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重组原型泡沫病毒整合酶纯化过程中核酸酶污染的检测与去除

Detection and Removal of Nuclease Contamination During Purification of Recombinant Prototype Foamy Virus Integrase.

作者信息

Lopez Miguel A, Mackler Randi M, Altman Matthew P, Yoder Kristine E

机构信息

Department of Cancer Biology and Genetics, The Ohio State University College of Medicine.

Department of Cancer Biology and Genetics, The Ohio State University College of Medicine;

出版信息

J Vis Exp. 2017 Dec 8(130):56605. doi: 10.3791/56605.

Abstract

The integrase (IN) protein of the retrovirus prototype foamy virus (PFV) is a model enzyme for studying the mechanism of retroviral integration. Compared to IN from other retroviruses, PFV IN is more soluble and more amenable to experimental manipulation. Additionally, it is sensitive to clinically relevant human immunodeficiency virus (HIV-1) IN inhibitors, suggesting that the catalytic mechanism of PFV IN is similar to that of HIV-1 IN. IN catalyzes the covalent joining of viral complementary DNA (cDNA) to target DNA in a process called strand transfer. This strand transfer reaction introduces nicks to the target DNA. Analysis of integration reaction products can be confounded by the presence of nucleases that similarly nick DNA. A bacterial nuclease has been shown to co-purify with recombinant PFV IN expressed in Escherichia coli (E. coli). Here we describe a method to isolate PFV IN from the contaminating nuclease by heparin affinity chromatography. Fractions are easily screened for nuclease contamination with a supercoiled plasmid and agarose gel electrophoresis. PFV IN and the contaminating nuclease display alternative affinities for heparin sepharose allowing a nuclease-free preparation of recombinant PFV IN suitable for bulk biochemical or single molecule analysis of integration.

摘要

逆转录病毒原型泡沫病毒(PFV)的整合酶(IN)蛋白是研究逆转录病毒整合机制的一种模型酶。与其他逆转录病毒的IN相比,PFV IN更易溶解,更易于进行实验操作。此外,它对临床上相关的人类免疫缺陷病毒(HIV-1)IN抑制剂敏感,这表明PFV IN的催化机制与HIV-1 IN相似。IN在一个称为链转移的过程中催化病毒互补DNA(cDNA)与靶DNA的共价连接。这种链转移反应会在靶DNA上产生切口。整合反应产物的分析可能会因存在类似地切割DNA的核酸酶而受到干扰。已证明一种细菌核酸酶可与在大肠杆菌(E. coli)中表达的重组PFV IN共纯化。在这里,我们描述了一种通过肝素亲和色谱从污染的核酸酶中分离PFV IN的方法。用超螺旋质粒和琼脂糖凝胶电泳可以很容易地筛选出含有核酸酶污染的组分。PFV IN和污染的核酸酶对肝素琼脂糖表现出不同的亲和力,从而可以制备出不含核酸酶的重组PFV IN,适用于整合的大量生化分析或单分子分析。

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