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Updated: Jul 4, 2026

Visualization of Germinosomes and the Inner Membrane in Bacillus subtilis Spores
Published on: April 15, 2019
Direct visualization of the outer membrane of mycobacteria and corynebacteria in their native state
Benoît Zuber1, Mohamed Chami, Christine Houssin
1Laboratory of Ultrastructural Analysis, University of Lausanne, Biophore Building, 1015 Lausanne, Switzerland. bzuber@mrc-lmb.cam.ac.uk
Abstract:
The cell envelope of mycobacteria, which include the causative agents of tuberculosis and leprosy, is crucial for their success as pathogens. Despite a continued strong emphasis on identifying the multiple chemical components of this envelope, it has proven difficult to combine its components into a comprehensive structural model, primarily because the available ultrastructural data rely on conventional electron microscopy embedding and sectioning, which are known to induce artifacts. The existence of an outer membrane bilayer has long been postulated but has never been directly observed by electron microscopy of ultrathin sections. Here we have used cryo-electron microscopy of vitreous sections (CEMOVIS) to perform a detailed ultrastructural analysis of three species belonging to the Corynebacterineae suborder, namely, Mycobacterium bovis BCG, Mycobacterium smegmatis, and Corynebacterium glutamicum, in their native state. We provide new information that accurately describes the different layers of the mycobacterial cell envelope and challenges current models of the organization of its components. We show a direct visualization of an outer membrane, analogous to that found in gram-negative bacteria, in the three bacterial species examined. Furthermore, we demonstrate that mycolic acids, the hallmark of mycobacteria and related genera, are essential for the formation of this outer membrane. In addition, a granular layer and a low-density zone typifying the periplasmic space of gram-positive bacteria are apparent in CEMOVIS images of mycobacteria and corynebacteria. Based on our observations, a model of the organization of the lipids in the outer membrane is proposed. The architecture we describe should serve as a reference for future studies to relate the structure of the mycobacterial cell envelope to its function.
Insights
Cryo-electron microscopy visualized the mycobacterial cell envelope, revealing a distinct outer membrane essential for pathogens like tuberculosis and leprosy. This finding challenges existing models and highlights the role of mycolic acids in its structure.
Area of Science:
- Microbiology
- Structural Biology
- Bacterial Pathogenesis
Background:
- The mycobacterial cell envelope is vital for pathogens causing tuberculosis and leprosy.
- Conventional electron microscopy methods for studying the cell envelope introduce artifacts, hindering accurate structural modeling.
- The existence of an outer membrane in mycobacteria has been long-theorized but never directly visualized.
Purpose of the Study:
- To perform a detailed ultrastructural analysis of the mycobacterial cell envelope in its native state.
- To directly visualize the outer membrane of mycobacteria using cryo-electron microscopy of vitreous sections (CEMOVIS).
- To challenge current models of mycobacterial cell envelope organization and propose a new structural model.
Main Methods:
- Cryo-electron microscopy of vitreous sections (CEMOVIS) was employed.
- Ultrastructural analysis was conducted on three species: Mycobacterium bovis BCG, Mycobacterium smegmatis, and Corynebacterium glutamicum.
- The native state of the bacterial cell envelope was preserved during imaging.
Main Results:
- Direct visualization of an outer membrane, similar to that in Gram-negative bacteria, was achieved in all three examined species.
- Mycolic acids were identified as essential components for the formation of this outer membrane.
- A granular layer and a low-density zone in the periplasmic space were observed, characteristic of Gram-positive bacteria.
Conclusions:
- The study provides direct ultrastructural evidence for an outer membrane in mycobacteria, challenging previous models.
- Mycolic acids play a critical role in the formation and structure of the mycobacterial outer membrane.
- The findings offer a new reference model for understanding the structure-function relationship of the mycobacterial cell envelope.
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