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Reverting the mode of action of the mitochondrial FOF1-ATPase by Legionella pneumophila preserves its replication niche
- Source :
- eLife, eLife, 2021, 10, ⟨10.7554/eLife.71978⟩, eLife, Vol 10 (2021)
- Publication Year :
- 2021
- Publisher :
- HAL CCSD, 2021.
-
Abstract
- Legionella pneumophila, the causative agent of Legionnaires’ disease, a severe pneumonia, injects via a type-IV-secretion-system (T4SS) more than 300 proteins into macrophages, its main host cell in humans. Certain of these proteins are implicated in reprogramming the metabolism of infected cells by reducing mitochondrial oxidative phosphorylation (OXPHOS) early after infection. Here we show that despite reduced OXPHOS, the mitochondrial membrane potential (Δψm) is maintained during infection of primary human monocyte-derived macrophages (hMDMs). We reveal that L. pneumophila reverses the ATP-synthase activity of the mitochondrial FOF1-ATPase to ATP-hydrolase activity in a T4SS-dependent manner, which leads to a conservation of the Δψm, preserves mitochondrial polarization and prevents macrophage cell death. Analyses of T4SS effectors known to target mitochondrial functions revealed that LpSpl is partially involved in conserving the Δψm, but not LncP and MitF. The inhibition of the L. pneumophila-induced “reverse mode” of the FOF1-ATPase collapsed the Δψm and caused cell death in infected cells. Single-cell analyses suggested that bacterial replication occurs preferentially in hMDMs that conserved the Δψm and showed delayed cell death. This direct manipulation of the mode of activity of the FOF1-ATPase is a newly identified feature of L. pneumophila allowing to delay host cell death and thereby to preserve the bacterial replication niche during infection.
- Subjects :
- Programmed cell death
QH301-705.5
MESH: Mitochondria
Science
infectious disease
FOF1-ATPase
Oxidative phosphorylation
[SDV.BC]Life Sciences [q-bio]/Cellular Biology
Biology
Legionella pneumophila
MESH: Proton-Translocating ATPases
03 medical and health sciences
0302 clinical medicine
mitochondrial membrane potential
MESH: Adenosine Triphosphate
Biology (General)
MESH: Bacterial Proteins
MESH: Type IV Secretion Systems
030304 developmental biology
Membrane potential
0303 health sciences
Effector
microbiology
MESH: Mitochondrial Proteins
Metabolism
Microphthalmia-associated transcription factor
biology.organism_classification
MESH: Legionella pneumophila
OXPHOS
3. Good health
Cell biology
macrophages
mitochondria
cell death
Medicine
Reprogramming
030217 neurology & neurosurgery
Subjects
Details
- Language :
- English
- ISSN :
- 2050084X
- Database :
- OpenAIRE
- Journal :
- eLife, eLife, 2021, 10, ⟨10.7554/eLife.71978⟩, eLife, Vol 10 (2021)
- Accession number :
- edsair.doi.dedup.....ec023775ebedc88a0e97c344623bda67
- Full Text :
- https://doi.org/10.7554/eLife.71978⟩