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利用芽殖酵母中高灵敏度单链DNA报告系统对诱变进行分子遗传学表征

Molecular Genetic Characterization of Mutagenesis Using a Highly Sensitive Single-Stranded DNA Reporter System in Budding Yeast.

作者信息

Chan Kin

机构信息

Department of Biochemistry, Microbiology, and Immunology, University of Ottawa, 451 Smyth Road, Ottawa, ON, K1H 8 M5, Canada.

出版信息

Methods Mol Biol. 2018;1672:33-42. doi: 10.1007/978-1-4939-7306-4_4.

Abstract

Mutations are permanent alterations to the coding content of DNA. They are starting material for the Darwinian evolution of species by natural selection, which has yielded an amazing diversity of life on Earth. Mutations can also be the fundamental basis of serious human maladies, most notably cancers. In this chapter, I describe a highly sensitive reporter system for the molecular genetic analysis of mutagenesis, featuring controlled generation of long stretches of single-stranded DNA in budding yeast cells. This system is ~100- to ~1000-fold more susceptible to mutation than conventional double-stranded DNA reporters, and is well suited for generating large mutational datasets to investigate the properties of mutagens.

摘要

突变是DNA编码内容的永久性改变。它们是物种通过自然选择进行达尔文式进化的起始材料,这一过程在地球上产生了令人惊叹的生命多样性。突变也可能是严重人类疾病(最显著的是癌症)的根本原因。在本章中,我描述了一种用于诱变分子遗传分析的高灵敏度报告系统,其特点是在芽殖酵母细胞中可控地产生长链单链DNA。该系统对突变的敏感性比传统双链DNA报告系统高约100至约1000倍,非常适合生成大型突变数据集以研究诱变剂的特性。

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