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Biphenyl Modulates the Expression and Function of Respiratory Oxidases in the Polychlorinated-Biphenyls Degrader Pseudomonas pseudoalcaligenes KF707

机译:联苯调节多氯联苯降解假单胞菌拟alalgenegenes KF707中的呼吸氧化酶的表达和功能。

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摘要

Pseudomonas pseudoalcaligenes KF707 is a soil bacterium which is known for its capacity to aerobically degrade harmful organic compounds such as polychlorinated biphenyls (PCBs) using biphenyl as co-metabolite. Here we provide the first genetic and functional analysis of the KF707 respiratory terminal oxidases in cells grown with two different carbon sources: glucose and biphenyl. We identified five terminal oxidases in KF707: two c(c)aa3 type oxidases (Caa3 and Ccaa3), two cbb3 type oxidases (Cbb31 and Cbb32), and one bd type cyanide-insensitive quinol oxidase (CIO). While the activity and expression of both Cbb31 and Cbb32 oxidases was prevalent in glucose grown cells as compared to the other oxidases, the activity and expression of the Caa3 oxidase increased considerably only when biphenyl was used as carbon source in contrast to the Cbb32 oxidase which was repressed. Further, the respiratory activity and expression of CIO was up-regulated in a Cbb31 deletion strain as compared to W.T. whereas the CIO up-regulation was not present in Cbb32 and C(c)aa3 deletion mutants. These results, together, reveal that both function and expression of cbb3 and caa3 type oxidases in KF707 are modulated by biphenyl which is the co-metabolite needed for the activation of the PCBs-degradation pathway.
机译:假单胞假单胞菌KF707是一种土壤细菌,已知具有使用联苯作为共代谢物来有氧降解有害有机化合物(如多氯联苯(PCB))的能力。在这里,我们提供了在两种不同碳源(葡萄糖和联苯)生长的细胞中KF707呼吸末端氧化酶的首次遗传和功能分析。我们在KF707中鉴定出五种末端氧化酶:两种c(c)aa3型氧化酶(Caa3和Ccaa3),两种cbb3型氧化酶(Cbb31和Cbb32)和一种bd型对氰化物不敏感的喹诺酚氧化酶(CIO)。尽管与其他氧化酶相比,葡萄糖生长的细胞中Cbb31和Cbb32氧化酶的活性和表达均普遍存在,但Cab3氧化酶的活性和表达仅在联苯被用作碳源时才显着增加,而Cbb32和Cbb32氧化酶则相反。压抑。此外,与W.T.相比,在Cbb31缺失菌株中呼吸活性和CIO表达被上调,而在Cbb32和C(c)aa3缺失突变体中不存在CIO上调。这些结果共同表明,KF707中cbb3和caa3型氧化酶的功能和表达都受到联苯的调节,而联苯是激活PCBs降解途径所需的共代谢物。

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