Yuan Qian, Tang Ben, Xie Yaru, Xie Yajuan, Zhu Yuting, Su Hua, Liu Youhua, Zhang Chun
Department of Nephrology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
State Key Laboratory of Organ Failure Research, National Clinical Research Center of Kidney Disease, Guangdong Provincial Institute of Nephrology, and Division of Nephrology, Nanfang Hospital, Southern Medical University, Guangzhou, China.
Cell Death Differ. 2025 Aug;32(8):1536-1554. doi: 10.1038/s41418-025-01477-9. Epub 2025 Mar 10.
Impaired glucose uptake regulated by suppressed insulin receptor signaling is a key driving force of podocytopathies. The identification of potential therapeutic targets that mediate podocyte insulin receptor signaling holds significant clinical importance. Here, we observed a substantial reduction in PR domain-containing 16 (PRDM16) expression within damaged podocytes in both humans and mice. Podocyte-specific Prdm16 deletion aggravated podocyte injury, albuminuria, and glomerulosclerosis in diabetic nephropathy (DN) mice. Conversely, exogenous PRDM16 delivered by lentivirus mitigated these pathological changes in DN mice and adriamycin (ADR) nephropathy mice. Furthermore, we demonstrated that loss of PRDM16 blocked glucose uptake of podocytes by inhibiting insulin receptor signaling. Mechanistically, PRDM16 deficiency downregulated the transcription of NEDD4L, subsequently enhancing the stability of IKKβ protein. The accumulation of IKKβ caused by the loss of PRDM16 led to the phosphorylation of serine residues on insulin receptor substrate-1 (IRS-1), thereby promoting IRS-1 degradation. Exogenous NEDD4L mitigated podocyte injury induced by PRDM16 knockdown in vitro and attenuated ADR nephropathy in vivo. Our study clarified the role and mechanism of PRDM16 in insulin receptor signaling and podocyte injury, providing a potential therapeutic target for podocytopathies.
胰岛素受体信号传导受抑制导致的葡萄糖摄取受损是足细胞病的关键驱动力。确定介导足细胞胰岛素受体信号传导的潜在治疗靶点具有重要的临床意义。在此,我们观察到人类和小鼠受损足细胞中含PR结构域16(PRDM16)的表达大幅降低。足细胞特异性Prdm16缺失加重了糖尿病肾病(DN)小鼠的足细胞损伤、蛋白尿和肾小球硬化。相反,慢病毒递送的外源性PRDM16减轻了DN小鼠和阿霉素(ADR)肾病小鼠的这些病理变化。此外,我们证明PRDM16的缺失通过抑制胰岛素受体信号传导阻断了足细胞的葡萄糖摄取。机制上,PRDM16缺乏下调了NEDD4L的转录,随后增强了IKKβ蛋白的稳定性。PRDM16缺失导致的IKKβ积累导致胰岛素受体底物-1(IRS-1)丝氨酸残基磷酸化,从而促进IRS-1降解。外源性NEDD4L减轻了体外PRDM16敲低诱导的足细胞损伤,并减轻了体内ADR肾病。我们的研究阐明了PRDM16在胰岛素受体信号传导和足细胞损伤中的作用及机制,为足细胞病提供了一个潜在的治疗靶点。