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理解黑粉菌中Brh2介导功能的方法

Approaches to Understanding the Mediator Function of Brh2 in Ustilago maydis.

作者信息

Zhou Qingwen, Holloman William K, Kojic Milorad

机构信息

Weill Cornell Medical College, New York, NY, United States.

Weill Cornell Medical College, New York, NY, United States.

出版信息

Methods Enzymol. 2018;600:513-525. doi: 10.1016/bs.mie.2017.11.019. Epub 2018 Feb 1.

Abstract

Primary components of the homologous recombination pathway in eukaryotes include Rad51 whose function is to search for DNA sequence homology and promote strand exchange, its mediator BRCA2, and Dss1, a key regulator of BRCA2. We seek to understand the role of BRCA2 in governing the activity of Rad51 and to learn how BRCA2 function is regulated by Dss1. We use the microbe Ustilago maydis as a model system for experimentation because it has a well-conserved BRCA2-homolog, Brh2, and is amenable to biochemical and molecular genetic manipulations and analysis. The powerful attributes of this system open the way for gaining insight into BRCA2's molecular mechanism through avenues not immediately approachable in the vertebrate systems. Here we provide protocols for preparing Brh2, Dss1, and Rad51 as reagents for use in biochemical assays to monitor function and present methods for transposon-based mutational analysis of Brh2 for use in genetic dissection of function.

摘要

真核生物中同源重组途径的主要组成部分包括Rad51,其功能是寻找DNA序列同源性并促进链交换;其介导因子BRCA2;以及Dss1,BRCA2的关键调节因子。我们试图了解BRCA2在调控Rad51活性中的作用,并探究Dss1如何调节BRCA2的功能。我们使用微生物玉米黑粉菌作为实验模型系统,因为它具有高度保守的BRCA2同源物Brh2,并且适合进行生化和分子遗传学操作与分析。该系统的强大特性为通过脊椎动物系统无法直接采用的途径深入了解BRCA2的分子机制开辟了道路。在这里,我们提供了制备Brh2、Dss1和Rad51作为用于生化分析以监测功能的试剂的方案,并介绍了用于对Brh2进行基于转座子的突变分析以用于功能基因剖析的方法。

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