The Parkinson’s drug entacapone disrupts gut microbiome homeostasis via iron sequestration

Author:

Pereira Fátima C.ORCID,Ge XiaoweiORCID,Kristensen Jannie MunkORCID,Kirkegaard Rasmus H.ORCID,Maritsch Klara,Zhu Yifan,Decorte Marie,Hausmann BelaORCID,Berry DavidORCID,Wasmund KennethORCID,Schintlmeister ArnoORCID,Boettcher Thomas,Cheng Ji-Xin,Wagner Michael

Abstract

AbstractIncreasing evidence shows that many human-targeted drugs alter the gut microbiome, leading to implications for host health. However, much less is known about the mechanisms by which drugs target the microbiome and how drugs affect microbial function. Here we combined quantitative microbiome profiling, long-read metagenomics, stable isotope probing and single cell chemical imaging to investigate the impact of two widely prescribed nervous system targeted drugs on the gut microbiome.Ex vivosupplementation of physiologically relevant concentrations of entacapone or loxapine succinate to faecal samples significantly impacted the abundance of up to one third of the microbial species present. Importantly, we demonstrate that the impact of these drugs on microbial metabolism is much more pronounced than their impact on abundances, with low concentrations of drugs reducing the activity, but not the abundance of key microbiome members likeBacteroides, RuminococcusorClostridiumspecies. We further demonstrate that entacapone impacts the microbiome due to its ability to complex and deplete available iron, and that microbial growth can be rescued by replenishing levels of microbiota-accessible iron. Remarkably, entacapone-induced iron starvation selected for iron-scavenging organisms carrying antimicrobial resistance and virulence genes. Collectively, our study unveils the impact of two under-investigated drugs on whole microbiomes and identifies metal sequestration as a mechanism of drug-induced microbiome disturbance.

Publisher

Cold Spring Harbor Laboratory

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