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A model organism approach: defining the role of Neph proteins as regulators of neuron and kidney morphogenesis

机译:一种模型生物方法:定义Neph蛋白作为神经元和肾脏形态发生调节剂的作用

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摘要

Mutations of the immunoglobulin superfamily proteins nephrin and Neph1 lead to congenital nephrotic syndrome in humans or mice. Neph proteins are three closely related molecules that are evolutionarily conserved and mediate cell recognition. Their importance for morphogenetic processes including the formation of the kidney filtration barrier in vertebrates and synaptogenesis in Caenorhabditis elegans has recently been uncovered. However, the individual morphogenetic function of mammalian Neph1–3 isoforms remained elusive. We demonstrate now that the Nephephrin family proteins can form cell–cell adhesion modules across species. Expression of all three mammalian Neph isoforms partially rescued mutant C. elegans lacking their Neph homolog syg-1 and restored synapse formation, suggesting a functional redundancy between the three isoforms. Strikingly, the rescue of defective synaptic connectivity was prevented by deletion of the highly conserved cytoplasmic PSD95/Dlg/ZO-1-binding motif of SYG-1/Neph proteins, indicating the critical role of this intracellular signaling motif for SYG-1/Neph-dependent morphogenetic events. To determine the significance of Neph isoform redundancy for vertebrate kidney development, we analyzed the expression pattern and the functional role of Neph proteins in zebrafish. In situ hybridizations identified zNeph1 and zNeph2 as glomerular proteins. Morpholino knockdown of either zNeph1 or zNeph2 resulted in loss of slit diaphragms and leakiness of the glomerular filtration barrier. This is the first report utilizing C. elegans to study mammalian Nephephrin protein function and to demonstrate a functional overlap of Neph1–3 proteins. Furthermore, we identify Neph2 as a novel critical regulator of glomerular function, indicating that both Neph1 and Neph2 are required for glomerular maintenance and development.
机译:免疫球蛋白超家族蛋白nephrin和Neph1的突变会导致人类或小鼠的先天性肾病综合征。 Neph蛋白是三个紧密相关的分子,它们在进化上是保守的并介导细胞识别。最近发现了它们对于形态发生过程的重要性,包括脊椎动物中肾脏滤过屏障的形成和秀丽隐杆线虫的突触形成。但是,哺乳动物Neph1-3亚型的个体形态发生功能仍然难以捉摸。现在,我们证明Neph / nephrin家族蛋白可以形成跨物种的细胞间粘附模块。所有三种哺乳动物Neph亚型的表达部分挽救了缺少其Neph同源syg-1的秀丽隐杆线虫并恢复了突触形成,表明这三种亚型之间存在功能冗余。令人惊讶的是,SYG-1 / Neph蛋白高度保守的胞质PSD95 / Dlg / ZO-1-结合基序的缺失阻止了突触连接缺陷的抢救,这表明该细胞内信号基序对于SYG-1 / Neph的关键作用依赖的形态发生事件。为了确定Neph亚型冗余对脊椎动物肾脏发育的重要性,我们分析了Neph蛋白在斑马鱼中的表达模式和功能作用。原位杂交鉴定出zNeph1和zNeph2为肾小球蛋白。 zNeph1或zNeph2的Morpholino抑制导致缝隙隔膜的丢失和肾小球滤过屏障的漏出。这是利用秀丽隐杆线虫研究哺乳动物Neph / nephrin蛋白功能并证明Neph1-3蛋白功能重叠的第一份报告。此外,我们确定Neph2为肾小球功能的新型关键调节剂,表明Neph1和Neph2都是肾小球维持和发育所必需的。

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  • 来源
    《Human Molecular Genetics》 |2010年第12期|p.2347-2359|共13页
  • 作者单位

    Renal Division and;

    Renal Division and;

    Renal Division and;

    Renal Division and;

    Renal Division and;

    Renal Division and;

    Renal Division and|Spemann Graduate School of Biology and Medicine, University of Freiburg, Freiburg, Germany;

    Renal Division and;

    Renal Division and;

    Lehrstuhl für Genomorientierte Bioinformatik, Technische Universität München, Munich, Germany,;

    Renal Division and;

    Department of Neuropathology, University Hospital Freiburg, D-79106 Freiburg, Germany,;

    Bioinformatics and Molecular Genetics (Faculty of Biology) and ZBMZ Center for Biochemistry and Molecular Medicine (Faculty of Medicine),|FRIAS School of Life Sciences (LIFENET)|Centre for Biological Signalling Studies (bioss), Albert-Ludwigs-Universität Freiburg, Freiburg, Germany and;

    Renal Division and|Centre for Biological Signalling Studies (bioss), Albert-Ludwigs-Universität Freiburg, Freiburg, Germany and;

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