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酵母与人的跨损伤DNA合成聚合酶:表达、纯化及生化特性分析

Yeast and human translesion DNA synthesis polymerases: expression, purification, and biochemical characterization.

作者信息

Johnson Robert E, Prakash Louise, Prakash Satya

机构信息

Sealy Center for Molecular Science, University of Texas Medical Branch, Galveston, USA.

出版信息

Methods Enzymol. 2006;408:390-407. doi: 10.1016/S0076-6879(06)08024-4.

Abstract

The emergence of translesion DNA synthesis (TLS) as a primary mechanism by which eukaryotic cells tolerate DNA damage has led to a large effort to characterize the biochemical properties of the individual DNA polymerases and their roles in promoting replication past DNA lesions. The low-fidelity Y family DNA polymerases constitute a large proportion of TLS polymerases, and four of the five subfamilies of this class of polymerases are represented in eukaryotes. The eukaryotic B family DNA polymerase Polzeta also functions in TLS. We have had success in expressing and purifying these TLS polymerases from yeast cells, sometimes in milligram quantities. The purified proteins have been used to determine their ability to synthesize DNA on various modified templates and to analyze the kinetic efficiencies with which bypass occurs. Purified proteins have also been used to determine the X-ray crystal structures of several Y-family DNA polymerases. This chapter describes a general outline of methods used in our laboratory for the expression and purification of these TLS DNA polymerases from yeast cells and for assaying some of their biochemical properties.

摘要

跨损伤DNA合成(TLS)作为真核细胞耐受DNA损伤的主要机制的出现,促使人们做出了巨大努力来表征各个DNA聚合酶的生化特性及其在促进绕过DNA损伤进行复制中的作用。低保真度的Y家族DNA聚合酶在TLS聚合酶中占很大比例,并且这类聚合酶的五个亚家族中有四个在真核生物中存在代表。真核生物B家族DNA聚合酶Polzeta也在TLS中发挥作用。我们成功地从酵母细胞中表达并纯化了这些TLS聚合酶,有时产量可达毫克级。纯化后的蛋白质已用于确定它们在各种修饰模板上合成DNA的能力,并分析绕过发生的动力学效率。纯化后的蛋白质还被用于确定几种Y家族DNA聚合酶的X射线晶体结构。本章描述了我们实验室用于从酵母细胞中表达和纯化这些TLS DNA聚合酶以及测定它们一些生化特性的方法的总体概述。

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