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人类足细胞裂孔隔膜形成和足突发育过程中,nephrin YRSL 基序是必不可少的。

The human nephrin YRSL motif is essential for podocyte foot process organization and slit diaphragm formation during glomerular development.

机构信息

Department of Developmental Biology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15201.

Department of Pediatrics, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania 15224.

出版信息

J Biol Chem. 2019 Jul 12;294(28):10773-10788. doi: 10.1074/jbc.RA119.008235. Epub 2019 May 31.

Abstract

Nephrin is an immunoglobulin-type cell-adhesion molecule with a key role in the glomerular interpodocyte slit diaphragm. Mutations in the gene are associated with defects in the slit diaphragm, leading to early-onset nephrotic syndrome, typically resistant to treatment. Although the endocytic trafficking of nephrin is essential for the assembly of the slit diaphragm, nephrin's specific endocytic motifs remain unknown. To search for endocytic motifs, here we performed a multisequence alignment of nephrin and identified a canonical YØ-type motif, YRSL, in the nephrin cytoplasmic tail, expressed only in primates. Using site-directed mutagenesis, various biochemical methods, single-plane illumination microscopy, a human podocyte line, and a human nephrin-expressing zebrafish model, we found that YRSL is a novel endocytic motif and a structural element for clathrin-mediated nephrin endocytosis that functions as a phosphorylation-sensitive signal. We observed that YRSL motif-mediated endocytosis helps to localize nephrin to specialized plasma membrane domains in podocytes and is essential for normal foot process organization into a functional slit diaphragm between neighboring foot processes in zebrafish. The importance of nephrin YRSL for healthy podocyte development was supported by population-level analyses of genetic variations at this motif, revealing that such variations are very rare, suggesting that mutations in this motif have autosomal-recessive negative effects on kidney health. These findings expand our understanding of the mechanism underlying nephrin endocytosis and may lead to improved diagnostic tools or therapeutic strategies for managing early-onset, treatment-resistant nephrotic syndrome.

摘要

足细胞裂孔隔膜的关键组成部分是免疫球蛋白型细胞黏附分子 Nephrin,该分子的基因突变与裂孔隔膜缺陷有关,导致早发性肾病综合征,且通常对治疗有抗性。虽然 Nephrin 的内吞转运对于裂孔隔膜的组装至关重要,但 Nephrin 的特定内吞基序仍然未知。为了寻找内吞基序,我们对 Nephrin 进行了多序列比对,并在 Nephrin 的细胞质尾部发现了一个仅在灵长类动物中表达的典型 YØ 型基序 YRSL。通过定点突变、各种生化方法、单平面照明显微镜、人足细胞系和表达人 Nephrin 的斑马鱼模型,我们发现 YRSL 是一个新的内吞基序和 Clathrin 介导的 Nephrin 内吞作用的结构元件,作为一个磷酸化敏感信号发挥作用。我们观察到 YRSL 基序介导的内吞作用有助于将 Nephrin 定位到足细胞中特化的质膜区域,对于正常足突组织形成相邻足突之间的功能性裂孔隔膜至关重要。该基序的遗传变异在人群水平上的分析支持了 Nephrin YRSL 对健康足细胞发育的重要性,表明这种变异非常罕见,提示该基序的突变对肾脏健康具有常染色体隐性负效应。这些发现扩展了我们对内吞 Nephrin 机制的理解,并可能为管理早发性、治疗抗性肾病综合征提供改进的诊断工具或治疗策略。

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