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与初级纤毛不同,光感受器纤毛允许部分组装的 BBSome 进入。

Photoreceptor cilia, in contrast to primary cilia, grant entry to a partially assembled BBSome.

机构信息

Department of Pediatrics, Division of Medical Genetics and Genomics, University of Iowa Carver College of Medicine, Iowa City, IA 52242, USA.

Department of Ophthalmology and Visual Sciences, University of Iowa, Iowa City, IA 52242, USA.

出版信息

Hum Mol Genet. 2021 Mar 25;30(1):87-102. doi: 10.1093/hmg/ddaa284.

Abstract

The BBSome is a protein complex consisting of BBS1, BBS2, BBS4, BBS5, BBS7, BBS8, BBS9 and BBS18 that associates with intraflagellar transport complexes and specializes in ciliary trafficking. In primary cilia, ciliary entry requires the fully assembled BBSome as well as the small GTPase, ARL6 (BBS3). Retinal photoreceptors possess specialized cilia. In light of key structural and functional differences between primary and specialized cilia, we examined the principles of BBSome recruitment to photoreceptor cilia. We performed sucrose gradient fractionation using retinal lysates of Bbs2-/-, Bbs7-/-, Bbs8-/- and Bbs3-/- mice to determine the status of BBSome assembly, then determined localization of BBSome components using immunohistochemistry. Surprisingly, we found that a subcomplex of the BBSome containing at least BBS1, BBS5, BBS8 and BBS9 is recruited to cilia in the absence of BBS2 or BBS7. In contrast, a BBSome subcomplex consisting of BBS1, BBS2, BBS5, BBS7 and BBS9 is found in Bbs8-/- retinas and is denied ciliary entry in photoreceptor cells. In addition, the BBSome remains fully assembled in Bbs3-/- retinas and can be recruited to photoreceptor cilia in the absence of BBS3. We compared phenotypic severity of their retinal degeneration phenotypes. These findings demonstrate that unlike primary cilia, photoreceptor cilia admit a partially assembled BBSome meeting specific requirements. In addition, the recruitment of the BBSome to photoreceptor cilia does not require BBS3. These findings indicate that the ciliary entry of the BBSome is subjected to cell-specific regulation, particularly in cells with highly adapted forms of cilia such as photoreceptors.

摘要

BBSome 是一种由 BBS1、BBS2、BBS4、BBS5、BBS7、BBS8、BBS9 和 BBS18 组成的蛋白复合物,它与鞭毛内运输复合物结合,专门负责纤毛运输。在初级纤毛中,纤毛进入需要完全组装的 BBSome 以及小 GTPase,ARL6(BBS3)。视网膜感光器具有特殊的纤毛。鉴于初级纤毛和特化纤毛之间存在关键的结构和功能差异,我们研究了 BBSome 招募到感光器纤毛的原理。我们使用 Bbs2-/-、Bbs7-/-、Bbs8-/-和 Bbs3-/- 小鼠的视网膜裂解物进行蔗糖梯度分级,以确定 BBSome 组装的状态,然后使用免疫组织化学确定 BBSome 成分的定位。令人惊讶的是,我们发现 BBSome 的一个亚基复合物,至少包含 BBS1、BBS5、BBS8 和 BBS9,在没有 BBS2 或 BBS7 的情况下被招募到纤毛中。相比之下,BBS8-/- 视网膜中存在由 BBS1、BBS2、BBS5、BBS7 和 BBS9 组成的 BBSome 亚基复合物,但在感光细胞中被拒绝进入纤毛。此外,BBSome 在 Bbs3-/- 视网膜中仍然完全组装,并可以在没有 BBS3 的情况下被招募到感光器纤毛中。我们比较了它们视网膜变性表型的严重程度。这些发现表明,与初级纤毛不同,感光器纤毛允许特定要求下的部分组装的 BBSome 进入。此外,BBSome 向感光器纤毛的募集不需要 BBS3。这些发现表明,BBSome 的纤毛进入受到细胞特异性调节,特别是在具有高度适应形式纤毛的细胞中,如感光器。

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