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首页> 外文期刊>Journal of Cell Science >The centriolar satellite protein CCDC66 interacts with CEP290 and functions in cilium formation and trafficking
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The centriolar satellite protein CCDC66 interacts with CEP290 and functions in cilium formation and trafficking

机译:CentRiolar卫星蛋白CCDC66与CEP290相互作用,并在纤毛地层和贩运中的作用

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摘要

Centriolar satellites are membrane-less structures that localize and move around the centrosome and cilium complex in a microtubule-dependent manner. They play important roles in centrosome- and cilium-related processes, including protein trafficking to the centrosome and cilium complex, and ciliogenesis, and they are implicated in ciliopathies. Despite the important regulatory roles of centriolar satellites in the assembly and function of the centrosome and cilium complex, the molecular mechanisms of their functions remain poorly understood. To dissect the mechanism for their regulatory roles during ciliogenesis, we performed an analysis to determine the proteins that localize in close proximity to the satellite protein CEP72, among which was the retinal degeneration gene product CCDC66. We identified CCDC66 as a microtubule-associated protein that dynamically localizes to the centrosome, centriolar satellites and the primary cilium throughout the cell cycle. Like the BBSome component BBS4, CCDC66 distributes between satellites and the primary cilium during ciliogenesis. CCDC66 has extensive proximity interactions with centrosome and centriolar satellite proteins, and co-immunoprecipitation experiments revealed interactions between CCDC66, CEP290 and PCM1. Ciliogenesis, ciliary recruitment of BBS4 and centriolar satellite organization are impaired in cells depleted for CCDC66. Taken together, our findings identify CCDC66 as a targeting factor for centrosome and cilium proteins.
机译:CentRiolar卫星是薄膜结构,其围绕中心体和甲硅络合物以微管依赖性方式定位和移动。它们在Centroosome和Cilium相关的过程中发挥重要作用,包括贩运蛋白质贩运中心组和甲硅烷络合物,以及纤氯化合物,它们涉及纤毛病。尽管CENTRIOLAR卫星在中心组织和柠檬钙的组装和功能中具有重要的调节作用,但其功能的分子机制仍然明白。为了在纤毛发生过程中对其调节作用进行解剖,我们进行了分析,以确定定位在卫星蛋白Cep72附近定位的蛋白质,其中是视网膜退化基因产物CCDC66。我们将CCDC66鉴定为微管相关蛋白,其在整个细胞周期中动态定位于中心组体,中心卫星和初级纤维化。与BBSOME分量BBS4一样,CCDC66在纤毛发生期间分布卫星和初级纤毛。 CCDC66具有广泛的接近与中心体和CentRiolar卫星蛋白质的接近相互作用,并且共免疫沉淀实验揭示了CCDC66,CEP290和PCM1之间的相互作用。 CCDC66耗尽的细胞中,BBS4和CentRiolar卫星组织的纤毛发生,BBS4和Centriolar卫星组织受损。我们的研究结果一起鉴定CCDC66作为中心蛋白质和纤毛蛋白的靶向因子。

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