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用于鉴定具有 BRCA 样拷贝数特征的乳腺癌的平台比较。

Platform comparisons for identification of breast cancers with a BRCA-like copy number profile.

机构信息

Division of Molecular Pathology, Netherlands Cancer Institute, Plesmanlaan 121, 1066CX, Amsterdam, The Netherlands.

出版信息

Breast Cancer Res Treat. 2013 Jun;139(2):317-27. doi: 10.1007/s10549-013-2558-2. Epub 2013 May 14.

Abstract

Previously, we employed bacterial artificial chromosome (BAC) array comparative genomic hybridization (aCGH) profiles from BRCA1 and -2 mutation carriers and sporadic tumours to construct classifiers that identify tumour samples most likely to harbour BRCA1 and -2 mutations, designated 'BRCA1 and -2-like' tumours, respectively. The classifiers are used in clinical genetics to evaluate unclassified variants, and patients for which no good quality germline DNA is available. Furthermore, we have shown that breast cancer patients with BRCA-like tumour aCGH profiles benefit substantially from platinum-based chemotherapy, potentially due to their inability to repair DNA double strand breaks (DSB), providing a further important clinical application for the classifiers. The BAC array technology has been replaced with oligonucleotide arrays. To continue clinical use of existing classifiers, we mapped oligonucleotide aCGH data to the BAC domain, such that the oligonucleotide profiles can be employed as in the BAC classifier. We demonstrate that segmented profiles derived from oligonucleotide aCGH show high correlation with BAC aCGH profiles. Furthermore, we trained a support vector machine score to objectify aCGH profile quality. Using the mapped oligonucleotide aCGH data, we show equivalence in classification of biologically relevant cases between BAC and oligonucleotide data. Furthermore, the predicted benefit of DSB inducing chemotherapy due to a homologous recombination defect is retained. We conclude that oligonucleotide aCGH data can be mapped to and used in the previously developed and validated BAC aCGH classifiers. Our findings suggest that it is possible to map copy number data from any other technology in a similar way.

摘要

此前,我们利用 BRCA1 和 -2 突变携带者和散发性肿瘤的细菌人工染色体 (BAC) 阵列比较基因组杂交 (aCGH) 图谱构建分类器,以识别最有可能携带 BRCA1 和 -2 突变的肿瘤样本,分别命名为“BRCA1 和 -2 样”肿瘤。这些分类器用于临床遗传学评估未分类的变异体和没有高质量种系 DNA 的患者。此外,我们已经表明,具有 BRCA 样肿瘤 aCGH 图谱的乳腺癌患者从铂类化疗中获益显著,这可能是由于它们无法修复 DNA 双链断裂 (DSB),为分类器提供了另一个重要的临床应用。BAC 阵列技术已被寡核苷酸阵列所取代。为了继续临床应用现有的分类器,我们将寡核苷酸 aCGH 数据映射到 BAC 域,以便可以像在 BAC 分类器中那样使用寡核苷酸图谱。我们证明,从寡核苷酸 aCGH 衍生的分段图谱与 BAC aCGH 图谱具有高度相关性。此外,我们训练了一个支持向量机评分来客观化 aCGH 图谱质量。使用映射的寡核苷酸 aCGH 数据,我们表明在 BAC 和寡核苷酸数据之间对生物学相关病例的分类具有等效性。此外,同源重组缺陷导致 DSB 诱导化疗的预测获益得以保留。我们得出结论,寡核苷酸 aCGH 数据可以映射到以前开发和验证的 BAC aCGH 分类器中并加以使用。我们的发现表明,有可能以类似的方式将任何其他技术的拷贝数数据映射和使用。

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