School of Chemistry and Molecular Biosciences, The University of Queensland, St Lucia 4072, Australia.
Department of Biosciences, Durham University, Durham DH1 3LE, U.K.
Biochem J. 2019 Feb 14;476(3):595-611. doi: 10.1042/BCJ20180902.
Bacterial pathogens encounter a variety of adverse physiological conditions during infection, including metal starvation, metal overload and oxidative stress. Here, we demonstrate that group A (GAS) utilises Mn(II) import via MtsABC during conditions of hydrogen peroxide stress to optimally metallate the superoxide dismutase, SodA, with Mn. MtsABC expression is controlled by the DtxR family metalloregulator MtsR, which also regulates the expression of Fe uptake systems in GAS. Our results indicate that the SodA in GAS requires Mn for full activity and has lower activity when it contains Fe. As a consequence, under conditions of hydrogen peroxide stress where Fe is elevated, we observed that the PerR-regulated Fe(II) efflux system PmtA was required to reduce intracellular Fe, thus protecting SodA from becoming mismetallated. Our findings demonstrate the co-ordinate action of MtsR-regulated Mn(II) import by MtsABC and PerR-regulated Fe(II) efflux by PmtA to ensure appropriate Mn(II) metallation of SodA for optimal superoxide dismutase function.
细菌病原体在感染过程中会遇到多种不利的生理条件,包括金属饥饿、金属过载和氧化应激。在这里,我们证明 A 群链球菌 (GAS) 在过氧化氢应激条件下利用 MtsABC 导入 Mn(II) ,以最佳方式用 Mn 对超氧化物歧化酶 SodA 进行金属化。MtsABC 的表达受 DtxR 家族金属调控因子 MtsR 控制,MtsR 还调控 GAS 中 Fe 摄取系统的表达。我们的结果表明,GAS 中的 SodA 需要 Mn 才能发挥全部活性,而当它含有 Fe 时,活性较低。因此,在过氧化氢应激条件下,Fe 水平升高时,我们观察到 PerR 调控的 Fe(II)外排系统 PmtA 需要降低细胞内的 Fe,从而防止 SodA 被错误金属化。我们的发现表明,MtsR 调控的 MtsABC 导入 Mn(II)和 PerR 调控的 PmtA 排出 Fe(II)的协调作用,以确保 SodA 获得最佳的超氧化物歧化酶功能所需的适当 Mn(II)金属化。