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Nrf2 signaling: an adaptive response pathway for protection against environmental toxic insults
William O Osburn1, Thomas W Kensler
1Johns Hopkins University Bloomberg School of Public Health, Department of Environmental Health Sciences, 615 North Wolfe Street, Baltimore, MD 21205, USA.
Abstract:
Human exposures to environmental toxicants have been associated with development of a number of diseases. Animal experiments have identified a number of cytoprotective enzymes under the transcriptional control of NF-E2-related factor 2 (Nrf2) including electrophile conjugation and antioxidative enzymes and enzymes responsible for the production of antioxidants, reducing equivalents and cofactors. The up-regulation of these enzymes represents an adaptive response which occurs in the face of exposure to electrophilic or oxidative compounds thereby leading to enhanced metabolism of these molecules or their reactive metabolites. This adaptive response is regulated by an interaction between Keap1 and Nrf2 in which the exposure to reactive molecules is sensed either directly by Keap1 or indirectly by cellular signaling cascades resulting in activation of Nrf2 transcriptional regulation. The Nrf2-mediated adaptive response has been shown to attenuate toxicity and carcinogenesis during electrophile or oxidative stress as well as inflammation in rodent models. The cytoprotective attributes of the Nrf2 signaling pathway have been targeted for chemoprevention as administration of Nrf2-inducing agents has been shown to result in decreased carcinogenesis in animal models and altered carcinogen metabolism in humans. On the other hand, polymorphisms in the Nrf2 signaling pathway can lead to differential susceptibility to disease while mutations in the Nrf2 signaling pathway have been shown to an effective mechanism for cancer cells to evade chemotherapy. Overall, the Nrf2 cytoprotective adaptive response has evolved to be a powerful protective strategy for organisms against exposure to environmental toxicants and may provide insight into differential disease susceptibilities across populations and responses to therapies designed to alleviate these conditions.
Insights
The Nrf2 pathway protects against environmental toxicants by up-regulating cytoprotective enzymes. This adaptive response influences disease susceptibility and cancer treatment efficacy.
Area of Science:
- Environmental toxicology
- Molecular biology
- Cellular signaling
Background:
- Environmental toxicants are linked to various diseases.
- The Nrf2 pathway controls cytoprotective enzymes involved in detoxification and antioxidant production.
- Nrf2 activation is a key adaptive response to electrophilic and oxidative stress.
Purpose of the Study:
- To explore the role of the Nrf2 signaling pathway in cellular defense against environmental toxicants.
- To investigate the implications of Nrf2 pathway modulation in disease development and cancer therapy.
Main Methods:
- Review of animal experiments and human studies on Nrf2 pathway activation.
- Analysis of the Keap1-Nrf2 interaction in response to reactive molecules.
- Examination of Nrf2 pathway polymorphisms and mutations in disease contexts.
Main Results:
- Nrf2 activation enhances metabolism of toxicants and attenuates toxicity, carcinogenesis, and inflammation in rodent models.
- Nrf2-inducing agents show chemopreventive potential by decreasing carcinogenesis.
- Nrf2 pathway polymorphisms affect disease susceptibility, and mutations can confer chemotherapy resistance.
Conclusions:
- The Nrf2 cytoprotective response is a crucial defense mechanism against environmental toxicants.
- Understanding the Nrf2 pathway offers insights into population-level disease susceptibility and therapeutic responses.
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