Glycoside hydrolase from the GH76 family indicates that marine Salegentibacter sp. Hel_I_6 consumes alpha-mannan from fungi

Microbial glycan degradation is essential to global carbon cycling. The marine bacterium Salegentibacter sp. Hel_I_6 ( Bacteroidota ) isolated from seawater off Helgoland island (North Sea) contains an α-mannan inducible gene cluster with a GH76 family endo-α-1,6-mannanase (ShGH76). This cluster is...

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Veröffentlicht in:The ISME Journal 2022-07, Vol.16 (7), p.1818-1830
Hauptverfasser: Solanki, Vipul, Krüger, Karen, Crawford, Conor J., Pardo-Vargas, Alonso, Danglad-Flores, José, Hoang, Kim Le Mai, Klassen, Leeann, Abbott, D. Wade, Seeberger, Peter H., Amann, Rudolf I., Teeling, Hanno, Hehemann, Jan-Hendrik
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Sprache:eng
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Zusammenfassung:Microbial glycan degradation is essential to global carbon cycling. The marine bacterium Salegentibacter sp. Hel_I_6 ( Bacteroidota ) isolated from seawater off Helgoland island (North Sea) contains an α-mannan inducible gene cluster with a GH76 family endo-α-1,6-mannanase (ShGH76). This cluster is related to genetic loci employed by human gut bacteria to digest fungal α-mannan. Metagenomes from the Hel_I_6 isolation site revealed increasing GH76 gene frequencies in free-living bacteria during microalgae blooms, suggesting degradation of α-1,6-mannans from fungi. Recombinant ShGH76 protein activity assays with yeast α-mannan and synthetic oligomannans showed endo-α-1,6-mannanase activity. Resolved structures of apo-ShGH76 (2.0 Å) and of mutants co-crystalized with fungal mannan-mimicking α-1,6-mannotetrose (1.90 Å) and α-1,6-mannotriose (1.47 Å) retained the canonical (α/α) 6 fold, despite low identities with sequences of known GH76 structures (GH76s from gut bacteria:
ISSN:1751-7362
1751-7370
DOI:10.1038/s41396-022-01223-w