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Calcineurin A-α suppression drives nuclear factor-κB-mediated NADPH oxidase-2 upregulation
Aswathy M Cheriyan1, Adaku C Ume2, Cynthia E Francis3
1Division of Nephrology, Department of Medicine, and Department of Physiology, Emory University, Atlanta, Georgia.
Abstract:
Calcineurin inhibitors (CNIs) are vital immunosuppressive therapies in the management of inflammatory conditions. A long-term consequence is nephrotoxicity. In the kidneys, the primary, catalytic calcineurin (CnA) isoforms are CnAα and CnAβ. Although the renal phenotype of CnAα-/- mice substantially mirrors CNI-induced nephrotoxicity, the mechanisms downstream of CnAα are poorly understood. Since NADPH oxidase-2 (Nox2)-derived oxidative damage has been implicated in CNI-induced nephrotoxicity, we hypothesized that CnAα inhibition drives Nox2 upregulation and promotes oxidative stress. To test the hypothesis, Nox2 regulation was investigated in kidneys from CnAα-/-, CnAβ-/-, and wild-type (WT) littermate mice. To identify the downstream mediator of CnAα, nuclear factor of activated T cells (NFAT) and NF-κB regulation was examined. To test if Nox2 is transcriptionally regulated via a NF-κB pathway, CnAα-/- and WT renal fibroblasts were treated with the NF-κB inhibitor caffeic acid phenethyl ester. Our findings showed that cyclosporine A treatment induced Nox2 upregulation and oxidative stress. Furthermore, Nox2 upregulation and elevated ROS generation occurred only in CnAα-/- mice. In these mice, NF-κB but not NFAT activity was increased. In CnAα-/- renal fibroblasts, NF-κB inhibition prevented Nox2 upregulation and reactive oxygen species (ROS) generation. In conclusion, these findings indicate that 1) CnAα loss stimulates Nox2 upregulation, 2) NF-κB is a novel CnAα-regulated transcription factor, and 3) NF-κB mediates CnAα-induced Nox2 and ROS regulation. Our results demonstrate that CnAα plays a key role in Nox2 and ROS generation. Furthermore, these novel findings provide evidence of divergent CnA isoform signaling pathways. Finally, this study advocates for CnAα-sparing CNIs, ultimately circumventing the CNI nephrotoxicity.NEW & NOTEWORTHY A long-term consequence of calcineurin inhibitors (CNIs) is oxidative damage and nephrotoxicity. This study indicates that NF-κB is a novel calcineurin-regulated transcription factor that is activated with calcineurin inhibition, thereby driving oxidative damage in CNI nephropathy. These findings provide additional evidence of divergent calcineurin signaling pathways and suggest that selective CNIs could improve the long-term outcomes of patients by mitigating renal side effects.
Insights
Calcineurin inhibitors (CNIs) cause kidney damage by increasing oxidative stress. This study reveals that calcineurin alpha (CnAα) inhibition activates NF-κB, leading to Nox2 upregulation and kidney damage, suggesting CnAα-sparing CNIs could prevent nephrotoxicity.
Area of Science:
- Nephrology
- Immunology
- Molecular Biology
Background:
- Calcineurin inhibitors (CNIs) are essential for managing inflammatory diseases but can cause nephrotoxicity.
- Kidney calcineurin (CnA) isoforms, CnAα and CnAβ, are implicated in CNI-induced kidney damage.
- The precise mechanisms of CnAα-mediated nephrotoxicity remain unclear, despite its known role.
Purpose of the Study:
- To investigate the role of CnAα in CNI-induced nephrotoxicity.
- To determine if CnAα inhibition upregulates NADPH oxidase-2 (Nox2) and promotes oxidative stress.
- To identify downstream signaling pathways, specifically NF-κB and NFAT, regulated by CnAα.
Main Methods:
- Compared kidney phenotypes of CnAα-/-, CnAβ-/-, and wild-type mice.
- Assessed Nox2 regulation, NF-κB, and NFAT activity in mouse kidneys.
- Utilized NF-κB inhibition in CnAα-/- renal fibroblasts to study Nox2 and ROS generation.
Main Results:
- Cyclosporine A treatment increased Nox2 and oxidative stress, particularly in CnAα-/- mice.
- NF-κB activity, but not NFAT, was elevated in CnAα-/- mice.
- Inhibiting NF-κB in CnAα-/- renal fibroblasts reduced Nox2 upregulation and reactive oxygen species (ROS) generation.
Conclusions:
- CnAα loss triggers Nox2 upregulation and ROS generation via NF-κB activation.
- NF-κB is identified as a novel transcription factor regulated by CnAα.
- These findings highlight divergent CnA isoform signaling and support the development of CnAα-sparing CNIs to mitigate nephrotoxicity.
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