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Digital karyotyping technology: exploring the cancer genome.

机译:数字核型分析技术:探索癌症基因组。

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Identifying gene-specific alterations in cancer genomes has revealed molecules that are causal effectors of carcinogenesis and specific targets for cancer molecular diagnosis and molecular-based cancer therapies. Whole-genome analyses of many cancer genomes at the resolution of single genes is thus a desirable yet incompletely realized goal that could expedite progress in cancer diagnosis and treatment. Although methods for routine whole-genome sequencing or high-resolution epigenetic measurements are currently under development, high-resolution measurements of gene copy number, or 'gene dosage', are now underway in several laboratories. Digital karyotyping, array comparative genomic hybridization, and single nucleotide polymorphism arrays are techniques that have the potential to detect gene amplification, homozygous deletion and loss of heterozygosity at or below the average length of single genes. Recently, digital karyotyping of a small number (<20) of colon and brain cancer genomes has revealed tumor cases with significant genetic dosage alterations affecting few and, in some cases, only one complete gene. These experiments suggest that gene-specific gene dosage alterations may be sufficiently frequent to enable the identification of promising tumor gene candidates in small-scale experiments. The purpose of this review is to describe our understanding of cancer as a genetic disease, review the basic principles, methodologies and interpretational issues of traditional and high-resolution whole-genome screens, and describe the potential of our first detailed look at whole cancer genomes for progress in the understanding and treatment of cancer.
机译:鉴定癌症基因组中的基因特异性改变,已揭示了致癌作用的分子,以及癌症分子诊断和基于分子的癌症疗法的特定靶标。因此,以单个基因的分辨率对许多癌症基因组进行全基因组分析是一个理想的但尚未完全实现的目标,可以加快癌症诊断和治疗的进展。尽管目前正在开发用于常规全基因组测序或高分辨率表观遗传学测量的方法,但一些实验室目前正在对基因拷贝数或“基因剂量”进行高分辨率测量。数字核型分析,阵列比较基因组杂交和单核苷酸多态性阵列是具有检测单基因平均长度或以下平均长度的基因扩增,纯合缺失和杂合性丧失的潜力的技术。最近,少数(<20个)结肠癌和脑癌基因组的数字核型分析显示,肿瘤病例的基因剂量发生了重大变化,影响的基因很少,在某些情况下,仅影响一个完整的基因。这些实验表明,基因特异性基因剂量的改变可能足够频繁,以使得能够在小规模实验中鉴定出有希望的肿瘤基因候选者。这篇综述的目的是描述我们对癌症作为一种遗传疾病的理解,回顾传统和高分辨率全基因组筛选的基本原理,方法论和解释性问题,并描述我们首次详细研究整个癌症基因组的潜力为了解和治疗癌症方面的进展。

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