isolated rearrangements affect cancer genes, including NOTCH2, EXO1 and MLL3. We complemented the structural variation studies by sequencing the coding regions of a cancer exome in all colorectal tumor samples and found somatic mutations in 24 genes, including APC, KRAS, SMAD4 and PIK3CA. A pairwise comparison of somatic variations in primary and metastatic samples indicated that in many chromothripsis clusters, isolated rearrangements and point mutations are exclusively present in either the primary tumor or the metastasis and may affect cancer genes in a lesion-specific manner. We conclude that chromothripsis is a prevalent mechanism driving structural rearrangements in colorectal cancer and show that a complex interplay between point mutations, simple copy number changes and chromothripsis events drive colorectal tumor development and metastasis. We analyzed 16 tissue samples from four patients. For each patient we analyzed the DNA of a primary colon tumor sample, a normal colon tissue sample, a metastatic liver tumor sample and a normal liver tissue sample. The normal colon and normal liver samples serve as a control for the primary and metastatic tumor samples.

芯片平台
A-GEOD-8855
Illumina HumanCytoSnp-12 Beadchip version 2.0(16 例)
样本属性
disease state
adenocarcinoma, metastasis, not applicable
gender
female, male
Organism
Homo sapiens
tissue
colon, colon tumor, liver, liver metastasis
treatment
5FU, Leucovorin, Oxaliplatin and Bevacizumab after colon resection, no treatment, XELOX and Bevacizumab after colon resection
实验信息
登记号
E-GEOD-32711
GEO 编号
GSE32711
实验类型
genotyping by array, comparative genomic hybridization by array
物种
Homo sapiens
发布日期
2011年10月11日
更新日期
2011年10月17日
提交者
Edwin Cuppen、 Victor Guryev、 José van de Belt、 Emile Voest、 Masoumeh Tavakoli-Yaraki、 Wijnand Roessingh、 Ivo Renkens、 Wigard P Kloosterman、 Ruben van 't Slot、 Ies Nijman、 Oscar Paling、 Markus J van Roosmalen、 Marlous Hoogstraat、 Stef van Lieshout、 Joost Vermaat、 Marco Koudijs、 Wigard Kloosterman
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分析服务

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