Takeda Junji, Izsvák Zsuzsanna, Ivics Zoltán
Center for Advanced Science and Innovation & Department of Social and Environmental Medicine, Osaka University, Osaka, Japan.
Methods Mol Biol. 2008;435:109-25. doi: 10.1007/978-1-59745-232-8_8.
Efficient linking of primary DNA sequence information to gene functions in vertebrate models requires that genetic modifications and their effects are analyzed in an efficacious, controlled, and scalable manner. Thus, to facilitate analysis of gene function, new genetic tools and strategies are currently under development. Transposable elements, by virtue of their inherent ability to insert into DNA, can be developed into useful tools for chromosomal manipulations. Mutagenesis screens based on transposable elements have numerous advantages as they can be applied in vivo and are therefore phenotype-driven, and molecular analysis of the mutations is straightforward. Current progress in this field indicates that transposable elements will serve as indispensable tools in the genetic toolkit of vertebrate models. Here, we provide experimental protocols for the construction, functional testing, and application of the Sleeping Beauty transposon for insertional mutagenesis of the mouse germline.
在脊椎动物模型中,要将初级DNA序列信息与基因功能进行有效关联,就需要以有效、可控且可扩展的方式分析基因修饰及其效应。因此,为便于基因功能分析,目前正在开发新的遗传工具和策略。转座元件凭借其插入DNA的固有能力,可被开发成用于染色体操作的有用工具。基于转座元件的诱变筛选具有诸多优势,因为它们可在体内应用,因此是由表型驱动的,而且对突变的分子分析很简单。该领域目前的进展表明,转座元件将成为脊椎动物模型遗传工具包中不可或缺的工具。在此,我们提供了构建、功能测试以及应用睡美人转座子对小鼠种系进行插入诱变的实验方案。