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分选连接蛋白3逆转运输复合物途径调控Wnt激活的多囊蛋白通道复合物的细胞表面定位及活性。

The Sorting Nexin 3 Retromer Pathway Regulates the Cell Surface Localization and Activity of a Wnt-Activated Polycystin Channel Complex.

作者信息

Feng Shuang, Streets Andrew J, Nesin Vasyl, Tran Uyen, Nie Hongguang, Onopiuk Marta, Wessely Oliver, Tsiokas Leonidas, Ong Albert C M

机构信息

Kidney Genetics Group, Academic Nephrology Unit and the Bateson Centre, Department of Infection, Immunity and Cardiovascular Disease, University of Sheffield Medical School, Sheffield, United Kingdom.

Department of Cell Biology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma; and.

出版信息

J Am Soc Nephrol. 2017 Oct;28(10):2973-2984. doi: 10.1681/ASN.2016121349. Epub 2017 Jun 15.

Abstract

Autosomal dominant polycystic kidney disease (ADPKD) is caused by inactivating mutations in (85%) or (15%). The ADPKD proteins encoded by these genes, polycystin-1 (PC1) and polycystin-2 (PC2), form a plasma membrane receptor-ion channel complex. However, the mechanisms controlling the subcellular localization of PC1 and PC2 are poorly understood. Here, we investigated the involvement of the retromer complex, an ancient protein module initially discovered in yeast that regulates the retrieval, sorting, and retrograde transport of membrane receptors. Using yeast two-hybrid, biochemical, and cellular assays, we determined that PC2 binds two isoforms of the retromer-associated protein sorting nexin 3 (SNX3), including a novel isoform that binds PC2 in a direct manner. Knockdown of SNX3 or the core retromer protein VPS35 increased the surface expression of endogenous PC1 and PC2 and and increased Wnt-activated PC2-dependent whole-cell currents. These findings indicate that an SNX3-retromer complex regulates the surface expression and function of PC1 and PC2. Molecular targeting of proteins involved in the endosomal sorting of PC1 and PC2 could lead to new therapeutic approaches in ADPKD.

摘要

常染色体显性遗传性多囊肾病(ADPKD)由(85%)或(15%)的失活突变引起。这些基因编码的ADPKD蛋白,多囊蛋白-1(PC1)和多囊蛋白-2(PC2),形成一种质膜受体 - 离子通道复合物。然而,控制PC1和PC2亚细胞定位的机制仍知之甚少。在这里,我们研究了逆转录复合物的作用,这是一种最初在酵母中发现的古老蛋白质模块,它调节膜受体的回收、分选和逆行运输。通过酵母双杂交、生化和细胞分析,我们确定PC2与逆转录相关蛋白分选连接蛋白3(SNX3)的两种同工型结合,包括一种以直接方式结合PC2的新型同工型。敲低SNX3或核心逆转录蛋白VPS35会增加内源性PC1和PC2的表面表达以及增加Wnt激活的PC2依赖性全细胞电流。这些发现表明,SNX3 - 逆转录复合物调节PC1和PC2的表面表达和功能。对参与PC1和PC2内体分选的蛋白质进行分子靶向可能会导致ADPKD的新治疗方法。

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