PXD075819 is an
original dataset announced via ProteomeXchange.
Dataset Summary
| Title | Impact of size exclusion chromatography on the purity and proteomic profiles of extracellular vesicles derived from Lactobacillus reuteri |
| Description | Extracellular vesicles (EVs) produced by probiotic bacteria are increasingly recognized as key mediators of host-microbe communication. However, the molecular composition and biological interpretation of bacterial EV proteomes are strongly influenced by the isolation method used. Here, we systematically compared ultracentrifugation (UC) and size exclusion chromatography (SEC) for isolating EVs from Lactobacillus reuteri DSM 20016 and evaluated their effects on vesicle yield, purity, and proteomic profiles. Although UC generated a significantly higher EV yield than SEC, it resulted in substantially lower purity, as indicated by elevated protein contamination and a reduced particle-to-protein ratio. In contrast, SEC improved EV purity by approximately 6.45-fold, demonstrating more effective removal of non-vesicular proteins. Quantitative proteomics identified 982 proteins in bacteria, 677 in UC-EVs, and 861 in SEC-EVs. UC-EVs were predominantly enriched in cytosolic metabolic enzymes, ribosomal proteins, and macromolecular complex-associated components, consistent with co-sedimentation artifacts during high-speed UC. However, SEC-EVs showed selective enrichment of membrane-associated and cell wall-modifying proteins, including peptidoglycan hydrolases, lipoproteins, holin, lytic transglycosylase, penicillin-binding protein, and sulfatase, supporting their origin from regulated envelope remodeling processes. Notably, SEC-EVs contained several proteins including NLP/P60 protein, peptidoglycan hydrolases, EPS biosynthesis-related enzymes, and lipoproteins implicated in anti-inflammatory activities. Overall, our findings demonstrate that EV proteomes are highly isolation-dependent and identify SEC as a superior approach for enhancing proteomic specificity and biological interpretability in bacterial EV research. |
| HostingRepository | PRIDE |
| AnnounceDate | 2026-09-01 |
| AnnouncementXML | Submission_2026-08-31_21:22:07.937.xml |
| DigitalObjectIdentifier | |
| ReviewLevel | Peer-reviewed dataset |
| DatasetOrigin | Original dataset |
| RepositorySupport | Unsupported dataset by repository |
| PrimarySubmitter | Dongsic Choi |
| SpeciesList | scientific name: Homo sapiens (Human); NCBI TaxID: NEWT:9606; |
| ModificationList | monohydroxylated residue; deamidated residue; iodoacetamide derivatized residue |
| Instrument | Orbitrap Fusion |
Dataset History
| Revision | Datetime | Status | ChangeLog Entry |
| 0 | 2026-03-18 19:22:27 | ID requested | |
| ⏵ 1 | 2026-08-31 21:22:08 | announced | |
Publication List
Keyword List
| submitter keyword: membrane vesicles, exosomes, inflammation, lactic acid bacteria,Limosilactobacillus |
Contact List
| Dongsic Choi |
| contact affiliation | Department of Biochemistry, Soonchunhyang University, College of Medicine, Cheonan, 31151, Republic of Korea |
| contact email | dongsic@sch.ac.kr |
| lab head | |
| Dongsic Choi |
| contact affiliation | Department of Biochemistry, Soonchunhyang University, College of Medicine
31 Suncheonhyang 6-gil, Bongmyeong-dong, office# 310
Cheonan-si, Chungcheongnam-do, 31151 |
| contact email | dongsic@sch.ac.kr |
| dataset submitter | |
Full Dataset Link List
Dataset FTP location
NOTE: Most web browsers have now discontinued native support for FTP access within the browser window. But you can usually install another FTP app (we recommend FileZilla) and configure your browser to launch the external application when you click on this FTP link. Or otherwise, launch an app that supports FTP (like FileZilla) and use this address: ftp://ftp.pride.ebi.ac.uk/pride/data/archive/2026/09/PXD075819 |
| PRIDE project URI |
Repository Record List
[ + ]
[ - ]
- PRIDE
- PXD075819
- Label: PRIDE project
- Name: Impact of size exclusion chromatography on the purity and proteomic profiles of extracellular vesicles derived from Lactobacillus reuteri