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SANS (USH1G) Molecularly Links the Human Usher Syndrome Protein Network to the Intraflagellar Transport Module by Direct Binding to IFT-B Proteins

机译:SANS(USH1G)通过直接结合IFT-B蛋白,SANS(USH1G)分子将人类含量综合征蛋白质网络与内际传输模块联系起来

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摘要

The human Usher syndrome (USH) is a retinal ciliopathy, characterized by profound congenital deafness, variable vestibular dysfunction and pre-pubertal onset of retinitis pigmentosa. In the effected sensory cells, USH protein networks are assumed to function in ciliary transport processes. The USH1G protein SANS is a scaffold of the ciliary/periciliary USH protein network of photoreceptor cells. Moreover, SANS is associated with microtubules, the transport routes for protein delivery toward the cilium. To enlighten the role of SANS in ciliary transport processes, we aimed to identify transport related proteins associated with SANS. The intraflagellar transport (IFT) system is a conserved mechanism for bi-directional transport toward and through primary cilia. Thus, we tested the direct binding of SANS to IFT molecules, namely IFT20, IFT57, and IFT74 in 1:1 yeast-two-hybrid assay. The identified SANS-IFT interactions were validated in vitro via independent complementary interaction assays and in cells by applying membrane targeting assays. Quantitative immunofluorescence microscopy revealed the co-localization of SANS with IFT20, IFT52, and IFT57 particularly at ciliary base of wild type mouse photoreceptor cells. Analysis of photoreceptor cells of SANS knock out mice revealed the decrease of IFTs in the ciliary compartment indicating a role of SANS in the proper positioning of IFT-B molecules in primary cilia. Our study demonstrated direct binding of IFT complex B proteins IFT52 and IFT57 to the N-terminal ankyrin repeats and the central domain of SANS. Our data also indicate that pathologic mutations in the N-terminus of SANS lead to the loos of SANS binding to IFT-B molecules. Our findings provide direct evidence for a molecular link between the ciliary USH protein network and the IFT transport module in primary cilia.
机译:人养老综合征(USH)是视网膜肺病变,其特征在于深刻的先天性耳聋,可变的前庭功能障碍和视网膜前血吸虫炎。在患有感觉细胞中,假设USH蛋白质网络在睫状体传输过程中起作用。 USH1G蛋白质SAN是睫状/百合脲USH蛋白网络的光接收器细胞的支架。此外,SAN与微管相关,传输途径用于纤毛蛋白质递送。为了开发SAN在睫毛运输过程中的作用,我们旨在鉴定与SAN相关的交通相关蛋白质。内际交通(IFT)系统是朝向和通过原发性纤毛的双向运输的保守机制。因此,我们测试了SAN到IFT分子的直接结合,即IFT20,IFT57和IFT74在1:1酵母 - 双杂交测定中。通过施加膜靶向测定,通过独立的互补相互作用测定和细胞在体外进行鉴定的SAN-IFT相互作用。定量免疫荧光显微镜显示SAN与IFT20,IFT52和IFT57的共定位,特别是在野生型小鼠光感受器细胞的睫状碱。 SAN的光感受器细胞分析敲除小鼠揭示了睫状室中的IFTS的降低,表明SAN在原发性纤毛的IFT-B分子的适当定位中的作用。我们的研究表明IFT复合物B蛋白IFT52和IFT57对N-末端Ankyrin的直接结合和SAN的中心结构域。我们的数据还表明,SAN的N-末端的病理突变导致与IFT-B分子结合的SAN的溶解。我们的研究结果为睫毛蛋白网络和原代纤毛的IFT运输模块之间的分子链接提供了直接证据。

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