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Usher Syndrome Protein Network Functions in the Retina ,and their Relation to Other Retinal Ciliopathies

机译:视网膜综合征蛋白网络功能及其与其他视网膜睫状体病变的关系

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The human Usher syndrome (USH) is the most frequent cause of combined hereditary deaf-blindness. USH is genetically ,and clinically heterogeneous: 15 chromosomal loci assigned to 3 clinical types, USH 1-3. All USH1 ,and 2 proteins are organized into protein networks by the scaffold proteins harmonin (USH1C), whirlin (USH2D) ,and SANS (USH1G). This has contributed essentially to our current underst,anding of the USH protein function in the eye ,and the ear ,and explains why defects in proteins of different families cause very similar phenotypes. Ongoing in depth analyses of USH protein networks in the eye indicated cytoskeletal functions as well as roles in molecular transport processes ,and ciliary cargo delivery in photoreceptor cells. The analysis of USH protein networks revealed molecular links of USH to other ciliopathies, including non-syndromic inner ear defects ,and isolated retinal dystrophies but also to kidney diseases ,and syndromes like the Bardet-Biedl syndrome. These findings provide emerging evidence that USH is a ciliopathy molecularly related to other ciliopathies, which opens an avenue for common therapy strategies to treat these diseases.
机译:人类Usher综合征(USH)是合并性遗传性耳聋的最常见原因。 USH具有遗传和临床异质性:15个染色体基因座分配给3种临床类型,USH 1-3。所有USH1和2种蛋白质都由支架蛋白harmonin(USH1C),whirlin(USH2D)和SANS(USH1G)组成蛋白质网络。这基本上有助于我们目前对USH蛋白质在眼和耳中的功能的了解,并解释了为什么不同家族的蛋白质缺陷会导致非常相似的表型。对眼睛中USH蛋白网络的深入分析表明,细胞骨架功能以及在分子转运过程中的作用以及感光细胞中的睫状货物递送。对USH蛋白网络的分析揭示了USH与其他纤毛病的分子联系,包括非综合征性内耳缺损,孤立的视网膜营养不良,还与肾脏疾病以及Bardet-Biedl综合征等综合征相关。这些发现提供了新的证据,表明USH是与其他纤毛病在分子上相关的纤毛病,这为治疗这些疾病的常见治疗策略开辟了道路。

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