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乳糖操纵子阻遏蛋白(LacI)与乳糖操纵子(LacO)的相互作用在质粒DNA亲和吸附中的应用

LacO-LacI interaction in affinity adsorption of plasmid DNA.

作者信息

Forde Gareth M, Ghose Siddhartha, Slater Nigel K H, Hine Anna V, Darby Richard A J, Hitchcock Anthony G

机构信息

Department of Chemical Engineering, Cambridge Unit for Bioscience Engineering (CUBE), Pembroke Street, University of Cambridge, Cambridge CB2 3RA, UK.

出版信息

Biotechnol Bioeng. 2006 Sep 5;95(1):67-75. doi: 10.1002/bit.20955.

Abstract

Current approaches for purifying plasmids from bacterial production systems exploit the physiochemical properties of nucleic acids in non-specific capture systems. In this study, an affinity system for plasmid DNA (pDNA) purification has been developed utilizing the interaction between the lac operon (lacO) sequence contained in the pDNA and a 64mer synthetic peptide representing the DNA-binding domain of the lac repressor protein, LacI. Two plasmids were evaluated, the native pUC19 and pUC19 with dual lacO3/lacOs operators (pUC19(lacO3/lacOs)), where the lacOs operator is perfectly symmetrical. The DNA-protein affinity interaction was evaluated by surface plasmon resonance using a Biacore system. The affinity capture of DNA in a chromatography system was evaluated using LacI peptide that had been immobilized to Streamline adsorbent. The KD-values for double stranded DNA (dsDNA) fragments containing lacO1 and lacO3 and lacOS and lacO3 were 5.7 +/- 0.3 x 10(-11) M and 4.1 +/- 0.2 x 10(-11) M respectively, which compare favorably with literature reports of 5 x 10(-10)-1 x 10(-9) M for native lacO1 and 1-1.2 x 10(-10) M for lacO1 in a saline buffer. Densitometric analysis of the gel bands from the affinity chromatography run clearly showed a significant preference for capture of the supercoiled fraction from the feed pDNA sample. The results indicate the feasibility of the affinity approach for pDNA capture and purification using native protein-DNA interaction.

摘要

目前从细菌生产系统中纯化质粒的方法是利用非特异性捕获系统中核酸的物理化学性质。在本研究中,利用质粒DNA(pDNA)中所含的乳糖操纵子(lacO)序列与代表乳糖阻遏蛋白LacI的DNA结合结构域的64聚体合成肽之间的相互作用,开发了一种用于纯化pDNA的亲和系统。对两种质粒进行了评估,即天然的pUC19和带有双lacO3/lacOs操纵子的pUC19(pUC19(lacO3/lacOs)),其中lacOs操纵子是完全对称的。使用Biacore系统通过表面等离子体共振评估DNA-蛋白质亲和相互作用。使用固定在Streamline吸附剂上的LacI肽评估色谱系统中DNA的亲和捕获。含有lacO1和lacO3以及lacOS和lacO3的双链DNA(dsDNA)片段的KD值分别为5.7±0.3×10(-11)M和4.1±0.2×10(-11)M,与文献报道的在盐缓冲液中天然lacO1的5×10(-10)-1×10(-9)M和lacO1的1-1.2×10(-10)M相比具有优势。亲和色谱运行的凝胶条带的光密度分析清楚地表明,从进料pDNA样品中捕获超螺旋部分具有明显的偏好。结果表明利用天然蛋白质-DNA相互作用的亲和方法用于pDNA捕获和纯化的可行性。

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