足细胞
蛋白尿
细胞生物学
线粒体
生物
肾
内分泌学
蛋白尿
作者
Koki Mise,Jianyin Long,Daniel L. Galvan,Zengchun Ye,Guizhen Fan,Rajesh Sharma,Irina I. Serysheva,Travis I. Moore,Collene Jeter,Malgorzata Anna Zal,Motoo Araki,Jun Wada,Paul T. Schumacker,Benny Hung‐Junn Chang,Farhad R. Danesh
标识
DOI:10.1038/s41467-024-46366-w
摘要
Abstract The mitochondrial electron transport chain (ETC) is a highly adaptive process to meet metabolic demands of the cell, and its dysregulation has been associated with diverse clinical pathologies. However, the role and nature of impaired ETC in kidney diseases remains poorly understood. Here, we generate diabetic mice with podocyte-specific overexpression of Ndufs4, an accessory subunit of mitochondrial complex I, as a model investigate the role of ETC integrity in diabetic kidney disease (DKD). We find that conditional male mice with genetic overexpression of Ndufs4 exhibit significant improvements in cristae morphology, mitochondrial dynamics, and albuminuria. By coupling proximity labeling with super-resolution imaging, we also identify the role of cristae shaping protein STOML2 in linking NDUFS4 with improved cristae morphology. Together, we provide the evidence on the central role of NDUFS4 as a regulator of cristae remodeling and mitochondrial function in kidney podocytes. We propose that targeting NDUFS4 represents a promising approach to slow the progression of DKD.
科研通智能强力驱动
Strongly Powered by AbleSci AI