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通过单分子分析发现实体瘤少突胶质细胞瘤的结构改变。

Discovery of structural alterations in solid tumor oligodendroglioma by single molecule analysis.

机构信息

Department of Chemistry, UW Biotechnology Center, University of Wisconsin-Madison, Madison, WI 53706, USA.

出版信息

BMC Genomics. 2013 Jul 26;14:505. doi: 10.1186/1471-2164-14-505.

Abstract

BACKGROUND

Solid tumors present a panoply of genomic alterations, from single base changes to the gain or loss of entire chromosomes. Although aberrations at the two extremes of this spectrum are readily defined, comprehensive discernment of the complex and disperse mutational spectrum of cancer genomes remains a significant challenge for current genome analysis platforms. In this context, high throughput, single molecule platforms like Optical Mapping offer a unique perspective.

RESULTS

Using measurements from large ensembles of individual DNA molecules, we have discovered genomic structural alterations in the solid tumor oligodendroglioma. Over a thousand structural variants were identified in each tumor sample, without any prior hypotheses, and often in genomic regions deemed intractable by other technologies. These findings were then validated by comprehensive comparisons to variants reported in external and internal databases, and by selected experimental corroborations. Alterations range in size from under 5 kb to hundreds of kilobases, and comprise insertions, deletions, inversions and compound events. Candidate mutations were scored at sub-genic resolution and unambiguously reveal structural details at aberrant loci.

CONCLUSIONS

The Optical Mapping system provides a rich description of the complex genomes of solid tumors, including sequence level aberrations, structural alterations and copy number variants that power generation of functional hypotheses for oligodendroglioma genetics.

摘要

背景

实体肿瘤呈现出一系列基因组改变,从单个碱基变化到整个染色体的获得或丢失。虽然在这个频谱的两个极端的异常很容易被定义,但对癌症基因组复杂而分散的突变谱的全面识别仍然是当前基因组分析平台的一个重大挑战。在这种情况下,高通量、单分子平台,如光学作图,提供了一个独特的视角。

结果

使用来自大量单个 DNA 分子的测量值,我们在实体肿瘤少突胶质细胞瘤中发现了基因组结构改变。在每个肿瘤样本中都鉴定出了一千多个结构变体,而无需任何先验假设,而且通常是在其他技术认为难以处理的基因组区域。这些发现通过与外部和内部数据库中报告的变体进行全面比较,并通过选择性的实验证实得到了验证。改变的大小从不到 5kb 到数百千碱基不等,包括插入、缺失、倒位和复合事件。候选突变在亚基因分辨率上进行评分,并明确揭示了异常位点的结构细节。

结论

光学作图系统为实体肿瘤的复杂基因组提供了丰富的描述,包括序列水平的异常、结构改变和拷贝数变异,为少突胶质细胞瘤遗传学生成功能假说提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3410/3727977/c2f4b9c7f5c4/1471-2164-14-505-1.jpg

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