Division of Chronic Kidney Disease Pathophysiology and.
Division of Nephrology and Endocrinology, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.
JCI Insight. 2024 Aug 8;9(18):e182534. doi: 10.1172/jci.insight.182534.
Organelle stress exacerbates podocyte injury, contributing to perturbed lipid metabolism. Simultaneous organelle stresses can occur in the kidney in the diseased state; therefore, a thorough analysis of organelle communication is crucial for understanding the progression of kidney diseases. Although organelles closely interact with one another at membrane contact sites, limited studies have explored their involvement in kidney homeostasis. The endoplasmic reticulum (ER) protein, PDZ domain-containing 8 (PDZD8), is implicated in multiple-organelle-tethering processes and cellular lipid homeostasis. In this study, we aimed to elucidate the role of organelle communication in podocyte injury using podocyte-specific Pdzd8-knockout mice. Our findings demonstrated that Pdzd8 deletion exacerbated podocyte injury in an accelerated obesity-related kidney disease model. Proteomic analysis of isolated glomeruli revealed that Pdzd8 deletion exacerbated mitochondrial and endosomal dysfunction during podocyte lipotoxicity. Additionally, electron microscopy revealed the accumulation of abnormal, fatty endosomes in Pdzd8-deficient podocytes during obesity-related kidney diseases. Lipidomic analysis indicated that glucosylceramide accumulated in Pdzd8-deficient podocytes, owing to accelerated production and decelerated degradation. Thus, the organelle-tethering factor, PDZD8, plays a crucial role in maintaining mitochondrial and endosomal homeostasis during podocyte lipotoxicity. Collectively, our findings highlight the importance of organelle communication at the 3-way junction among the ER, mitochondria, and endosomes in preserving podocyte homeostasis.
细胞器应激加剧足细胞损伤,导致脂质代谢紊乱。在疾病状态下,肾脏中可能同时存在多种细胞器应激;因此,深入分析细胞器间的通讯对于理解肾脏疾病的进展至关重要。尽管细胞器在膜接触位点上彼此密切相互作用,但有限的研究探索了它们在肾脏稳态中的参与。内质网(ER)蛋白 PDZ 结构域包含蛋白 8(PDZD8)参与多种细胞器连接过程和细胞脂质稳态。在本研究中,我们旨在使用足细胞特异性 Pdzd8 敲除小鼠阐明细胞器通讯在足细胞损伤中的作用。我们的研究结果表明,Pdzd8 缺失加剧了肥胖相关肾脏疾病模型中的足细胞损伤。分离的肾小球的蛋白质组学分析表明,Pdzd8 缺失加剧了足细胞脂肪毒性期间的线粒体和内体功能障碍。此外,电子显微镜显示,在肥胖相关肾脏疾病中,PDZD8 缺失的足细胞中积累了异常的、富含脂肪的内体。脂质组学分析表明,由于加速产生和减速降解,葡糖脑苷脂在 Pdzd8 缺失的足细胞中积累。因此,细胞器连接因子 PDZD8 在维持足细胞脂肪毒性期间的线粒体和内体稳态中起着至关重要的作用。总之,我们的研究结果强调了 ER、线粒体和内体之间的 3 -way 交界处的细胞器通讯在维持足细胞稳态中的重要性。