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Published on: January 18, 2019
Janus Kinase 2 Regulates Transcription Factor EB Expression and Autophagy Completion in Glomerular Podocytes
Tamadher A Alghamdi1, Syamantak Majumder1, Karina Thieme1
1Keenan Research Centre for Biomedical Science and Li Ka Shing Knowledge Institute of St. Michael's Hospital, Toronto, Ontario, Canada.
Abstract:
The nonreceptor kinase Janus kinase 2 (JAK2) has garnered attention as a promising therapeutic target for the treatment of CKD. However, being ubiquitously expressed in the adult, JAK2 is also likely to be necessary for normal organ function. Here, we investigated the phenotypic effects of JAK2 deficiency. Mice in which JAK2 had been deleted from podocytes exhibited an elevation in urine albumin excretion that was accompanied by increased podocyte autophagosome fractional volume and p62 aggregation, which are indicative of impaired autophagy completion. In cultured podocytes, knockdown of JAK2 similarly impaired autophagy and led to downregulation in the expression of lysosomal genes and decreased activity of the lysosomal enzyme, cathepsin D. Because transcription factor EB (TFEB) has recently emerged as a master regulator of autophagosome-lysosome function, controlling the expression of several of the genes downregulated by JAK2 knockdown, we questioned whether TFEB is regulated by JAK2. In immortalized mouse podocytes, JAK2 knockdown decreased TFEB promoter activity, expression, and nuclear localization. In silico analysis and chromatin immunoprecipitation assays revealed that the downstream mediator of JAK2 signaling STAT1 binds to the TFEB promoter. Finally, overexpression of TFEB in JAK2-deficient podocytes reversed lysosomal dysfunction and restored albumin permselectivity. Collectively, these observations highlight the homeostatic actions of JAK2 in podocytes and the importance of TFEB to autophagosome-lysosome function in these cells. These results also raise the possibility that therapeutically modulating TFEB activity may improve podocyte health in glomerular disease.
Insights
Janus kinase 2 (JAK2) is essential for podocyte autophagy and lysosomal function. JAK2 deficiency impairs autophagy, leading to kidney disease, but TFEB activation can restore podocyte health.
Area of Science:
- Nephrology
- Cell Biology
- Molecular Medicine
Background:
- Janus kinase 2 (JAK2) is a therapeutic target for chronic kidney disease (CKD).
- JAK2 is ubiquitously expressed, raising concerns about its necessity for normal organ function.
- Podocyte-specific JAK2 function in kidney homeostasis remains unclear.
Purpose of the Study:
- To investigate the phenotypic effects of JAK2 deficiency in podocytes.
- To elucidate the role of JAK2 in podocyte autophagy and lysosomal function.
- To determine the relationship between JAK2, transcription factor EB (TFEB), and podocyte health.
Main Methods:
- JAK2 deletion in mouse podocytes and cultured podocytes.
- Assessment of urine albumin excretion, podocyte autophagosome volume, and p62 aggregation.
- Analysis of lysosomal gene expression, cathepsin D activity, and TFEB regulation (promoter activity, expression, nuclear localization).
- Chromatin immunoprecipitation (ChIP) assays to identify STAT1 binding to the TFEB promoter.
Main Results:
- JAK2 deletion in podocytes increased albuminuria and impaired autophagy.
- JAK2 knockdown in podocytes reduced lysosomal gene expression and cathepsin D activity.
- JAK2 deficiency decreased TFEB promoter activity, expression, and nuclear localization.
- STAT1 was identified as a downstream mediator binding to the TFEB promoter.
- TFEB overexpression in JAK2-deficient podocytes reversed lysosomal dysfunction and restored albumin permselectivity.
Conclusions:
- JAK2 plays a crucial homeostatic role in podocyte autophagy and lysosome function.
- TFEB is a key regulator of autophagosome-lysosome function in podocytes and is regulated by JAK2.
- Modulating TFEB activity may offer a therapeutic strategy for glomerular diseases.
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