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Mitochondria: Powering the Innate Immune Response to Mycobacterium tuberculosis Infection
Kristin L Patrick1, Robert O Watson2
1Department of Microbial Pathogenesis and Immunology, Texas A&M Health, College of Medicine, Bryan, Texas, USA.
Abstract:
Within the last decade, we have learned that damaged mitochondria activate many of the same innate immune pathways that evolved to sense and respond to intracellular pathogens. These shared responses include cytosolic nucleic acid sensing and type I interferon (IFN) expression, inflammasome activation that leads to pyroptosis, and selective autophagy (called mitophagy when mitochondria are the cargo). Because mitochondria were once bacteria, parallels between how cells respond to mitochondrial and bacterial ligands are not altogether surprising. However, the potential for cross talk or synergy between bacterium- and mitochondrion-driven innate immune responses during infection remains poorly understood. This interplay is particularly striking, and intriguing, in the context of infection with the intracellular bacterial pathogen Mycobacterium tuberculosis (Mtb). Multiple studies point to a role for Mtb infection and/or specific Mtb virulence factors in disrupting the mitochondrial network in macrophages, leading to metabolic changes and triggering potent innate immune responses. Research from our laboratories and others argues that mutations in mitochondrial genes can exacerbate mycobacterial disease severity by hyperactivating innate responses or activating them at the wrong time. Indeed, growing evidence supports a model whereby different mitochondrial defects or mutations alter Mtb infection outcomes in distinct ways. By synthesizing the current literature in this minireview, we hope to gain insight into the molecular mechanisms driving, and consequences of, mitochondrion-dependent immune polarization so that we might better predict tuberculosis patient outcomes and develop host-directed therapeutics designed to correct these imbalances.
Insights
Damaged mitochondria activate innate immune pathways similar to pathogen responses. Mitochondrial defects impact tuberculosis severity by altering these immune responses, offering targets for new therapies.
Area of Science:
- Immunology
- Cell Biology
- Microbiology
Background:
- Mitochondria, once bacteria, share sensing pathways with innate immunity.
- Damaged mitochondria trigger immune responses like nucleic acid sensing and inflammasome activation.
- Cross-talk between mitochondrial and bacterial innate immune responses is not fully understood.
Purpose of the Study:
- To synthesize literature on mitochondrion-innate immunity interplay during Mycobacterium tuberculosis infection.
- To understand molecular mechanisms of mitochondrion-dependent immune polarization.
- To inform tuberculosis patient outcome prediction and host-directed therapeutics.
Main Methods:
- Literature review and synthesis of current research.
- Analysis of studies on mitochondrial disruption by Mtb in macrophages.
- Examination of genetic mutations affecting mitochondrial function and immune response.
Main Results:
- Mtb infection disrupts mitochondrial networks, causing metabolic changes and immune activation.
- Mitochondrial gene mutations can worsen tuberculosis by hyperactivating or mistiming immune responses.
- Distinct mitochondrial defects lead to varied Mtb infection outcomes.
Conclusions:
- Mitochondrial integrity is crucial in modulating innate immunity against Mtb.
- Understanding mitochondrion-immune interactions can predict tuberculosis progression.
- Targeting mitochondrial pathways offers potential for novel host-directed tuberculosis therapies.
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