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Published on: July 13, 2018
NLRX1 Regulation Following Acute Mitochondrial Injury
Xiaogang Chu1, Songwei Wu2, Raghavan Raju1
1Department of Pharmacology and Toxicology, Medical College of Georgia, Augusta University, Augusta, GA, United States.
Abstract:
Several metabolic, cardiovascular, and neurological disorders are characterized by mitochondrial dysfunction followed by dysregulation of cellular energetics. Mitochondria play an important role in ATP production and cell death regulation. NLRX1, a mitochondria-targeted protein, is known to negatively regulate innate immunity, and cell death responses. However, the role of this protein in cellular homeostasis following mitochondrial injury is not well-understood. To understand the mechanisms underlying the effect of acute injury in regulating NLRX1 signaling pathways, we used an in vitro model of mitochondrial injury wherein, rat pulmonary microvascular endothelial cells were subjected to sodium azide treatment or glucose starvation. Both sodium azide and glucose starvation activated NF-κB and TBK1 associated innate immune response. Moreover, increased TBK1, IKK, IκB, and TRAF6 were recruited to mitochondria and interacted with NLRX1. Depletion of endogenous NLRX1 resulted in exacerbated NF-κB and TBK1 associated innate immune response and apoptosis. Our results suggest that NLRX1 participates in the regulation of innate immune response in mitochondria, and plays an important role in the maintenance of cellular homeostasis following acute mitochondrial injury. We propose that the mitochondrial recruitment of inflammatory mediators and their interaction with NLRX1 are protective responses to maintain cellular homeostasis following injury.
Insights
NLRX1 protein helps maintain cellular balance after mitochondrial injury by regulating innate immunity. Its absence worsens immune responses and cell death, highlighting its protective role.
Area of Science:
- Mitochondrial biology
- Cellular energetics
- Innate immunity
Background:
- Mitochondrial dysfunction is linked to metabolic, cardiovascular, and neurological disorders.
- NLRX1, a mitochondrial protein, modulates innate immunity and cell death.
- The role of NLRX1 in cellular homeostasis post-mitochondrial injury remains unclear.
Purpose of the Study:
- Investigate NLRX1's role in cellular homeostasis following acute mitochondrial injury.
- Elucidate mechanisms of NLRX1 signaling pathway regulation under stress.
Main Methods:
- Utilized an in vitro model of mitochondrial injury using rat pulmonary microvascular endothelial cells.
- Induced injury via sodium azide treatment and glucose starvation.
- Analyzed NF-κB and TBK1 activation, and protein recruitment to mitochondria.
Main Results:
- Sodium azide and glucose starvation activated NF-κB and TBK1-mediated innate immune responses.
- TBK1, IKK, IκB, and TRAF6 were recruited to mitochondria and interacted with NLRX1.
- NLRX1 depletion exacerbated immune responses and apoptosis.
Conclusions:
- NLRX1 regulates mitochondrial innate immune responses.
- NLRX1 is crucial for maintaining cellular homeostasis after acute mitochondrial injury.
- Mitochondrial recruitment of inflammatory mediators and NLRX1 interaction are protective.
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