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首页> 外文期刊>Protein Expression and Purification >Cloning, E-coli overexpression, purification and binding properties of TraA and TraC, two proteins involved in the pheromone-dependent conjugation process in enterococci
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Cloning, E-coli overexpression, purification and binding properties of TraA and TraC, two proteins involved in the pheromone-dependent conjugation process in enterococci

机译:TraA和TraC的克隆,大肠杆菌过表达,纯化和结合特性-肠球菌中与信息素依赖性结合过程有关的两种蛋白质

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The bacteriocin encoding plasmid pPD1 from Enterococcus faecalis is involved in a mating response to the sex pheromone cPD1 produced by recipient bacterial cells devoid of pPD1. Previous studies showed that cPD1 is internalized into donor cells in a process in which TraC plays the role of cell surface pheromone receptor. Inside the recipient cells, the pheromone binds to the plasmid-encoded cytoplasmic protein TraA, able to recognize specific DNA sequences and to modulate the conjugation process. To avoid self-induction of the conjugation process, donor cells produce the inhibitor iPD1, which competes with cPD1. This study was designed to produce recombinant TraA and TraC in a functionally active state and to evaluate their main functional properties. We have isolated the sequences encoding TraA and TraC from the plasmid pPD1 and cloned them in suitable expression vectors. The two recombinant proteins were successfully obtained in a soluble form using Escherichia coli as expression host and a T7 inducible expression system. TraC and TraA were purified to homogeneity by three or two chromatographic steps, respectively, leading to a final yield up to 4 mg/l of cell culture for TraC and up to 10 mg/l of cell culture for TraA. The ability of TraA and TraC to bind the specific pheromone and inhibitor peptides has been assessed by means of ESI-mass spectrometry. Moreover, the ability of recombinant TraA to bind DNA has been demonstrated by means of electrophoretic mobility shift assay. Overall these results are consistent with the heterologously expressed TraC and TraA being functionally active. (c) 2008 Elsevier Inc. All rights reserved.
机译:来自粪肠球菌的编码细菌素的质粒pPD1参与了对由缺乏pPD1的受体细菌细胞产生的性信息素cPD1的交配反应。先前的研究表明,cPD1在TraC发挥细胞表面信息素受体作用的过程中被内化到供体细胞中。在受体细胞内部,信息​​素与质粒编码的细胞质蛋白TraA结合,能够识别特定的DNA序列并调节结合过程。为了避免共轭过程的自我诱导,供体细胞产生了抑制剂iPD1,它与cPD1竞争。这项研究旨在生产功能活跃状态的重组TraA和TraC,并评估其主要功能特性。我们已经从质粒pPD1中分离出编码TraA和TraC的序列,并将其克隆到合适的表达载体中。使用大肠杆菌作为表达宿主和T7诱导型表达系统,成功以可溶性形式获得了两种重组蛋白。分别通过三个或两个色谱步骤将TraC和TraA纯化至均质,导致TraC的细胞培养最终产量最高为4 mg / l,TraA的细胞培养最终产量最高为10 mg / l。已通过ESI质谱法评估了TraA和TraC结合特定信息素和抑制剂肽的能力。此外,重组TraA结合DNA的能力已经通过电泳迁移率变动测定法证明。总体而言,这些结果与异源表达的TraC和TraA具有功能活性是一致的。 (c)2008 Elsevier Inc.保留所有权利。

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