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Sestrin2 as a Novel Biomarker and Therapeutic Target for Various Diseases
Mazhar Pasha1, Ali H Eid2,3, Assaad A Eid4
1College of Pharmacy, Qatar University, P.O. Box 2713, Doha, Qatar.
Abstract:
Sestrin2 (SESN2), a highly conserved stress-inducible metabolic protein, is known to repress reactive oxygen species (ROS) and provide cytoprotection against various noxious stimuli including genotoxic and oxidative stress, endoplasmic reticulum (ER) stress, and hypoxia. Studies demonstrate that the upregulation of Sestrin2 under conditions of oxidative stress augments autophagy-directed degradation of Kelch-like ECH-associated protein 1 (Keap1), which targets and breaks down nuclear erythroid-related factor 2 (Nrf2), a key regulator of various antioxidant genes. Moreover, ER stress and hypoxia are shown to induce Sestrins, which ultimately reduce cellular ROS levels. Sestrin2 also plays a pivotal role in metabolic regulation through activation of the key energy sensor AMP-dependent protein kinase (AMPK) and inhibition of mammalian target of rapamycin complex 1 (mTORC1). Other downstream effects of Sestrins include autophagy activation, antiapoptotic effects in normal cells, and proapoptotic effects in cancer cells. As perturbations in the aforementioned pathways are well documented in multiple diseases, Sestrin2 might serve as a potential therapeutic target for various diseases. Thus, the aim of this review is to discuss the upstream regulators and the downstream effectors of Sestrins and to highlight the significance of Sestrin2 as a biomarker and a therapeutic target in diseases such as metabolic disorders, cardiovascular and neurodegenerative diseases, and cancer.
Insights
Sestrin2 (SESN2) is a stress-inducible protein that protects cells from damage and regulates metabolism. Its role in various diseases suggests it could be a therapeutic target.
Area of Science:
- Cellular stress response
- Metabolic regulation
- Molecular biology
Background:
- Sestrin2 (SESN2) is a stress-inducible protein conferring cytoprotection against oxidative stress, ER stress, and hypoxia.
- It modulates the Keap1-Nrf2 pathway, enhancing antioxidant gene expression.
- Sestrin2 also regulates cellular metabolism via AMPK and mTORC1 signaling.
Purpose of the Study:
- To review the upstream regulators and downstream effectors of Sestrins.
- To highlight Sestrin2's significance as a therapeutic target and biomarker.
Main Methods:
- Literature review of Sestrin2 function and regulation.
- Analysis of Sestrin2's role in various disease pathways.
Main Results:
- Sestrin2 up-regulation under stress conditions enhances antioxidant defense and metabolic control.
- Sestrin2 exhibits context-dependent effects on apoptosis, promoting it in cancer cells.
- Dysregulation of Sestrin2-related pathways is implicated in metabolic, cardiovascular, and neurodegenerative diseases.
Conclusions:
- Sestrin2 is a key player in cellular stress response and metabolic homeostasis.
- Sestrin2 represents a promising therapeutic target and biomarker for diverse diseases, including cancer and metabolic disorders.
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