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Increasing taxonomic and functional characterization of host-microbiome interactions by DIA-PASEF metaproteomics

INTRODUCTION: Metaproteomics is a rapidly advancing field that offers unique insights into the taxonomic composition and the functional activity of microbial communities, and their effects on host physiology. Classically, data-dependent acquisition (DDA) mass spectrometry (MS) has been applied for p...

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Autores principales: Gómez-Varela, David, Xian, Feng, Grundtner, Sabrina, Sondermann, Julia Regina, Carta, Giacomo, Schmidt, Manuela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10613666/
https://www.ncbi.nlm.nih.gov/pubmed/37908546
http://dx.doi.org/10.3389/fmicb.2023.1258703
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author Gómez-Varela, David
Xian, Feng
Grundtner, Sabrina
Sondermann, Julia Regina
Carta, Giacomo
Schmidt, Manuela
author_facet Gómez-Varela, David
Xian, Feng
Grundtner, Sabrina
Sondermann, Julia Regina
Carta, Giacomo
Schmidt, Manuela
author_sort Gómez-Varela, David
collection PubMed
description INTRODUCTION: Metaproteomics is a rapidly advancing field that offers unique insights into the taxonomic composition and the functional activity of microbial communities, and their effects on host physiology. Classically, data-dependent acquisition (DDA) mass spectrometry (MS) has been applied for peptide identification and quantification in metaproteomics. However, DDA-MS exhibits well-known limitations in terms of depth, sensitivity, and reproducibility. Consequently, methodological improvements are required to better characterize the protein landscape of microbiomes and their interactions with the host. METHODS: We present an optimized proteomic workflow that utilizes the information captured by Parallel Accumulation-Serial Fragmentation (PASEF) MS for comprehensive metaproteomic studies in complex fecal samples of mice. RESULTS AND DISCUSSION: We show that implementing PASEF using a DDA acquisition scheme (DDA-PASEF) increased peptide quantification up to 5 times and reached higher accuracy and reproducibility compared to previously published classical DDA and data-independent acquisition (DIA) methods. Furthermore, we demonstrate that the combination of DIA, PASEF, and neuronal-network-based data analysis, was superior to DDA-PASEF in all mentioned parameters. Importantly, DIA-PASEF expanded the dynamic range towards low-abundant proteins and it doubled the quantification of proteins with unknown or uncharacterized functions. Compared to previous classical DDA metaproteomic studies, DIA-PASEF resulted in the quantification of up to 4 times more taxonomic units using 16 times less injected peptides and 4 times shorter chromatography gradients. Moreover, 131 additional functional pathways distributed across more and even uniquely identified taxa were profiled as revealed by a peptide-centric taxonomic-functional analysis. We tested our workflow on a validated preclinical mouse model of neuropathic pain to assess longitudinal changes in host-gut microbiome interactions associated with pain - an unexplored topic for metaproteomics. We uncovered the significant enrichment of two bacterial classes upon pain, and, in addition, the upregulation of metabolic activities previously linked to chronic pain as well as various hitherto unknown ones. Furthermore, our data revealed pain-associated dynamics of proteome complexes implicated in the crosstalk between the host immune system and the gut microbiome. In conclusion, the DIA-PASEF metaproteomic workflow presented here provides a stepping stone towards a deeper understanding of microbial ecosystems across the breadth of biomedical and biotechnological fields.
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spelling pubmed-106136662023-10-31 Increasing taxonomic and functional characterization of host-microbiome interactions by DIA-PASEF metaproteomics Gómez-Varela, David Xian, Feng Grundtner, Sabrina Sondermann, Julia Regina Carta, Giacomo Schmidt, Manuela Front Microbiol Microbiology INTRODUCTION: Metaproteomics is a rapidly advancing field that offers unique insights into the taxonomic composition and the functional activity of microbial communities, and their effects on host physiology. Classically, data-dependent acquisition (DDA) mass spectrometry (MS) has been applied for peptide identification and quantification in metaproteomics. However, DDA-MS exhibits well-known limitations in terms of depth, sensitivity, and reproducibility. Consequently, methodological improvements are required to better characterize the protein landscape of microbiomes and their interactions with the host. METHODS: We present an optimized proteomic workflow that utilizes the information captured by Parallel Accumulation-Serial Fragmentation (PASEF) MS for comprehensive metaproteomic studies in complex fecal samples of mice. RESULTS AND DISCUSSION: We show that implementing PASEF using a DDA acquisition scheme (DDA-PASEF) increased peptide quantification up to 5 times and reached higher accuracy and reproducibility compared to previously published classical DDA and data-independent acquisition (DIA) methods. Furthermore, we demonstrate that the combination of DIA, PASEF, and neuronal-network-based data analysis, was superior to DDA-PASEF in all mentioned parameters. Importantly, DIA-PASEF expanded the dynamic range towards low-abundant proteins and it doubled the quantification of proteins with unknown or uncharacterized functions. Compared to previous classical DDA metaproteomic studies, DIA-PASEF resulted in the quantification of up to 4 times more taxonomic units using 16 times less injected peptides and 4 times shorter chromatography gradients. Moreover, 131 additional functional pathways distributed across more and even uniquely identified taxa were profiled as revealed by a peptide-centric taxonomic-functional analysis. We tested our workflow on a validated preclinical mouse model of neuropathic pain to assess longitudinal changes in host-gut microbiome interactions associated with pain - an unexplored topic for metaproteomics. We uncovered the significant enrichment of two bacterial classes upon pain, and, in addition, the upregulation of metabolic activities previously linked to chronic pain as well as various hitherto unknown ones. Furthermore, our data revealed pain-associated dynamics of proteome complexes implicated in the crosstalk between the host immune system and the gut microbiome. In conclusion, the DIA-PASEF metaproteomic workflow presented here provides a stepping stone towards a deeper understanding of microbial ecosystems across the breadth of biomedical and biotechnological fields. Frontiers Media S.A. 2023-10-16 /pmc/articles/PMC10613666/ /pubmed/37908546 http://dx.doi.org/10.3389/fmicb.2023.1258703 Text en Copyright © 2023 Gómez-Varela, Xian, Grundtner, Sondermann, Carta and Schmidt. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Gómez-Varela, David
Xian, Feng
Grundtner, Sabrina
Sondermann, Julia Regina
Carta, Giacomo
Schmidt, Manuela
Increasing taxonomic and functional characterization of host-microbiome interactions by DIA-PASEF metaproteomics
title Increasing taxonomic and functional characterization of host-microbiome interactions by DIA-PASEF metaproteomics
title_full Increasing taxonomic and functional characterization of host-microbiome interactions by DIA-PASEF metaproteomics
title_fullStr Increasing taxonomic and functional characterization of host-microbiome interactions by DIA-PASEF metaproteomics
title_full_unstemmed Increasing taxonomic and functional characterization of host-microbiome interactions by DIA-PASEF metaproteomics
title_short Increasing taxonomic and functional characterization of host-microbiome interactions by DIA-PASEF metaproteomics
title_sort increasing taxonomic and functional characterization of host-microbiome interactions by dia-pasef metaproteomics
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10613666/
https://www.ncbi.nlm.nih.gov/pubmed/37908546
http://dx.doi.org/10.3389/fmicb.2023.1258703
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