TRIM29 promotes podocyte pyroptosis in diabetic nephropathy through the NF‐kB/NLRP3 inflammasome pathway

Author:

Xu Xiaohong12,Qin Zihan3,Zhang Ce1,Mi Xia1,Zhang Chi1,Zhou Feihong1,Wang Junsheng1,Zhang Liexiang45,Hua Fei3ORCID

Affiliation:

1. Department of Nephrology Nanjing Drum Tower Hospital Group Suqian Hospital Suqian China

2. Department of Nephrology The Affiliated Suqian Hospital of Xuzhou Medical University Suqian China

3. Department of Endocrinology The Third Affiliated Hospital of Soochow University Changzhou China

4. Department of Neurosurgery The Affiliated Suqian Hospital of Xuzhou Medical University Suqian China

5. Department of Neurosurgery Nanjing Drum Tower Hospital Group Suqian Hospital Suqian China

Abstract

AbstractDiabetic nephropathy (DN) is one of the most common complications of diabetes. Gradual loss of podocytes is a sign of DN and pyroptosis mechanistically correlates with podocyte injury in DN; however, the mechanism(s) involved remain unknown. Here we reveal that TRIM29 is overexpressed in high glucose (HG)‐treated murine podocytes cells and that TRIM29 silencing significantly inhibits podocyte damage due to HG treatment, as evidenced by lower desmin expression and greater nephrin expression. Additionally, flow cytometry analysis showed that TRIM29 silencing significantly inhibited HG treatment‐induced pyroptosis, which was confirmed by immunoblotting for NLRP3, active Caspase‐1, GSDMD‐N, and phosphorylated NF‐κB‐p65. Conversely, overexpression of TRIM29 could trigger pyroptosis that was attenuated by NF‐κB inhibition, indicating that TRIM29 promotes pyroptosis through the NF‐κB pathway. Mechanistic studies revealed that TRIM29 interacts with IκBα to mediate its ubiquitination‐dependent degradation, which in turn leads to NF‐κB activation. Taken together, our data demonstrate that TRIM29 can promote podocyte pyroptosis by activating the NF‐κB/NLRP3 pathway. Thus, TRIM29 represents a potentially novel therapeutic target that may also be clinically relevant in the management of DN.

Publisher

Wiley

Subject

Cell Biology,General Medicine

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