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Integrated multi-omics highlights alterations of gut microbiome functions in prodromal and idiopathic Parkinson’s disease

  • Rémy Villette
  • , Júlia Ortís Sunyer
  • , Polina V. Novikova
  • , Velma T.E. Aho
  • , Viacheslav A. Petrov
  • , Oskar Hickl
  • , Susheel Bhanu Busi
  • , Charlotte De Rudder
  • , Benoit J. Kunath
  • , Anna Heintz-Buschart
  • , Jean Pierre Trezzi
  • , Rashi Halder
  • , Christian Jäger
  • , Laura A. Lebrun
  • , Annegrät Daujeumont
  • , Sebastian Schade
  • , Annette Janzen
  • , Nico Jehmlich
  • , Martin von Bergen
  • , Cédric C. Laczny
  • Patrick May, Claudia Trenkwalder, Wolfgang Oertel, Brit Mollenhauer, Paul Wilmes*
*Corresponding author for this work

Research output: Contribution to journalLetterpeer-review

8 Citations (Scopus)

Abstract

Background: Parkinson’s disease (PD) is associated with gut microbiome shifts. These shifts are mainly described at taxonomic level, but the functional consequences remain unclear. To obtain insight into the functional disruptions of the gut microbiome in PD, we used an integrated multi-omics approach, comparing gut microbiomes of individuals with PD, prodromal PD, and healthy controls. Results: Meta-metabolomics, the most discriminatory and robust omics level, was selected to Guide the analysis. We identified 11 metabolites that were differentially abundant between the groups, among which β-glutamate was increased in PD and prodromal PD, and correlated with the transcriptional activities of Methanobrevibacter smithii and Clostridium spp. We identified decreases in transcripts, but not in gene abundances, related to glutamate metabolism, bile acids biosynthesis, chemotaxis, and flagellar assembly in PD, particularly in keystone genera such as Roseburia, Agathobacter, and Blautia. Our findings, integrated into the Expobiome map, reveal multifactorial microbiome alterations which converge with PD pathways. Conclusion: Our study highlights the apparent disruption of microbial gene expression in PD, particularly in genes associated to mobility. Moreover, we showcase the importance of investigating the gut microbiome’s functional dimensions to better resolve microbiome-host interactions in health and disease.

Original languageEnglish
Article number200
Pages (from-to)200
JournalMicrobiome
Volume13
Issue number1
DOIs
Publication statusPublished - 7 Oct 2025
Externally publishedYes

Keywords

  • Bile acids
  • Flagella
  • Gene expression
  • Gut microbiome
  • Multi-omics
  • Parkinson’s disease
  • Bacteria/classification
  • Humans
  • Middle Aged
  • Metabolome
  • Male
  • Multiomics
  • Parkinson Disease/microbiology
  • Prodromal Symptoms
  • Feces/microbiology
  • Gastrointestinal Microbiome/genetics
  • Female
  • Aged
  • Metabolomics/methods

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