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Ecophysiology and interactions of a taurine-respiring bacterium in the mouse gut

  • Huimin Ye
  • , Sabrina Borusak
  • , Claudia Eberl
  • , Julia Krasenbrink
  • , Anna S Weiss
  • , Songcan Chen
  • , Buck T Hanson
  • , Bela Hausmann
  • , Craig W Herbold
  • , Manuel Pristner
  • , Benjamin Zwirzitz
  • , Benedikt Warth
  • , Petra Pjevac
  • , David Schleheck
  • , Bärbel Stecher
  • , Alexander Loy (Korresp. Autor*in)

Veröffentlichungen: Beitrag in FachzeitschriftArtikelPeer Reviewed

Abstract

Taurine-respiring gut bacteria produce H2S with ambivalent impact on host health. We report the isolation and ecophysiological characterization of a taurine-respiring mouse gut bacterium. Taurinivorans muris strain LT0009 represents a new widespread species that differs from the human gut sulfidogen Bilophila wadsworthia in its sulfur metabolism pathways and host distribution. T. muris specializes in taurine respiration in vivo, seemingly unaffected by mouse diet and genotype, but is dependent on other bacteria for release of taurine from bile acids. Colonization of T. muris in gnotobiotic mice increased deconjugation of taurine-conjugated bile acids and transcriptional activity of a sulfur metabolism gene-encoding prophage in other commensals, and slightly decreased the abundance of Salmonella enterica, which showed reduced expression of galactonate catabolism genes. Re-analysis of metagenome data from a previous study further suggested that T. muris can contribute to protection against pathogens by the commensal mouse gut microbiota. Together, we show the realized physiological niche of a key murine gut sulfidogen and its interactions with selected gut microbiota members.

OriginalspracheEnglisch
Aufsatznummer5533
Seitenumfang15
FachzeitschriftNature Communications
Jahrgang14
Ausgabenummer1
DOIs
PublikationsstatusVeröffentlicht - Dez. 2023

Fördermittel

We thank Bernhard Schink (University of Konstanz, Germany) for Latin naming, Daniela Gruber (Core Facility of Cell Imaging and Ultrastructure Research, University of Vienna) and Isabella B\u00F6hm for help with scanning electron microscopy, Markus Schmid for help with FISH imaging, and Jasmin Schwarz and Gudrun Kohl (Joint Microbiome Facility) for sequencing. We also thank Holger Daims, Kerrin Steensen, Astrid Collingro, Hannes Schmidt, the DOME gut group members in Vienna as well as our colleagues at the University of Konstanz and LMU Munich for fruitful discussions and support. The mass spectrometric measurements were enabled by the Exposome/EIRENE Austria research infrastructure and the Mass Spectrometry Center of the Faculty of Chemistry at the University of Vienna. This work was financially supported by the Austrian Science Fund (FWF; project grants I2320-B22 and DOC 69-B to A.L.), the Deutsche Forschungsgemeinschaft (DFG; grants SCHL1936/3-4 to D.S., grants STE 1971/7-1, CRC1371, and P08 to B.S.), the Konstanz Research School Chemical Biology (KoRS-CB to B.S.), and the China Scholarship Council (Ph.D. fellowship grant no. 201606850092 to H.Y.).

UN SDGs

Dieser Output leistet einen Beitrag zu folgendem(n) Ziel(en) für nachhaltige Entwicklung

  1. SDG 3 – Gesundheit und Wohlergehen
    SDG 3 – Gesundheit und Wohlergehen

ÖFOS 2012

  • 106026 Ökosystemforschung
  • 106022 Mikrobiologie

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