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铜P型ATP酶CtpA参与结核分枝杆菌对氧化还原应激的反应。

The copper P-type ATPase CtpA is involved in the response of Mycobacterium tuberculosis to redox stress.

作者信息

López-R Marcela, Maya-Hoyos Milena, León-Torres Andrés, Cruz-Cacais Alver, Castillo Eliana, Soto Carlos Y

机构信息

Chemistry Department, Faculty of Science, Universidad Nacional de Colombia, Ciudad Universitaria, Bogotá, Colombia.

Chemistry Department, Faculty of Science, Universidad Nacional de Colombia, Ciudad Universitaria, Bogotá, Colombia.

出版信息

Biochimie. 2023 Oct 27. doi: 10.1016/j.biochi.2023.10.017.

Abstract

The functional difference among the three copper-transporting P-type ATPases (CtpA, CtpB, and CtpV) annotated in genome of Mycobacterium tuberculosis (Mtb) remains unclear. Thus, CtpA and CtpB are believed to deliver copper to extracytoplasmic proteins as a cofactor required to overcome redox and copper stress in the Mtb periplasm. This study investigates an alternative role of CtpA-mediated copper transportation and its possible interaction with the activity of the multicopper oxidase, (MmcO), in response to redox stress. Results from RT-qPCR experiments indicate that the ctpA gene is upregulated in low Cu concentrations, and under oxidative (HO) and nitrosative (sodium nitroprusside) conditions in vitro, but not in high doses of Cu. Furthermore, the ctpA mutant strain (MtbΔctpA) showed impaired growth in the presence of oxidative and nitrosative stress in vitro. However, it did not display such growth impairments in response to high doses of copper in comparison to the wild-type strain. Disruption of the ctpA gene in the Mtb genome did not induce an accumulation of copper in cells under toxic doses of the metal, suggesting that CtpA is not directly involved in copper detoxification. On the other hand, whole-cell lysates of the MtbΔctpA mutant that were previously stimulated with Cu, HO and SNP (sodium nitroprusside), displayed reduced ability to oxidize organic substrates (para-phenylenediamine (pPD) and 2,2-azino-bis (3-ethylbenzothiazo-line-6-sulfonic acid) (ABTS). These finding strongly suggest that the efflux of copper transported by CtpA from the cytoplasm is relevant to the response to the redox stress and may be required for metalation and activity of MmcO in Mtb.

摘要

结核分枝杆菌(Mtb)基因组中注释的三种铜转运P型ATP酶(CtpA、CtpB和CtpV)之间的功能差异仍不清楚。因此,CtpA和CtpB被认为是将铜作为一种辅助因子传递到胞外蛋白,以克服Mtb周质中的氧化还原和铜胁迫。本研究调查了CtpA介导的铜转运的另一种作用及其在应对氧化还原应激时与多铜氧化酶(MmcO)活性可能的相互作用。RT-qPCR实验结果表明,ctpA基因在低铜浓度下以及体外氧化(H₂O₂)和亚硝化(硝普钠)条件下会上调,但在高剂量铜条件下不会上调。此外,ctpA突变株(MtbΔctpA)在体外氧化和亚硝化应激存在时生长受损。然而,与野生型菌株相比,它在高剂量铜刺激下并未表现出这种生长受损。在结核分枝杆菌基因组中破坏ctpA基因在金属毒性剂量下不会导致细胞内铜的积累,这表明CtpA不直接参与铜解毒。另一方面,先前用铜、H₂O₂和硝普钠刺激的MtbΔctpA突变株的全细胞裂解物氧化有机底物(对苯二胺(pPD)和2,2-联氮-双-(3-乙基苯并噻唑啉-6-磺酸)(ABTS))的能力降低。这些发现强烈表明,CtpA从细胞质转运的铜外流与对氧化还原应激的反应相关,并且可能是结核分枝杆菌中MmcO金属化和活性所必需的。

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