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An emerging role for calcineurin Aalpha in the development and function of the kidney
1Department of Medicine/Division of Nephrology, Emory University School of Medicine, and Atlanta Veterans Administration Medical Center, Atlanta, Georgia 30322, USA. jgooch@emory.edu
Abstract:
For many years, calcineurin has been a familiar molecule as a target of the immunosuppressive agents cyclosporin A and FK-506. Calcineurin inhibition interferes with T cell signaling by preventing activation of the transcription factor NFATc. However, calcineurin is expressed in most tissues in the body, and calcineurin inhibition undoubtedly alters many other cellular processes. As a result, serious side effects of calcineurin inhibitors regularly occur, including hypertension and renal dysfunction. Because nephrotoxicity is often a barrier to continued clinical use of calcineurin inhibitors, understanding the role of calcineurin in the kidney is of particular importance. Recent work has demonstrated that the two main isoforms of the catalytic subunit of calcineurin, Aalpha and Abeta, may have distinct functions, particularly in the kidney. Calcineurin isoforms may be differentially expressed, and/or the activity of each may be differentially regulated, leading to tissue-specific functions. Differences between the action of the two isoforms are most evident in knockout mice lacking each isoform. Mice lacking the beta-isoform are characterized principally by altered development and function of immune cells. alpha-Knockout mice, in contrast, can still be immune suppressed by cyclosporin A but display pervasive developmental defects, including renal dysfunction. Therefore, it is intriguing to consider that while the beta-isoform may be responsible for calcineurin action in T cells, the alpha-isoform may be the predominant catalytic isoform in the kidney. This conclusion, if correct, may have substantial clinical implication for novel strategies to selectively target calcineurin action in T cells without associated nephrotoxicity.
Insights
Calcineurin alpha-isoform inhibition causes kidney dysfunction, unlike the beta-isoform which affects immune cells. This suggests targeting the alpha-isoform could prevent calcineurin inhibitor nephrotoxicity.
Area of Science:
- Molecular Biology
- Immunology
- Nephrology
Background:
- Calcineurin is a key target for immunosuppressive drugs like cyclosporin A and FK-506.
- Inhibition of calcineurin disrupts T cell signaling and NFATc activation.
- Calcineurin's widespread expression leads to significant side effects, including hypertension and renal dysfunction.
Purpose of the Study:
- To investigate the distinct roles of calcineurin alpha (Aalpha) and beta (Abeta) isoforms in cellular processes, particularly in the kidney.
- To understand the basis of nephrotoxicity associated with calcineurin inhibitors.
- To explore potential therapeutic strategies for selective calcineurin inhibition.
Main Methods:
- Comparative analysis of Aalpha and Abeta knockout mice.
- Assessment of immune cell development and function in knockout models.
- Evaluation of renal function and developmental defects in knockout models.
Main Results:
- Mice lacking the Abeta-isoform showed altered immune cell development and function.
- Mice lacking the Aalpha-isoform exhibited severe developmental defects, including renal dysfunction, despite retained immunosuppression.
- Aalpha-isoform appears to be the predominant catalytic isoform in the kidney.
Conclusions:
- The Aalpha and Abeta calcineurin isoforms possess distinct functions, with Aalpha playing a critical role in kidney physiology.
- Targeting the Aalpha isoform may offer a strategy to mitigate calcineurin inhibitor-induced nephrotoxicity.
- Selective inhibition of calcineurin isoforms could lead to improved therapeutic outcomes in immunosuppression.
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