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MAD2B promotes podocyte injury through regulating Numb-dependent Notch 1 pathway in diabetic nephropathy
Meng-Ran Li1, Chun-Tao Lei1, Hui Tang1
1Department of Nephrology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, China.
Abstract:
Rationale: Recent studies have demonstrated that the loss of podocyte is a critical event in diabetic nephropathy (DN). Previously, our group have found that the mitotic arrest deficient protein MAD2B was involved in high glucose (HG)-induced podocyte injury by regulating APC/C activity. However, the exact mechanism of MAD2B implicated in podocyte injury is still lacking. Methods: The experiments were conducted by using kidney tissues from streptozotocin (STZ) induced diabetic mice with or without podocyte-specific deletion of MAD2B and the cultured podocytes exposed to different treatments. Glomerular pathological injury was evaluated by periodic acid-Schiff staining and transmission electron microscopy. The endogenous interaction between MAD2B and Numb was discovered by yeast two-hybrid analysis and co-immunoprecipitation assay. The expressions of MAD2B, Numb and related pathway were detected by western blot, immunochemistry and immunofluorescence. Results: The present study revealed that MAD2B was upregulated in diabetic glomeruli and cultured podocytes under hyperglycemic conditions. Podocyte-specific deletion of MAD2B alleviated podocyte injury and renal function deterioration in mice of diabetic nephropathy. Afterwards, MAD2B was found to interact with Numb, which was downregulated in diabetic glomeruli and HG-stimulated cultured podocytes. Interestingly, MAD2B genetic deletion could partly reverse the decline of Numb in podocytes exposed to HG and in diabetic mice, and the expressions of Numb downstream molecules such as NICD and Hes-1 were decreased accordingly. In addition, overexpression of Numb ameliorated HG-induced podocyte injury. Conclusions: The present findings suggest that upregulated MAD2B expression contributes to Numb depletion and activation of Notch 1 signaling pathway, which ultimately leads to podocyte injury during DN progression.
Insights
Mitotic arrest deficient protein MAD2B upregulation causes podocyte injury in diabetic nephropathy by depleting Numb and activating Notch 1 signaling.
Area of Science:
- Nephrology
- Cell Biology
- Molecular Medicine
Background:
- Podocyte loss is critical in diabetic nephropathy (DN).
- Mitotic arrest deficient protein MAD2B (MAD2B) is implicated in high glucose (HG)-induced podocyte injury.
- The precise mechanism of MAD2B in podocyte injury requires elucidation.
Purpose of the Study:
- To investigate the mechanism of MAD2B in diabetic nephropathy-induced podocyte injury.
- To explore the interaction between MAD2B and Numb in podocyte injury.
- To determine the role of the Notch 1 signaling pathway in this process.
Main Methods:
- Utilized streptozotocin (STZ)-induced diabetic mice with podocyte-specific MAD2B deletion.
- Examined cultured podocytes under hyperglycemic conditions.
- Assessed glomerular injury via PAS staining and electron microscopy.
- Investigated MAD2B-Numb interaction using yeast two-hybrid and co-immunoprecipitation.
- Detected protein and pathway expression via western blot, immunohistochemistry, and immunofluorescence.
Main Results:
- MAD2B was upregulated in diabetic glomeruli and HG-treated podocytes.
- Podocyte-specific MAD2B deletion attenuated podocyte injury and renal dysfunction in DN mice.
- MAD2B interacted with Numb, which was downregulated in diabetic conditions.
- MAD2B deletion partially restored Numb levels and decreased NICD/Hes-1 expression.
- Numb overexpression ameliorated HG-induced podocyte injury.
Conclusions:
- Upregulated MAD2B contributes to Numb depletion in diabetic nephropathy.
- MAD2B-induced Numb depletion activates the Notch 1 signaling pathway.
- This pathway activation ultimately leads to podocyte injury during DN progression.
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