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首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Multiple pqqA genes respond differently to environment and one contributes dominantly to pyrroloquinoline quinone synthesis
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Multiple pqqA genes respond differently to environment and one contributes dominantly to pyrroloquinoline quinone synthesis

机译:多个pqqA基因对环境的反应不同,并且一个主要对吡咯并喹啉醌合成作出贡献

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摘要

Pyrroloquinoline quinone is the third redox cofactor after nicotinamide and flavin in bacteria, and its biosynthesis pathway comprise five steps initiated from a precursor peptide PqqA coded by pqqA gene. Methylovorus sp. MP688 is equipped with five copies of pqqA genes. Herein, the transcription of pqqA genes under different conditions by real-time quantitative PCR and -galactosidase reporter genes are reported. Multiple pqqA genes were proved to play significant roles and contribute differently in PQQ synthesis. pqqA1, pqqA2, and pqqA4 were determined to be dominantly transcribed over the others, and correspondingly absence of any of the three genes caused a decrease in PQQ synthesis. Notably, pqqA was up-regulated in low pH and limited oxygen environment, and it is pqqA2 promoter that could be induced when bacteria were transferred from pH 7.0 to pH 5.5. Deletion analysis revealed a region within pqqA2 promoter inhibiting transcription. PQQ concentration was increased by overexpression of pqq genes under control of truncated pqqA2 promoter. The results not only imply there exist negative transcriptional regulators for pqqA2 but also provide us a new approach to achieve higher PQQ production by deleting the target binding sequence.
机译:吡咯并喹啉醌是继细菌烟酰胺和黄素之后的第三种氧化还原辅助因子,其生物合成途径包括由pqqA基因编码的前体肽PqqA引发的五个步骤。甲虫MP688配备了五个拷贝的pqqA基因。本文中,报道了通过实时定量PCR和-半乳糖苷酶报道基因在不同条件下pqqA基因的转录。事实证明,多个pqqA基因在PQQ合成中起着重要作用并做出不同的贡献。确定pqqA1,pqqA2和pqqA4在其他基因上占优势,并且相应地缺少这三个基因中的任何一个都会导致PQQ合成减少。值得注意的是,pqqA在低pH和有限的氧气环境中上调,并且是pqqA2启动子,当细菌从pH 7.0转移到pH 5.5时可以被诱导。缺失分析揭示了pqqA2启动子内的区域抑制转录。在截断的pqqA2启动子控制下,pqq基因的过表达增加了PQQ的浓度。该结果不仅暗示存在pqqA2的负转录调节因子,而且还为我们提供了一种通过删除目标结合序列来实现更高PQQ产量的新方法。

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