Renal Division, Department of Medicine, Faculty of Medicine and Medical Center - University of Freiburg, Freiburg, Germany.
CIBSS - Centre for Integrative Biological Signalling Studies, Freiburg, Germany.
Elife. 2022 Jul 25;11:e79037. doi: 10.7554/eLife.79037.
The kidneys generate about 180 l of primary urine per day by filtration of plasma. An essential part of the filtration barrier is the slit diaphragm, a multiprotein complex containing nephrin as major component. Filter dysfunction typically manifests with proteinuria and mutations in endocytosis regulating genes were discovered as causes of proteinuria. However, it is unclear how endocytosis regulates the slit diaphragm and how the filtration barrier is maintained without either protein leakage or filter clogging. Here, we study nephrin dynamics in podocyte-like nephrocytes of and show that selective endocytosis either by dynamin- or flotillin-mediated pathways regulates a stable yet highly dynamic architecture. Short-term manipulation of endocytic functions indicates that dynamin-mediated endocytosis of ectopic nephrin restricts slit diaphragm formation spatially while flotillin-mediated turnover of nephrin within the slit diaphragm is needed to maintain filter permeability by shedding of molecules bound to nephrin in endosomes. Since slit diaphragms cannot be studied in vitro and are poorly accessible in mouse models, this is the first analysis of their dynamics within the slit diaphragm multiprotein complex. Identification of the mechanisms of slit diaphragm maintenance will help to develop novel therapies for proteinuric renal diseases that are frequently limited to symptomatic treatment.
肾脏每天通过过滤血浆生成约 180 升原尿。过滤屏障的一个重要组成部分是裂孔隔膜,这是一种包含主要成分 Nephrin 的多蛋白复合物。滤过功能障碍通常表现为蛋白尿,并且发现内吞作用调节基因的突变是蛋白尿的原因。然而,内吞作用如何调节裂孔隔膜以及在没有蛋白质渗漏或滤器堵塞的情况下如何维持过滤屏障尚不清楚。在这里,我们研究了 和 podocyte-like nephrocytes 中的 Nephrin 动力学,并表明选择性内吞作用(通过 dynamin 或 flotillin 介导的途径)调节稳定但高度动态的结构。内吞作用功能的短期操作表明,dynamin 介导的异位 Nephrin 的内吞作用在空间上限制了裂孔隔膜的形成,而 flotillin 介导的 Nephrin 在裂孔隔膜内的周转对于通过将结合在质膜小泡内的分子脱落来维持滤过通透性是必需的。由于裂孔隔膜不能在体外进行研究,并且在小鼠模型中也难以接近,因此这是首次在裂孔隔膜多蛋白复合物内分析其动力学。鉴定裂孔隔膜维持的机制将有助于开发针对蛋白尿性肾脏疾病的新型治疗方法,这些疾病通常仅限于对症治疗。