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Genetic and environmental influences on the mutational landscape of Kras-driven lung cancer in the mouse.

机译:遗传和环境对小鼠Kras驱动的肺癌的突变景观的影响。

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摘要

Mouse models have been an essential tool for cancer research for many decades, and have seen application to ever more diverse and complex questions with the advent of genetic engineering technologies. However, little has been done to characterize the genome-wide profiles of mutations in tumors generated from some of the most commonly used mouse models of cancer. Here we used whole-exome sequencing to compare the landscape of somatic mutations in carcinogen-induced and genetically engineered mouse models of Kras-driven lung cancer. We show that these models adopt distinct routes to tumor development, with carcinogen-induced tumors having a much higher mutational burden and better recapitulating the mutational landscape seen in human lung cancer. In addition, the exome-wide mutation spectra in these tumors display highly consistent and distinct signatures of the initiating carcinogen, and demonstrate the potential utility of mouse sequencing studies to discern complex mutation signatures of suspected carcinogens.;The wild type (WT) allele of Kras has been shown to act as a tumor suppressor in mouse models of lung cancer, and we demonstrate that urethane-induced tumors from normal mice carry mostly Q61R Kras mutations, while those from Kras heterozygous mice carry mostly Q61L mutations, indicating a major role of germline Kras status in mutation selection during initiation. In order to gain a more comprehensive view of the genetic underpinnings of Kras mutation selection, we characterized Kras mutations in carcinogen-induced lung tumors from a large population of Mus musculus x Mus spretus backcrossed mice. Genome-wide quantitative trait locus (QTL) mapping identified a novel locus on chromosome 10, in addition to the Kras locus, that modulates Kras mutation selection. We also investigated the relationship between the tumor suppressive effect of WT Kras and its role in modulating mutation selection, and found that both isoforms of Kras (Kras4A and Kras4B) contribute to these phenomena, while canonical tumor suppressive pathways do not seem to be involved. These approaches provide a framework for understanding the interactions between germline and somatic events that control Kras mutation specificity in cancer.
机译:几十年来,小鼠模型一直是癌症研究的重要工具,并且随着基因工程技术的出现,已经将其应用于越来越多样化和复杂的问题。但是,几乎没有做过表征某些最常用的癌症小鼠模型产生的肿瘤突变的全基因组图谱的工作。在这里,我们使用全外显子组测序比较了致癌物诱发的和基因改造的Kras驱动的肺癌小鼠模型中的体细胞突变情况。我们表明,这些模型采用不同的途径发展肿瘤,致癌物诱导的肿瘤具有更高的突变负担,并能更好地概括人类肺癌中的突变情况。此外,这些肿瘤的全基因组突变谱显示出起始致癌物的高度一致和独特的特征,并证明了小鼠测序研究可用于识别可疑致癌物的复杂突变特征的潜在用途。 Kras已被证明在肺癌小鼠模型中起着抑癌作用,并且我们证明了正常小鼠的尿烷诱导的肿瘤主要携带Q61R Kras突变,而Kras杂合小鼠的尿烷诱导的肿瘤主要携带Q61L突变,这表明了Kras的主要作用。起始期间突变选择中的种系Kras状态。为了更全面地了解Kras突变选择的遗传基础,我们从大量的Mus mus x spretus回交小鼠中表征了致癌物诱发的肺肿瘤中的Kras突变。全基因组定量性状基因座(QTL)定位除了可调节Kras突变选择的Kras基因座外,还在10号染色体上鉴定了一个新基因座。我们还研究了WT Kras的肿瘤抑制作用与其在调控突变选择中的作用之间的关系,发现Kras的两种同工型(Kras4A和Kras4B)均与这些现象有关,而规范的肿瘤抑制途径似乎并未涉及。这些方法为理解种系与控制癌症中Kras突变特异性的体细胞事件之间的相互作用提供了框架。

著录项

  • 作者单位

    University of California, San Francisco.;

  • 授予单位 University of California, San Francisco.;
  • 学科 Biology.;Genetics.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 110 p.
  • 总页数 110
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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