Pseudomonas putida Coordinates the Expression of two Manganese Oxidases and Optimizes Manganese Oxide Precipitation in Response to Aqueous Mn(II)
Pseudomonas putida координирует экспрессию двух оксидаз марганца и оптимизирует осаждение оксидов марганца в ответ на содержание Mn(II) в водной среде
2025-06-05
SCID: 54.1/2c3y4w58
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Mn(II) oxidationMnxG and McoAPseudomonas putida GB-1manganese oxidasesmanganese oxide precipitation
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Abstract (AI)
High Resolution Image Download MS PowerPoint Slide Manganese (Mn) oxides are commonly precipitated by bacteria and fungi. Recent studies have shown that Mn-oxidizing bacteria can harbor multiple Mn oxidases, but environmental controls on the regulation of these enzymes are unknown. Here, we examine the activation of the genes encoding for MnxG and McoA, two Mn oxidases in Pseudomonas putida GB-1, in response to varying Mn(II) concentrations. Using reporter gene fusion strains, we found that mnxG and mcoA are activated only by a fraction of the cells in the population and at different threshold Mn concentrations, with an increasing proportion of cells expressing mnxG (<10 μM) and then mcoA (>10 to 500 μM). Kinetic modeling showed that coexpression of mnxG and mcoA not only alleviates substrate saturation and inhibition of MnxG at high Mn(II) concentrations but also results in an 8-fold increase in the initial rate of Mn oxidation in the wild type compared to strains lacking mnxG or mcoA . The population-level control of gene activation and, ultimately, Mn oxide precipitation, in response to the initial Mn(II) concentration, shows that P. putida fine-tunes the regulation of multiple Mn oxidases to operate under varying environmental conditions.
Key Findings
1
Coexpression of MnxG and McoA alleviates MnxG substrate saturation and inhibition at high Mn(II) concentrations.
2
Population-level coordination of oxidase expression enables P. putida to fine-tune manganese oxide precipitation across varying Mn(II) conditions.
3
Pseudomonas putida GB-1 regulates two manganese oxidases, MnxG and McoA, in response to aqueous Mn(II) concentration.
4
Wild-type P. putida exhibits an 8-fold higher initial Mn oxidation rate than strains lacking either mnxG or mcoA.
5
mnxG and mcoA activation occurs in distinct cell subpopulations and at different Mn(II) thresholds rather than uniformly across the population.
6
mnxG expression increases below 10 μM Mn(II), whereas mcoA expression occurs primarily from above 10 to 500 μM Mn(II).
Research Object
Pseudomonas putida GB-1 cells expressing the manganese oxidases MnxG and McoA and precipitating manganese oxides in response to aqueous Mn(II)
Research Subject
Population-level coordination and concentration-dependent regulation of mnxG and mcoA activation, manganese oxidation kinetics, and manganese oxide precipitation under varying Mn(II) concentrations
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2025-06-05
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