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MDM2 controls NRF2 antioxidant activity in prevention of diabetic kidney disease
Weiying Guo1, Dan Tian2, Ye Jia3
1Department of Endocrinology and Metabolism, The First Hospital of Jilin University, 71 Xinmin St., Changchun, Jilin 130021, China.
Abstract:
Oxidative stress and P53 contribute to the pathogenesis of diabetic kidney disease (DKD). Nuclear factor erythroid 2-related factor 2 (NRF2) is a master regulator of cellular antioxidant defense system, is negatively regulated by P53 and prevents DKD. Recent findings revealed an important role of mouse double minute 2 (MDM2) in protection against DKD. However, the mechanism remained unclear. We hypothesized that MDM2 enhances NRF2 antioxidant signaling in DKD given that MDM2 is a key negative regulator of P53. The MDM2 inhibitor nutlin3a elevated renal P53, inhibited NRF2 signaling and induced oxidative stress, inflammation, fibrosis, DKD-like renal pathology and albuminuria in the wild-type (WT) non-diabetic mice. These effects exhibited more prominently in nutlin3a-treated WT diabetic mice. Interestingly, nutlin3a failed to induce greater renal injuries in the Nrf2 knockout (KO) mice under both the diabetic and non-diabetic conditions, indicating that NRF2 predominantly mediates MDM2's action. On the contrary, P53 inhibition by pifithrin-α activated renal NRF2 signaling and the expression of Mdm2, and attenuated DKD in the WT diabetic mice, but not in the Nrf2 KO diabetic mice. In high glucose-treated mouse mesangial cells, P53 gene silencing completely abolished nutlin3a's inhibitory effect on NRF2 signaling. The present study demonstrates for the first time that MDM2 controls renal NRF2 antioxidant activity in DKD via inhibition of P53, providing MDM2 activation and P53 inhibition as novel strategies in the management of DKD.
Insights
Mouse double minute 2 (MDM2) protects against diabetic kidney disease (DKD) by activating Nuclear factor erythroid 2-related factor 2 (NRF2) antioxidant signaling through P53 inhibition. This reveals MDM2 activation and P53 inhibition as potential DKD treatments.
Area of Science:
- Nephrology
- Molecular Biology
- Cellular Biology
Background:
- Diabetic kidney disease (DKD) pathogenesis involves oxidative stress and P53.
- Nuclear factor erythroid 2-related factor 2 (NRF2) is a key antioxidant regulator, suppressed by P53.
- Mouse double minute 2 (MDM2) has shown protective roles in DKD, but its mechanism is unclear.
Purpose of the Study:
- To investigate the mechanism by which MDM2 influences NRF2 antioxidant signaling in DKD.
- To test the hypothesis that MDM2 enhances NRF2 signaling by inhibiting P53.
Main Methods:
- Utilized MDM2 inhibitor nutlin3a and P53 inhibitor pifithrin-α in wild-type (WT) and Nrf2 knockout (KO) diabetic and non-diabetic mice.
- Assessed renal pathology, oxidative stress, inflammation, fibrosis, and albuminuria.
- Employed high glucose-treated mouse mesangial cells with P53 gene silencing.
Main Results:
- Nutlin3a elevated P53, inhibited NRF2, and worsened DKD in WT mice, with effects blunted in Nrf2 KO mice.
- Pifithrin-α activated NRF2 and Mdm2, attenuated DKD in WT diabetic mice, but not in Nrf2 KO mice.
- P53 inhibition was crucial for MDM2's effect on NRF2 signaling in high glucose-treated mesangial cells.
Conclusions:
- MDM2 controls renal NRF2 antioxidant activity in DKD by inhibiting P53.
- MDM2 activation and P53 inhibition represent novel therapeutic strategies for managing DKD.
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