Development of an Oxygen-Insensitive Nrf2 Reporter Reveals Redox Regulation under Physiological Normoxia

被引:0
|
作者
Miri, Seyed Mohammad [1 ,2 ]
Ata, Busra N. [2 ]
Cimen, Seyma [1 ,3 ]
Barakat, Sarah [1 ]
Ghaffari Zaki, Asal [1 ]
Armouch, Joudi [1 ]
Vatandaslar, Emre [1 ]
Vilain, Sven [1 ]
Ozturk, Gurkan [1 ,4 ]
Eroglu, Emrah [1 ,2 ]
机构
[1] Istanbul Medipol Univ, Res Inst Hlth Sci & Technol SABITA, Regenerat & Restorat Med Res Ctr REMER, TR-34810 Istanbul, Turkiye
[2] Sabanci Univ, Fac Engn & Nat Sci, Mol Biol Genet & Bioengn Program, TR-34956 Istanbul, Turkiye
[3] Istanbul Medipol Univ, Inst Hlth Sci, Dept Nutr & Dietet, TR-34810 Istanbul, Turkiye
[4] Bolu Abant Izzet Baysal Univ, Sch Med, Dept Physiol, TR-14030 Bolu, Turkiye
来源
ACS SENSORS | 2025年
关键词
Nrf2; biosensor; transcriptionfactor; miniGFP; hydrogen peroxide; pericellularoxygen level; normoxia; HYDROGEN-PEROXIDE; OXIDATIVE STRESS; ANTIOXIDANT RESPONSE; ACTIVATION; PROTEIN; H2O2; MECHANISM; CELLS;
D O I
10.1021/acssensors.4c03167
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Reactive oxygen species, particularly hydrogen peroxide (H2O2), play crucial roles in cellular signaling, with Nrf2 serving as a key transcription factor in maintaining redox homeostasis. However, the precise influence of H2O2 on Nrf2 activity under physiological normoxia remains unclear due to the limitations of oxygen-sensitive imaging methods. To address this, we developed and validated an oxygen-insensitive Nrf2 reporter named pericellular oxygen-insensitive Nrf2 transcriptional performance reporter (POINTER). We employed this reporter in human cerebral microvascular endothelial cells (hCMEC/D3). Using POINTER, we investigated how varying intracellular H2O2 concentrations affect Nrf2 regulation under normoxia (5 kPa O2) compared to hyperoxia (ambient air, 21 kPa O2). We manipulated intracellular H2O2 levels through exogenous application, chemogenetic production using a modified amino acid oxidase, and pharmacological induction with Auranofin. Our findings reveal that Nrf2 transcriptional activity is significantly lower under normoxia than under hyperoxia, supporting previous literature and expectations. Using POINTER, we found that both antioxidant pathway inhibition and sustained H2O2 elevation are essential for modulating Nrf2 activity. These findings provide new insights into the regulation of Nrf2 by H2O2.
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页数:10
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