Ultra-sensitive metaproteomics redefines the dark metaproteome, uncovering host-microbiome interactions and drug targets in intestinal diseases

F Feng Xian M Malena Brenek C Christoph Krisp E Elisabeth Urbauer R Ranjith Kumar Ravi Kumar D Doriane Aguanno T Tharan Srikumar Q Qixin Liu A Allison M. Barry B Bin Ma (State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences) J Jonathan Krieger D Dirk Haller M Manuela Schmidt D David Gomez-Varela

Abstract

Abstract The functional characterization of host-gut microbiome interactions remains limited by the sensitivity of current metaproteomic approaches. Here, we present uMetaP, an ultra-sensitive workflow combining advanced LC-MS technologies with an FDR-validated de novo sequencing strategy, novoMP. uMetaP markedly expands functional coverage and improves the taxonomic detection limit of the gut dark metaproteome by 5000-fold, enabling precise detection and quantification of low-abundance microbial and host proteins. Applied to a mouse model of intestinal injury, uMetaP revealed host-microbiome functional networks underlying tissue damage, beyond genomic findings. Orthogonal validation using transcriptomic data from Crohn’s disease patients confirmed key host protein alterations. Furthermore, we introduce the concept of a druggable metaproteome, mapping functional targets within the host and microbiota. By redefining the sensitivity limits of metaproteomics, uMetaP provides a highly valuable framework for advancing microbiome research and developing therapeutic strategies for microbiome-related diseases.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 18, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (14)

F

Feng Xian

M

Malena Brenek

C

Christoph Krisp

E

Elisabeth Urbauer

R

Ranjith Kumar Ravi Kumar

D

Doriane Aguanno

T

Tharan Srikumar

Q

Qixin Liu

A

Allison M. Barry

B

Bin Ma

State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences

J

Jonathan Krieger

D

Dirk Haller

M

Manuela Schmidt

D

David Gomez-Varela