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Updated: Dec 6, 2025

Isolation and Characterization of Extracellular Vesicles Produced by Iron-limited Mycobacteria
Published on: October 31, 2019
Membrane vesicles from a Dietzia bacterium containing multiple cargoes and their roles in iron delivery
Meng Wang1, Yong Nie1, Xiao-Lei Wu1,2,3
1College of Engineering, Peking University, Beijing, China.
Abstract:
Membrane vesicles (MVs) released from bacteria act as extracellular vehicles carrying various functional cargoes between cells. MVs with different cargoes play multiple roles in stress adaptation, nutrient acquisition and microbial interactions. However, previous studies have primarily focused on MVs from Gram-negative bacteria, while the characteristics of cargoes in MVs from Gram-positive bacteria and their involvement in microbial interactions remain to be elucidated. Here, we used a Gram-positive strain, Dietzia sp. DQ12-45-1b from Corynebacteriales, to analyse the characteristics and functions of MVs. We identified the 'antioxidant' canthaxanthin is stored within MVs by LC-MS/MS. In addition, nearly the entire genomic content of strain DQ12-45-1b are evenly distributed in MVs, suggesting that MVs from DQ12-45-1b might involve in horizontal gene transfer. Finally, the mycobactin-type siderophores were detected in MVs. The iron-loaded MVs effectively mediate iron binding and delivery to homologous bacteria from the order Corynebacteriales, but not to more distantly related species from the orders Pseudomonadales, Bacillales and Enterobacterales. These results revealed that the iron-loaded MVs are shared between homologous species. Together, we report the Gram-positive bacterium Dietzia sp. DQ12-45-1b released MVs that contain canthaxanthin, DNA and siderophores and prove that MVs act as public goods between closely related species.
Insights
Gram-positive bacteria release membrane vesicles (MVs) containing antioxidants, DNA, and siderophores. These MVs function as shared resources, facilitating nutrient exchange and potential gene transfer among closely related bacterial species.
Area of Science:
- Microbiology
- Bacterial Physiology
- Extracellular Vesicles
Background:
- Membrane vesicles (MVs) are bacterial extracellular vehicles with diverse functions.
- Previous research predominantly focused on MVs from Gram-negative bacteria.
- The cargo and roles of MVs from Gram-positive bacteria are less understood.
Purpose of the Study:
- To investigate the characteristics and functions of MVs from the Gram-positive bacterium Dietzia sp. DQ12-45-1b.
- To identify the molecular cargo within these MVs.
- To determine the role of MVs in inter-bacterial interactions.
Main Methods:
- Liquid chromatography-tandem mass spectrometry (LC-MS/MS) for cargo identification.
- Genomic analysis of MV content.
- Functional assays for iron binding and delivery.
Main Results:
- MVs contained the antioxidant canthaxanthin.
- Nearly the entire genome of the parent bacterium was found within the MVs.
- Mycobactin-type siderophores were identified, mediating iron delivery to homologous Corynebacteriales species but not to distantly related bacteria.
Conclusions:
- Gram-positive bacteria Dietzia sp. DQ12-45-1b release MVs carrying canthaxanthin, DNA, and siderophores.
- These MVs facilitate horizontal gene transfer and act as shared resources for iron acquisition among closely related species.
- MVs represent a mechanism for inter-species cooperation in bacteria.
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