High-resolution multi-omics enhances prediction and detection of smORF-encoded proteins in the human gut microbiome

M Megan E. Davin J Júlia Ortís Sunyer L Luis F. Delgado S Steven L. Tavis T Tuesday Lowndes Z Zainab Zafar J Jordan Caussin R Rashi Halder O Oskar Hickl C Cédric C. Laczny E Etienne Hanslian D Daniela A. Koppold A Anika Rajput-Khokhar N Nico Steckhan S Sebastian Schade J Jochen Schneider B Brit Mollenhauer A Andreas Michalsen P Patrick May R Robert L. Hettich P Paul Wilmes

Abstract

Abstract Small open reading frames (smORFs), which encode proteins under 100 amino acids, represent an underexplored dimension of the human gut microbiome, despite growing evidence of their essential biological roles. Due to small size and poor annotation, smORFs are typically excluded from metagenomic/metaproteomic analyses. Here, we present a high-resolution multi-omic workflow that integrates smORF prediction into metaproteome searches and enables ultra-deep detection of smORF-encoded proteins (SEPs), without experimental size-based enrichment, utilizing state-of-the-art mass spectrometry instrumentation. Applied to human gut microbiomes, this approach resulted in the largest number of detected SEPs to date, allowing identification of over 25,000 SEPs in the metaproteome, alongside the measurements of the larger proteins. Our multi-omics integrative strategy is critical for advancing human metaproteome research. It also provides a generalizable strategy for comprehensive SEP discovery across diverse microbial ecosystems greatly expanding the previously hidden proteomic landscape.

Article Details

Volume / Issue Vol. 17, Issue 1
Published May 09, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (21)

M

Megan E. Davin

J

Júlia Ortís Sunyer

L

Luis F. Delgado

S

Steven L. Tavis

T

Tuesday Lowndes

Z

Zainab Zafar

J

Jordan Caussin

R

Rashi Halder

O

Oskar Hickl

C

Cédric C. Laczny

E

Etienne Hanslian

D

Daniela A. Koppold

A

Anika Rajput-Khokhar

N

Nico Steckhan

S

Sebastian Schade

J

Jochen Schneider

B

Brit Mollenhauer

A

Andreas Michalsen

P

Patrick May

R

Robert L. Hettich

P

Paul Wilmes