首页> 外文期刊>Protein Science: A Publication of the Protein Society >Screening for functional expression and overexpression of a family of diiron-containing interfacial membrane proteins using the univector recombination system.
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Screening for functional expression and overexpression of a family of diiron-containing interfacial membrane proteins using the univector recombination system.

机译:使用univector重组系统筛选含有二铁的界面膜蛋白家族的功能性表达和过表达。

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摘要

The large number of uncharacterized genes emerging from genome sequencing projects has resulted in a need for quick and reliable screening methods for protein expression parameters. We have utilized the univector plasmid recombination system (as previously reported) to develop a series of vectors for rapid screening for expression in Escherichia coli. A high level of recombinant protein expression is a requirement for purification of protein for structural determination and other purposes. In other applications, successful complementation of a missing enzyme activity in E. coli, as well as directed evolution studies and metabolic engineering, often require a much lower level of protein expression. In this report we describe the construction of a number of new pHOST vectors that can be screened for both low- and high-level expression. We isolated a mutant vector for MBP fusions that exhibited a more optimal level of expression for complementation of aerobic respiration in hemA(-) E. coli, our functionalassay for the alternative oxidase. We then demonstrated the use of our system to rapidly screen for both optimal functional expression and optimal overexpression of the alternative oxidase as well as two other members of a family of membrane-bound diiron carboxylate proteins, the plastid terminal oxidase and 5-demethoxyquinone hydroxylase.
机译:来自基因组测序项目的大量未鉴定基因导致对蛋白质表达参数的快速可靠筛选方法的需求。我们已经利用单载体质粒重组系统(如前所述)开发了一系列用于快速筛选在大肠杆菌中表达的载体。高水平的重组蛋白表达是纯化蛋白以用于结构测定和其他目的的要求。在其他应用中,成功补充大肠杆菌中缺失的酶活性以及定向进化研究和代谢工程常常需要低得多的蛋白质表达水平。在本报告中,我们描述了许多新的pHOST载体的构建,可以针对低水平和高水平表达进行筛选。我们分离了MBP融合的突变载体,该载体在hemA(-)大肠杆菌(我们的另一种氧化酶功能测定)中表现出更理想的表达水平,以补充有氧呼吸。然后,我们证明了使用我们的系统快速筛选替代氧化酶以及膜结合的二铁羧酸盐蛋白家族的两个其他成员(质体末端氧化酶和5-demethoxyquinone羟化酶)的最佳功能表达和最佳过表达。

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