Section of Nephrology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Department of Nephrology, Rheumatology, Endocrinology & Metabolism, Okayama University Graduate School of Medicine, Dentistry & Pharmaceutical Sciences, Okayama, Japan.
Nat Commun. 2024 Mar 4;15(1):1965. doi: 10.1038/s41467-024-46366-w.
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.
线粒体电子传递链(ETC)是一个高度适应的过程,以满足细胞的代谢需求,其失调与多种临床病理有关。然而,ETC 受损在肾脏疾病中的作用和性质仍知之甚少。在这里,我们生成了足细胞特异性过表达线粒体复合物 I 辅助亚基 Ndufs4 的糖尿病小鼠模型,以研究 ETC 完整性在糖尿病肾病(DKD)中的作用。我们发现,过表达 Ndufs4 的条件性雄性小鼠表现出嵴形态、线粒体动力学和白蛋白尿的显著改善。通过将邻近标记与超分辨率成像相结合,我们还确定了嵴成型蛋白 STOML2 在将 NDUFS4 与改善的嵴形态联系起来的作用。总之,我们提供了证据表明 NDUFS4 作为肾脏足细胞嵴重塑和线粒体功能的调节剂的核心作用。我们提出,靶向 NDUFS4 代表了一种减缓 DKD 进展的有前途的方法。