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Asparagine endopeptidase protects podocytes in adriamycin-induced nephropathy by regulating actin dynamics through
Yang Qiu1, Chuntao Lei1, Jieyu Zeng1
1Department of Nephrology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, Hubei, China.
Abstract:
Focal segmental glomerulosclerosis (FSGS) is the most common glomerular disorder causing end-stage renal diseases worldwide. Central to the pathogenesis of FSGS is podocyte dysfunction, which is induced by diverse insults. However, the mechanism governing podocyte injury and repair remains largely unexplored. Asparagine endopeptidase (AEP), a lysosomal protease, regulates substrates by residue-specific cleavage or degradation. We identified the increased AEP expression in the primary proteinuria model which was induced by adriamycin (ADR) to mimic human FSGS. In vivo, global AEP knockout mice manifested increased injury-susceptibility of podocytes in ADR-induced nephropathy (ADRN). Podocyte-specific AEP knockout mice exhibited much more severe glomerular lesions and podocyte injury after ADR injection. In contrast, podocyte-specific augmentation of AEP in mice protected against ADRN. In vitro, knockdown and overexpression of AEP in human podocytes revealed the cytoprotection of AEP as a cytoskeleton regulator. Furthermore, transgelin, an actin-binding protein regulating actin dynamics, was cleaved by AEP, and, as a result, removed its actin-binding regulatory domain. The truncated transgelin regulated podocyte actin dynamics and repressed podocyte hypermotility, compared to the native full-length transgelin. Together, our data reveal a link between lysosomal protease AEP and podocyte cytoskeletal homeostasis, which suggests a potential therapeutic role for AEP in proteinuria disease.
Insights
Asparagine endopeptidase (AEP) protects kidney podocytes from injury by regulating their cytoskeleton. This lysosomal protease offers a potential therapeutic target for proteinuria diseases like FSGS.
Area of Science:
- Nephrology
- Molecular Biology
- Cell Biology
Background:
- Focal segmental glomerulosclerosis (FSGS) is a leading cause of end-stage renal disease.
- Podocyte dysfunction is central to FSGS pathogenesis, but mechanisms of injury and repair are poorly understood.
- Asparagine endopeptidase (AEP), a lysosomal protease, plays roles in cellular regulation.
Purpose of the Study:
- To investigate the role of AEP in podocyte injury and repair in the context of FSGS.
- To elucidate the mechanism by which AEP influences podocyte function and cytoskeletal homeostasis.
Main Methods:
- Adriamycin (ADR)-induced nephropathy model in mice to mimic human FSGS.
- Generation of global and podocyte-specific AEP knockout mice.
- Overexpression and knockdown of AEP in human podocytes.
- Analysis of podocyte injury, glomerular lesions, and transgelin cleavage.
Main Results:
- AEP expression was increased in an ADR-induced proteinuria model.
- Global AEP knockout mice showed increased podocyte injury susceptibility.
- Podocyte-specific AEP knockout exacerbated ADR-induced nephropathy, while augmentation protected against it.
- AEP cleaves transgelin, a protein regulating actin dynamics, thereby influencing podocyte cytoskeleton and motility.
Conclusions:
- AEP plays a protective role in podocyte injury during ADR-induced nephropathy.
- AEP regulates podocyte cytoskeletal homeostasis through interaction with transgelin.
- AEP represents a potential therapeutic target for managing proteinuria diseases.
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