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One-plasmid tunable coexpression for mycobacterial protein–protein interaction studies

机译:单质粒可调节共表达用于分枝杆菌蛋白-蛋白相互作用研究

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摘要

A single plasmid that allows controlled coexpression has been developed for use in mycobacteria. The tetracycline inducible promoter, PtetO, was used to provide tetracycline-dependent induction of one gene, while the Psmyc, Pimyc, or Phsp promoters were used to provide three different levels of constitutive expression of a second gene. The functions of these four individual promoters were established using green fluorescent protein (GFP) and a newly identified red fluorescence inducible protein from Geobacillus sterothermophilus strain G1.13 (RFIP) as reporters. The tandem use of GFP and RFIP as reporter genes allowed optimization of the tunable coexpression in Mycobacterium smegmatis; either time at a fixed inducer concentration or changes in inducer concentration could be used to control the protein:protein ratio. This single vector system was used to coexpress the two-protein Mycobacterium tuberculosis stearoyl-CoA Δ9 desaturase complex (integral membrane desaturase Rv3229c and NADPH oxidoreductase Rv3230c) in M. smegmatis. The catalytic activity was found to increase in a manner corresponding to increasing the level of Rv3230c relative to a fixed level of Rv3229c. This system, which can yield finely tuned coexpression of the fatty acid desaturase complex in mycobacteria, may be useful for study of other multicomponent complexes. Furthermore, the tunable coexpression strategy used herein should also be applicable in other species with minor modifications.
机译:已经开发出允许受控共表达的单个质粒用于分枝杆菌。四环素诱导型启动子PtetO用于提供一个基因的四环素依赖性诱导,而Psmyc,Pimyc或Phsp启动子用于提供第二种基因的三种不同水平的组成型表达。这四个单独的启动子的功能是使用绿色荧光蛋白(GFP)和新鉴定的来自嗜热线芽孢杆菌G1.13菌株(RFIP)的红色荧光诱导蛋白建立的。串联使用GFP和RFIP作为报告基因可以优化耻垢分枝杆菌中可调共表达。既可以在固定的诱导剂浓度下进行反应,也可以通过改变诱导剂浓度来控制蛋白质与蛋白质的比例。该单一载体系统用于在耻垢分枝杆菌中共表达两种蛋白质的结核分枝杆菌硬脂酰-CoAΔ 9 去饱和酶复合物(整体膜去饱和酶Rv3229c和NADPH氧化还原酶Rv3230c)。发现相对于固定水平的Rv3229c,催化活性以对应于增加Rv3230c的水平的方式增加。该系统可以在分枝杆菌中产生脂肪酸去饱和酶复合物的微调共表达,该系统可用于研究其他多组分复合物。此外,本文使用的可调共表达策略也应适用于其他物种,但需进行少量修改。

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