Center for Bioinformatics and Computational Biology, Roy J. and Lucille A. Carver College of Medicine, University of Iowa, Iowa City, Iowa, United States of America.
PLoS One. 2011;6(9):e24668. doi: 10.1371/journal.pone.0024668. Epub 2011 Sep 13.
The recent development of the Sleeping Beauty (SB) system has led to the development of novel mouse models of cancer. Unlike spontaneous models, SB causes cancer through the action of mutagenic transposons that are mobilized in the genomes of somatic cells to induce mutations in cancer genes. While previous methods have successfully identified many transposon-tagged mutations in SB-induced tumors, limitations in DNA sequencing technology have prevented a comprehensive analysis of large tumor cohorts. Here we describe a novel method for producing genetic profiles of SB-induced tumors using Illumina sequencing. This method has dramatically increased the number of transposon-induced mutations identified in each tumor sample to reveal a level of genetic complexity much greater than previously appreciated. In addition, Illumina sequencing has allowed us to more precisely determine the depth of sequencing required to obtain a reproducible signature of transposon-induced mutations within tumor samples. The use of Illumina sequencing to characterize SB-induced tumors should significantly reduce sampling error that undoubtedly occurs using previous sequencing methods. As a consequence, the improved accuracy and precision provided by this method will allow candidate cancer genes to be identified with greater confidence. Overall, this method will facilitate ongoing efforts to decipher the genetic complexity of the human cancer genome by providing more accurate comparative information from Sleeping Beauty models of cancer.
沉睡美人(SB)系统的最新发展导致了癌症的新型小鼠模型的出现。与自发模型不同,SB 通过可移动转座子的作用引起癌症,这些转座子在体细胞的基因组中移动,从而诱导癌症基因发生突变。虽然以前的方法已经成功地在 SB 诱导的肿瘤中鉴定了许多转座子标记的突变,但 DNA 测序技术的局限性阻止了对大量肿瘤队列的全面分析。在这里,我们描述了一种使用 Illumina 测序产生 SB 诱导肿瘤遗传图谱的新方法。该方法极大地增加了每个肿瘤样本中转座子诱导突变的数量,揭示了比以前预期更为复杂的遗传复杂性。此外,Illumina 测序使我们能够更准确地确定在肿瘤样本中获得可重复的转座子诱导突变特征所需的测序深度。使用 Illumina 测序来描述 SB 诱导的肿瘤应大大减少使用以前的测序方法不可避免的采样误差。因此,该方法提供的更高的准确性和精密度将使候选癌症基因的鉴定更有信心。总的来说,该方法将通过为癌症的 SB 模型提供更准确的比较信息,促进人们努力揭示人类癌症基因组的遗传复杂性。