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Complex rearrangements and oncogene amplifications revealed by long-read DNA and RNA sequencing of a breast cancer cell line

机译:乳腺癌细胞系的长期DNA和RNA测序揭示了复杂的重排和癌基因扩增

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摘要

The SK-BR-3 cell line is one of the most important models for HER2+ breast cancers, which affect one in five breast cancer patients. SK-BR-3 is known to be highly rearranged, although much of the variation is in complex and repetitive regions that may be underreported. Addressing this, we sequenced SK-BR-3 using long-read single molecule sequencing from Pacific Biosciences and develop one of the most detailed maps of structural variations (SVs) in a cancer genome available, with nearly 20,000 variants present, most of which were missed by short-read sequencing. Surrounding the important ERBB2 oncogene (also known as HER2), we discover a complex sequence of nested duplications and translocations, suggesting a punctuated progression. Full-length transcriptome sequencing further revealed several novel gene fusions within the nested genomic variants. Combining long-read genome and transcriptome sequencing enables an in-depth analysis of how SVs disrupt the genome and sheds new light on the complex mechanisms involved in cancer genome evolution.
机译:SK-BR-3细胞系是HER2 +乳腺癌最重要的模型之一,它影响五分之一的乳腺癌患者。众所周知,SK-BR-3被高度重排,尽管许多变化都发生在复杂且重复的区域中,但这些区域可能未被充分报道。为了解决这个问题,我们使用了来自Pacific Biosciences的长读单分子测序技术对SK-BR-3进行了测序,并开发了可利用的癌症基因组中最详细的结构变异图(SV),其中存在近20,000个变异,其中大多数是短读测序错过了。围绕重要的ERBB2癌基因(也称为HER2),我们发现了复杂的嵌套重复和易位序列,表明存在标点性进展。全长转录组测序进一步揭示了嵌套基因组变体内的几种新型基因融合。将长期阅读的基因组和转录组测序相结合,可以对SV如何破坏基因组进行深入分析,并为癌症基因组进化所涉及的复杂机制提供新的思路。

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