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Activation of the Nrf2-ARE Pathway Ameliorates Hyperglycemia-Mediated Mitochondrial Dysfunction in Podocytes Partly
Qunzi Zhang1, Qiongxia Deng2, Jun Zhang2
1Division of Nephrology, Department of Medicine, the 5th Hospital of Sun Yat-sen University, Zhuhai, China.
Background/Aims:
Previously we have shown that activation of the nuclear factor (erythroid-derived 2)-like 2 (Nrf2)-antioxidant response element (ARE) attenuated hyperglycemia-induced damage in podocytes, but the molecular mechanism remains unknown.
Methods:
Tert-butylhydroquinone (t-BHQ) and small interfering RNAs (siRNAs) were used to regulate Nrf2 expression, while nicotinamide and siRNAs were used to regulate sirtuin 1 (Sirt1) activity and expression, respectively. Mitochondrial superoxide, membrane potential and ATP levels were measured to assess changes in mitochondrial function. Nephrin and synaptopodin expression were measured by western blot analysis. Human podocytes and db/db diabetic mice were used in this study.
Results:
t-BHQ pretreatment of human podocytes exposed to high glucose (HG) alleviated mitochondrial dysfunction, enhanced the expression of Sirt1, nephrin and synaptopodin and lowered BSA permeability compared with podocytes exposed to HG without t-BHQ pretreatment (p< 0.05). Human podocytes exposed to HG had more severe mitochondrial dysfunction, lower expression of Sirt1, synaptopodin and nephrin and higher BSA permeability than podocytes exposed to HG when Nrf2 expression was downregulated by siRNAs (p< 0.05). The protection provided by activation of the Nrf-ARE pathway in podocytes exposed to HG was partially diminished when Sirt1 expression or activity was decreased by siRNAs or inhibitor compared with podocytes exposed to HG and pretreated with t-BHQ (p< 0.05). When nicotinamide and t-BHQ were both administered to db/db mice, we observed higher levels of urinary albumin/creatinine, lower nephrin and synaptopodin expression, more severe mesangial matrix deposition, collagen deposition on pathological slides and mitochondrial structural damage in podocytes compared to db/db mice treated only with t-BHQ.
Conclusions:
Our findings suggest that crosstalk between Sirt1 and the Nrf2-ARE anti-oxidative pathway forms a positive feedback loop and that protection provided by t-BHQ activation of the Nrf2-ARE pathway in db/db mice is partly dependent on Sirt1.
Insights
Activation of the nuclear factor (erythroid-derived 2)-like 2 (Nrf2)-antioxidant response element (ARE) pathway protects against diabetic kidney damage. This protection is partly mediated by Sirtuin 1 (Sirt1) through a positive feedback loop.
Area of Science:
- Nephrology
- Molecular Biology
- Diabetic Complications
Background:
- Nuclear factor (erythroid-derived 2)-like 2 (Nrf2)-antioxidant response element (ARE) activation previously showed protective effects against hyperglycemia-induced podocyte damage.
- The precise molecular mechanisms underlying this protection remain largely unknown.
Purpose of the Study:
- To elucidate the molecular mechanism by which Nrf2-ARE activation protects podocytes from hyperglycemia.
- To investigate the role of Sirtuin 1 (Sirt1) in the protective effects of Nrf2-ARE activation.
Main Methods:
- Utilized tert-butylhydroquinone (t-BHQ) and siRNAs to modulate Nrf2 expression.
- Employed nicotinamide and siRNAs to regulate Sirt1 activity and expression.
- Assessed mitochondrial function (superoxide, membrane potential, ATP levels) and podocyte markers (nephrin, synaptopodin) in human podocytes and db/db mice.
- Measured albumin-to-creatinine ratio and performed histological analysis in diabetic mouse models.
Main Results:
- t-BHQ treatment alleviated mitochondrial dysfunction, enhanced Sirt1, nephrin, and synaptopodin expression, and reduced albuminuria in HG-exposed podocytes and db/db mice.
- Downregulation of Nrf2 exacerbated mitochondrial dysfunction and reduced protective markers.
- Inhibition of Sirt1 partially diminished the protective effects of Nrf2-ARE activation.
- Combined t-BHQ and nicotinamide treatment in db/db mice worsened kidney damage compared to t-BHQ alone.
Conclusions:
- Crosstalk between Sirt1 and the Nrf2-ARE pathway forms a positive feedback loop.
- The protective effects of Nrf2-ARE activation against diabetic nephropathy are, in part, dependent on Sirt1.
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