中心粒卫星蛋白 Cep72 和 Cep290 相互作用,并且对于 BBS 蛋白招募到纤毛是必需的。

The centriolar satellite proteins Cep72 and Cep290 interact and are required for recruitment of BBS proteins to the cilium.

机构信息

Department of Biology, Stanford School of Medicine, Stanford, CA 94305-5020, USA.

出版信息

Mol Biol Cell. 2012 Sep;23(17):3322-35. doi: 10.1091/mbc.E12-02-0134. Epub 2012 Jul 5.

Abstract

Defects in centrosome and cilium function are associated with phenotypically related syndromes called ciliopathies. Centriolar satellites are centrosome-associated structures, defined by the protein PCM1, that are implicated in centrosomal protein trafficking. We identify Cep72 as a PCM1-interacting protein required for recruitment of the ciliopathy-associated protein Cep290 to centriolar satellites. Loss of centriolar satellites by depletion of PCM1 causes relocalization of Cep72 and Cep290 from satellites to the centrosome, suggesting that their association with centriolar satellites normally restricts their centrosomal localization. We identify interactions between PCM1, Cep72, and Cep290 and find that disruption of centriolar satellites by overexpression of Cep72 results in specific aggregation of these proteins and the BBSome component BBS4. During ciliogenesis, BBS4 relocalizes from centriolar satellites to the primary cilium. This relocalization occurs normally in the absence of centriolar satellites (PCM1 depletion) but is impaired by depletion of Cep290 or Cep72, resulting in defective ciliary recruitment of the BBSome subunit BBS8. We propose that Cep290 and Cep72 in centriolar satellites regulate the ciliary localization of BBS4, which in turn affects assembly and recruitment of the BBSome. Finally, we show that loss of centriolar satellites in zebrafish leads to phenotypes consistent with cilium dysfunction and analogous to those observed in human ciliopathies.

摘要

中心体和纤毛功能的缺陷与表型相关的综合征有关,称为纤毛病。中心粒卫星是与中心体相关的结构,由 PCM1 蛋白定义,其参与中心体蛋白的运输。我们确定 Cep72 是一种与 PCM1 相互作用的蛋白,对于招募纤毛病相关蛋白 Cep290 到中心粒卫星是必需的。PCM1 耗竭导致中心粒卫星缺失,从而导致 Cep72 和 Cep290 从卫星重新定位到中心体,表明它们与中心粒卫星的结合通常限制了它们在中心体的定位。我们确定了 PCM1、Cep72 和 Cep290 之间的相互作用,并发现通过 Cep72 的过表达破坏中心粒卫星会导致这些蛋白和 BBSome 成分 BBS4 的特异性聚集。在纤毛发生过程中,BBS4 从中心粒卫星重新定位到初级纤毛。在没有中心粒卫星的情况下(PCM1 耗竭),这种重定位正常发生,但 Cep290 或 Cep72 的耗竭会损害 BBSome 亚基 BBS8 的纤毛募集,导致纤毛缺陷。我们提出 Cep290 和 Cep72 在中心粒卫星中调节 BBS4 的纤毛定位,这反过来又影响 BBSome 的组装和募集。最后,我们表明斑马鱼中心粒卫星的缺失导致与纤毛功能障碍一致的表型,类似于在人类纤毛病中观察到的表型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2fe/3431927/154c7f9f9de0/3322fig1.jpg

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