Mann Karen M, Jenkins Nancy A, Copeland Neal G, Mann Michael B
Cancer Research Program, The Methodist Hospital Research Institute, Houston, Texas 77030.
Cold Spring Harb Protoc. 2014 Mar 1;2014(3):235-47. doi: 10.1101/pdb.top069849.
Transposon-based insertional mutagenesis in the mouse provides a powerful approach for identifying new cancer genes. Transposon insertions in cancer genes are selected during tumor development because of their positive effect on tumor growth, and the transposon insertion sites in tumors thus serve as tags for identifying new cancer genes. Direct comparisons of transposon-mutated genes in mouse tumors with mutated genes in human tumors can lend insight into the genes and signaling pathways that drive tumorigenesis. This is critical for prioritizing genes for further study, either for their efficacy as biomarkers or drug targets. In this article, we will introduce DNA transposon-based systems used for gene discovery in mice and discuss their application to identify candidate cancer genes in light of recently published tumor studies.
基于转座子的小鼠插入诱变技术为鉴定新的癌症基因提供了一种强大的方法。在肿瘤发生过程中,癌症基因中的转座子插入会因其对肿瘤生长的积极作用而被选择,因此肿瘤中的转座子插入位点可作为鉴定新癌症基因的标签。将小鼠肿瘤中转座子突变基因与人类肿瘤中突变基因进行直接比较,有助于深入了解驱动肿瘤发生的基因和信号通路。这对于将基因作为生物标志物或药物靶点的功效进行进一步研究时确定优先级至关重要。在本文中,我们将介绍用于小鼠基因发现的基于DNA转座子的系统,并根据最近发表的肿瘤研究讨论它们在鉴定候选癌症基因中的应用。