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The Roles of Mitochondrial Damage-Associated Molecular Patterns in Diseases
Kiichi Nakahira1,2, Shu Hisata1,2, Augustine M K Choi1,2
11 Joan and Sanford I. Weill Department of Medicine, Weill Cornell Medical College and New York-Presbyterian Hospital , New York, New York.
Significance:
Mitochondria, vital cellular power plants to generate energy, are involved in immune responses. Mitochondrial damage-associated molecular patterns (DAMPs) are molecules that are released from mitochondria to extracellular space during cell death and include not only proteins but also DNA or lipids. Mitochondrial DAMPs induce inflammatory responses and are critically involved in the pathogenesis of various diseases.
Recent Advances:
Recent studies elucidate the molecular mechanisms by which mitochondrial DAMPs are released and initiate immune responses by use of genetically modulated cells or animals. Importantly, the levels of mitochondrial DAMPs in patients are often associated with severity and prognosis of human diseases, such as infection, asthma, ischemic heart disease, and cancer.
Critical Issues:
Although mitochondrial DAMPs can represent proinflammatory molecules in various experimental models, their roles in human diseases may be multifunctional and complex. It remains unclear where and how mitochondrial DAMPs are liberated into extracellular spaces and exert their biological functions particularly in vivo. In addition, while mitochondria can secrete several types of DAMPs during cell death, the interaction of each mitochondrial DAMP (e.g., synergistic effects) remains unclear.
Future Directions:
Regulation of mitochondrial DAMP-mediated immune responses may be important to alter the progression of human diseases. In addition, measuring mitochondrial DAMPs in patients may be clinically useful as biomarkers to predict prognosis or response to therapies. Further studies of the mechanisms by which mitochondrial DAMPs impact the initiation and progression of diseases may lead to the development of therapeutics specifically targeting this pathway. Antioxid.
Insights
Mitochondrial damage-associated molecular patterns (DAMPs) released during cell death trigger inflammation and disease. Understanding their release and function is key for developing new diagnostics and therapeutics for various human conditions.
Area of Science:
- Cellular Biology
- Immunology
- Molecular Medicine
Background:
- Mitochondria are crucial for cellular energy production and play a role in immune responses.
- Mitochondrial damage-associated molecular patterns (DAMPs) are released from damaged mitochondria during cell death.
- These DAMPs, including proteins, DNA, and lipids, can initiate inflammatory responses.
Purpose of the Study:
- To elucidate the molecular mechanisms of mitochondrial DAMP release and immune response initiation.
- To investigate the association between mitochondrial DAMP levels and disease severity/prognosis in patients.
- To explore the complex and potentially multifunctional roles of mitochondrial DAMPs in human diseases.
Main Methods:
- Utilized genetically modulated cells and animals to study DAMP release mechanisms.
- Analyzed patient data to correlate mitochondrial DAMP levels with disease outcomes.
- Investigated the in vivo mechanisms of DAMP liberation and biological functions.
Main Results:
- Mitochondrial DAMPs are implicated in the pathogenesis of diverse diseases like infections, asthma, ischemic heart disease, and cancer.
- Elevated mitochondrial DAMP levels in patients often correlate with disease severity and prognosis.
- The precise in vivo mechanisms of DAMP release and their interactions remain incompletely understood.
Conclusions:
- Mitochondrial DAMPs are critical mediators of inflammation and disease pathogenesis.
- Targeting mitochondrial DAMP-mediated immune responses could offer therapeutic strategies.
- Measuring mitochondrial DAMPs may serve as valuable biomarkers for disease prognosis and treatment response.
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