共 87 条
Pyridine nucleotide transhydrogenases enable redox balance of Pseudomonas putida during biodegradation of aromatic compounds
被引:51
作者:

Nikel, Pablo I.
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CSIC, Syst & Synthet Biol Program, Ctr Nacl Biotecnol, E-28049 Madrid, Spain CSIC, Syst & Synthet Biol Program, Ctr Nacl Biotecnol, E-28049 Madrid, Spain

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de Lorenzo, Victor
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CSIC, Syst & Synthet Biol Program, Ctr Nacl Biotecnol, E-28049 Madrid, Spain CSIC, Syst & Synthet Biol Program, Ctr Nacl Biotecnol, E-28049 Madrid, Spain
机构:
[1] CSIC, Syst & Synthet Biol Program, Ctr Nacl Biotecnol, E-28049 Madrid, Spain
[2] Univ Concepcion, Fac Biol Sci, Dept Biochem & Mol Biol, Concepcion 4030000, Chile
基金:
欧盟地平线“2020”;
关键词:
ENTNER-DOUDOROFF PATHWAY;
GRAM-NEGATIVE BACTERIA;
ESCHERICHIA-COLI;
OXIDATIVE STRESS;
TOL PLASMID;
NADH OXIDASE;
KT2440;
METABOLISM;
GENE;
EXPRESSION;
D O I:
10.1111/1462-2920.13434
中图分类号:
Q93 [微生物学];
学科分类号:
071005 ;
100705 ;
摘要:
The metabolic versatility of the soil bacterium Pseudomonas putida is reflected by its ability to execute strong redox reactions (e.g., mono-and di-oxygenations) on aromatic substrates. Biodegradation of aromatics occurs via the pathway encoded in the archetypal TOL plasmid pWW0, yet the effect of running such oxidative route on redox balance against the background metabolism of P. putida remains unexplored. To answer this question, the activity of pyridine nucleotide transhydrogenases (that catalyze the reversible interconversion of NADH and NADPH) was inspected under various physiological and oxidative stress regimes. The genome of P. putida KT2440 encodes a soluble transhydrogenase (SthA) and a membrane-bound, proton-pumping counterpart (PntAB). Mutant strains, lacking sthA and/or pntAB, were subjected to a panoply of genetic, biochemical, phenomic and functional assays in cells grown on customary carbon sources (e.g., citrate) versus difficult-to-degrade aromatic substrates. The results consistently indicated that redox homeostasis is compromised in the transhydrogenases-defective variant, rendering the mutant sensitive to oxidants. This metabolic deficiency was, however, counteracted by an increase in the activity of NADP(+)-dependent dehydrogenases in central carbon metabolism. Taken together, these observations demonstrate that transhydrogenases enable a redox-adjusting mechanism that comes into play when biodegradation reactions are executed to metabolize unusual carbon compounds.
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页码:3565 / 3582
页数:18
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