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Updated: Oct 7, 2026

Intravital Imaging of Attenuated Auxotrophic Mycobacterium tuberculosis in Murine Lung during Early Intravascular Infection
Published on: June 30, 2026
Differential formation of nitrate-responsive mycobacterial intracytoplasmic membranes during Mycobacterium
Camille Keck1, Stéphane Tachon2, Fadel Sayes3
1Institut Pasteur, Université Paris Cité, Dynamics of Host-Pathogen Interactions Unit, CNRS UMR, 3691 Paris, France.
Abstract:
Subcellular compartmentalization of metabolic processes is a main feature of prokaryotic and eukaryotic architecture. Environmental bacteria generate intracytoplasmic membranes (ICMs) as a crucial strategy to adapt their metabolism to environmental changes. While pathogenic intracellular bacteria also perceive various stressful stimuli during host interactions, the subsequent re-organization of their internal architecture has not been explored. Using cryo-electron tomography, we show that Mycobacterium tuberculosis (Mtb), a major human pathogen, is able to form ICMs outside and inside host cells in a strain-dependent manner. We characterize these Mycobacterial intracytoplasmic Membranes (MIMs) as nitrate-induced structures. Furthermore, we uncover that MIM formation in Mtb during macrophage infection correlates with limited cellular inflammatory responses. Our findings reveal a cytoplasmic structure in Mtb and link it to a functional mechanism that enables the bacterium to adapt to its intracellular niche.
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