Life Sciences, Michael Smith Building, University of Manchester, Manchester M13 9PT, UK.
Mol Microbiol. 2013 Feb;87(3):466-77. doi: 10.1111/mmi.12107. Epub 2012 Dec 11.
Periplasmic Cu,Zn-superoxide dismutases (Cu,Zn-SODs) are implicated in bacterial virulence. It has been proposed that some bacterial P(1B)-type ATPases supply copper to periplasmic cupro-proteins and such transporters have also been implicated in virulence. Here we show that either of two P(1B)-type ATPases, CopA or GolT, is needed to activate a periplasmic Cu,Zn-SOD (SodCII) in Salmonella enterica serovar Typhimurium. A ΔcopA/ΔgolT mutant accumulates inactive Zn-SodCII which can be activated by copper-supplementation in vitro. In contrast, either single ATPase mutant accumulates fully active Cu,Zn-SodCII. A contribution of GolT to copper handling is consistent with its copper-responsive transcription mediated by DNA-binding metal-responsive activator GolS. The requirement for duplicate transcriptional activators CueR and GolS remains unclear since both have similar tight K(Cu). Mutants lacking periplasmic cupro-protein CueP also accumulate inactive Zn-SodCII and while CopA and GolT show functional redundancy, both require CueP to activate SodCII in vivo. Zn-SodCII is also activated in vitro by incubation with Cu-CueP and this coincides with copper transfer as monitored by electron paramagnetic resonance spectroscopy. These experiments establish a role for CueP within the copper supply pathway for Salmonella Cu,Zn-SodCII. Copper binding by CueP in this pathogen may confer protection of the periplasm from copper-mediated damage while sustaining vital cupro-enzyme activity.
周质铜锌超氧化物歧化酶(Cu,Zn-SODs)与细菌毒力有关。有人提出,一些细菌 P(1B)-型 ATP 酶将铜供应给周质铜蛋白,而这些转运蛋白也与毒力有关。在这里,我们表明,两种 P(1B)-型 ATP 酶之一的 CopA 或 GolT,都需要激活鼠伤寒沙门氏菌中的周质 Cu,Zn-SOD(SodCII)。ΔcopA/ΔgolT 突变体积累无活性的 Zn-SodCII,可在体外通过铜补充来激活。相比之下,任一单个 ATP 酶突变体积累完全活性的 Cu,Zn-SodCII。GolT 对铜处理的贡献与其由 DNA 结合金属反应性激活剂 GolS 介导的铜反应性转录一致。对 GolT 对铜处理的贡献的需求仍然不清楚,因为 GolT 和 CueR 都具有类似的紧密 K(Cu)。缺乏周质铜蛋白 CueP 的突变体也积累无活性的 Zn-SodCII,虽然 CopA 和 GolT 表现出功能冗余,但两者都需要 CueP 才能在体内激活 SodCII。Zn-SodCII 也可通过与 Cu-CueP 孵育在体外激活,这与电子顺磁共振波谱监测的铜转移一致。这些实验确定了 CueP 在沙门氏菌 Cu,Zn-SodCII 的铜供应途径中的作用。该病原体中 CueP 与铜的结合可能为铜介导的损伤提供保护,同时维持重要的铜酶活性。