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多面蛋白MvaT和MvaU是H-NS家族成员,它们控制铜绿假单胞菌PAO1中的精氨酸代谢、绿脓菌素合成和原噬菌体激活。

The multifaceted proteins MvaT and MvaU, members of the H-NS family, control arginine metabolism, pyocyanin synthesis, and prophage activation in Pseudomonas aeruginosa PAO1.

作者信息

Li Congran, Wally Hassan, Miller Shearman J, Lu Chung-Dar

机构信息

Department of Biology, Georgia State University, 24 Peachtree Center Avenue, Atlanta, GA 30303, USA.

出版信息

J Bacteriol. 2009 Oct;191(20):6211-8. doi: 10.1128/JB.00888-09. Epub 2009 Aug 14.

Abstract

The MvaT and MvaU proteins belonging to the H-NS family were identified as DNA-binding proteins that interact with the regulatory region of the aotJQMOP-argR operon for arginine uptake and regulation. Recombinant MvaT and MvaU proteins were purified, and binding of these purified proteins to the aotJ regulatory region was demonstrated using electromobility shift assays. Polyclonal antibodies against purified MvaT and MvaU were prepared and employed in supershift assays to support these observations. Knockout mutations resulting in a single lesion in mvaT or mvaU, as well as knockout mutations resulting in double lesions, were constructed using biparental conjugation, and the absence of MvaT and MvaU in the resulting mutants was confirmed by immunoblot analysis. Using measurements of the beta-galactosidase activities from aotJ::lacZ fusions in the mutants and the parental strain, it was found that MvaT and MvaU serve as repressors in control of aotJ expression. The effects of MvaT and MvaU on pyocyanin synthesis and CupA fimbrial expression in these mutants were also analyzed. Pyocyanin synthesis was induced in the single mutants but was completely abolished in the double mutant, suggesting that there is a complicated regulatory scheme in which MvaT and MvaU are essential elements. In comparison, MvaT had a more profound role than MvaU as a repressor of cupA expression; however, a combination of MvaT depletion and MvaU depletion had a strong synergistic effect on cupA. Moreover, prophage Pf4 integrated into the chromosome of Pseudomonas aeruginosa PAO1 was activated in an mvaT mvaU double mutant but not in a single mutant. These results were supported by purification and nucleotide sequencing of replicative-form DNA and by the release of phage particles in plaque assays. In summary, the mvaT mvaU double mutant was viable, and depletion of MvaT and MvaU had serious effects on a variety of physiological functions in P. aeruginosa.

摘要

属于H-NS家族的MvaT和MvaU蛋白被鉴定为与aotJQMOP-argR操纵子调控区域相互作用的DNA结合蛋白,该操纵子负责精氨酸的摄取和调控。纯化了重组MvaT和MvaU蛋白,并使用电泳迁移率变动分析证明了这些纯化蛋白与aotJ调控区域的结合。制备了针对纯化的MvaT和MvaU的多克隆抗体,并用于超迁移分析以支持这些观察结果。使用双亲接合构建了导致mvaT或mvaU单个损伤的敲除突变,以及导致双损伤的敲除突变,并通过免疫印迹分析确认了所得突变体中不存在MvaT和MvaU。通过测量突变体和亲本菌株中aotJ::lacZ融合体的β-半乳糖苷酶活性,发现MvaT和MvaU作为aotJ表达控制中的阻遏物。还分析了MvaT和MvaU对这些突变体中绿脓菌素合成和CupA菌毛表达的影响。绿脓菌素合成在单个突变体中被诱导,但在双突变体中完全被消除,这表明存在一个复杂的调控机制,其中MvaT和MvaU是必需元件。相比之下,MvaT作为cupA表达的阻遏物比MvaU具有更深远的作用;然而,MvaT缺失和MvaU缺失的组合对cupA具有强烈的协同作用。此外,整合到铜绿假单胞菌PAO1染色体中的原噬菌体Pf4在mvaT mvaU双突变体中被激活,但在单个突变体中未被激活。这些结果得到了复制型DNA的纯化和核苷酸测序以及噬菌斑分析中噬菌体颗粒释放的支持。总之,mvaT mvaU双突变体是有活力的,MvaT和MvaU的缺失对铜绿假单胞菌的多种生理功能有严重影响。

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