首页> 外文期刊>The Journal of molecular diagnostics: JMD >Amplification of whole tumor genomes and gene-by-gene mapping of genomic aberrations from limited sources of fresh-frozen and paraffin-embedded DNA.
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Amplification of whole tumor genomes and gene-by-gene mapping of genomic aberrations from limited sources of fresh-frozen and paraffin-embedded DNA.

机译:从有限的新鲜冷冻和石蜡包埋的DNA来源扩增整个肿瘤基因组并进行基因组畸变的基因逐基因作图。

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摘要

Sufficient quantity of genomic DNA can be a bottleneck in genome-wide analysis of clinical tissue samples. DNA polymerase Phi29 can be used for the random-primed amplification of whole genomes, although the amplification may introduce bias in gene dosage. We have performed a detailed investigation of this technique in archival fresh-frozen and formalin-fixed/paraffin-embedded tumor DNA by using cDNA microarray-based comparative genomic hybridization. Phi29 amplified DNA from matched pairs of fresh-frozen and formalin-fixed/paraffin-embedded tumor samples with similar efficiency. The distortion in gene dosage representation in the amplified DNA was nonrandom and reproducibly involved distinct genomic loci. Regional amplification efficiency was significantly linked to regional GC content of the template genome. The biased gene representation in amplified tumor DNA could be effectively normalized by using amplified reference DNA. Our data suggest that genome-wide gene dosage alterations in clinical tumor samples can be reliably assessed from a few hundred tumor cells. Therefore, this amplification method should lend itself to high-throughput genetic analyses of limited sources of tumor, such as fine-needle biopsies, laser-microdissected tissue, and small paraffin-embedded specimens.
机译:足够数量的基因组DNA可能成为临床组织样本全基因组分析的瓶颈。 DNA聚合酶Phi29可用于整个基因组的随机引物扩增,尽管该扩增可能会导致基因剂量出现偏差。我们已经通过使用基于cDNA微阵列的比较基因组杂交技术对档案新鲜冷冻和福尔马林固定/石蜡包埋的肿瘤DNA中的这项技术进行了详细的研究。 Phi29以相似的效率从配对的新鲜冷冻和福尔马林固定/石蜡包埋的肿瘤样品中扩增了DNA。扩增的DNA中基因剂量表示的失真是非随机的,并且可重复地涉及不同的基因组位点。区域扩增效率与模板基因组的区域GC含量显着相关。通过使用扩增的参考DNA可以有效地标准化扩增的肿瘤DNA中的偏向基因表示。我们的数据表明,可以从数百个肿瘤细胞中可靠地评估临床肿瘤样品中的全基因组基因剂量变化。因此,这种扩增方法应适用于有限肿瘤来源的高通量遗传分析,例如细针活检,激光显微切割的组织和小石蜡包埋的标本。

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