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. 2023 Nov;25(11):2416-2430.
doi: 10.1111/1462-2920.16471. Epub 2023 Jul 31.

Identification and characterization of a novel pathway for aldopentose degradation in Acinetobacter baumannii

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Identification and characterization of a novel pathway for aldopentose degradation in Acinetobacter baumannii

Lydia Alberti et al. Environ Microbiol. 2023 Nov.

Abstract

The nosocomial pathogen Acinetobacter baumannii is well known for its extraordinary metabolic diversity. Recently, we demonstrated growth on L-arabinose, but the pathway remained elusive. Transcriptome analyses revealed two upregulated gene clusters that code for isoenzymes catalysing oxidation of a pentonate to α-ketoglutarate. Molecular, genetic, and biochemical experiments revealed one branch to be specific for L-arabonate oxidation, and the other for D-xylonate and D-ribonate. Both clusters also encode an uptake system and a regulator that acts as activator (L-arabonate) or repressor (D-xylonate and D-ribonate). Genes encoding the initial oxidation of pentose to pentonate were not part of the clusters, but our data are consistent with the hypothesis of a promiscous, pyrroloquinoline quinone (PQQ)-dependent, periplasmic pentose dehydrogenase, followed by the uptake of the pentonates and their degradation by specific pathways. However, there is a cross-talk between the two different pathways since the isoenzymes can replace each other. Growth on pentoses was found only in pathogenic Acinetobacter species but not in non-pathogenic such as Acinetobacter baylyi. However, mutants impaired in growth on pentoses were not affected in traits important for infection, but growth on L-arabinose was beneficial for long-term survival and desiccation resistance in A. baumannii ATCC 19606.

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References

REFERENCES

    1. Barbe, V., Vallenet, D., Fonknechten, N., Kreimeyer, A., Oztas, S., Labarre, L. et al. (2004) Unique features revealed by the genome sequence of Acinetobacter sp. ADP1, a versatile and naturally transformation competent bacterium. Nucleic Acids Research, 32, 5766-5779.
    1. Baumann, P., Doudoroff, M. & Stanier, R.Y. (1968) A study of the Moraxella group II. Oxidative-negative species (genus Acinetobacter). Journal of Bacteriology, 95, 1520-1541.
    1. Bertani, G. (1951) Studies on lysogenesis. 1. The mode of phage liberation by lysogenic Escherichia coli. Journal of Bacteriology, 62, 293-300.
    1. Beutler, E., Kuhl, W. & Gelbart, T. (1986) Blood cell phosphogluconolactonase: assay and properties. British Journal of Haematology, 62, 577-586.
    1. Bouvet, P.J.M. & Grimont, P.A.D. (1986) Taxonomy of the genus Acinetobacter with the recognition of Acinetobacter baumannii sp. nov., Acinetobacter haemolyticus sp. nov., Acinetobacter johnsonii sp. nov., and Acinetobacter junii sp. nov. and emended descriptions of Acinetobacter calcoaceticus and Acinetobacter lwoffii. International Journal of Systematic and Evolutionary Microbiology, 36, 228-240.

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