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一种靶向多蛋白质组学方法生成了纤毛泛素化蛋白质组的蓝图。

A targeted multi-proteomics approach generates a blueprint of the ciliary ubiquitinome.

作者信息

Aslanyan Mariam G, Doornbos Cenna, Diwan Gaurav D, Anvarian Zeinab, Beyer Tina, Junger Katrin, van Beersum Sylvia E C, Russell Robert B, Ueffing Marius, Ludwig Alexander, Boldt Karsten, Pedersen Lotte B, Roepman Ronald

机构信息

Department of Human Genetics, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center, Nijmegen, Netherlands.

BioQuant, Heidelberg University, Heidelberg, Germany.

出版信息

Front Cell Dev Biol. 2023 Jan 26;11:1113656. doi: 10.3389/fcell.2023.1113656. eCollection 2023.

Abstract

Establishment and maintenance of the primary cilium as a signaling-competent organelle requires a high degree of fine tuning, which is at least in part achieved by a variety of post-translational modifications. One such modification is ubiquitination. The small and highly conserved ubiquitin protein possesses a unique versatility in regulating protein function its ability to build mono and polyubiquitin chains onto target proteins. We aimed to take an unbiased approach to generate a comprehensive blueprint of the ciliary ubiquitinome by deploying a multi-proteomics approach using both ciliary-targeted ubiquitin affinity proteomics, as well as ubiquitin-binding domain-based proximity labelling in two different mammalian cell lines. This resulted in the identification of several key proteins involved in signaling, cytoskeletal remodeling and membrane and protein trafficking. Interestingly, using two different approaches in IMCD3 and RPE1 cells, respectively, we uncovered several novel mechanisms that regulate cilia function. In our IMCD3 proximity labeling cell line model, we found a highly enriched group of ESCRT-dependent clathrin-mediated endocytosis-related proteins, suggesting an important and novel role for this pathway in the regulation of ciliary homeostasis and function. In contrast, in RPE1 cells we found that several structural components of caveolae (CAV1, CAVIN1, and EHD2) were highly enriched in our cilia affinity proteomics screen. Consistently, the presence of caveolae at the ciliary pocket and ubiquitination of CAV1 specifically, were found likely to play a role in the regulation of ciliary length in these cells. Cilia length measurements demonstrated increased ciliary length in RPE1 cells stably expressing a ubiquitination impaired CAV1 mutant protein. Furthermore, live cell imaging in the same cells revealed decreased CAV1 protein turnover at the cilium as the possible cause for this phenotype. In conclusion, we have generated a comprehensive list of cilia-specific proteins that are subject to regulation ubiquitination which can serve to further our understanding of cilia biology in health and disease.

摘要

将初级纤毛建立并维持为具有信号传导能力的细胞器需要高度精细的调节,这至少部分是通过多种翻译后修饰实现的。其中一种修饰是泛素化。小的且高度保守的泛素蛋白在调节蛋白质功能方面具有独特的多功能性——它能够在靶蛋白上构建单泛素链和多泛素链。我们旨在采用一种无偏见的方法,通过在两种不同的哺乳动物细胞系中部署多蛋白质组学方法,利用纤毛靶向泛素亲和蛋白质组学以及基于泛素结合结构域的邻近标记,生成纤毛泛素组的全面蓝图。这导致鉴定出了几种参与信号传导、细胞骨架重塑以及膜和蛋白质运输的关键蛋白质。有趣的是,分别在IMCD3和RPE1细胞中使用两种不同的方法,我们发现了几种调节纤毛功能的新机制。在我们的IMCD3邻近标记细胞系模型中,我们发现了一组高度富集的依赖内体分选转运复合体(ESCRT)的网格蛋白介导的内吞作用相关蛋白,这表明该途径在调节纤毛稳态和功能中具有重要且新颖的作用。相比之下,在RPE1细胞中,我们发现在我们的纤毛亲和蛋白质组学筛选中,小窝的几种结构成分(CAV1、CAVIN1和EHD2)高度富集。一致地,在纤毛口袋处发现小窝的存在以及CAV1的特异性泛素化可能在这些细胞中纤毛长度的调节中起作用。纤毛长度测量表明,在稳定表达泛素化受损的CAV1突变蛋白的RPE1细胞中纤毛长度增加。此外,在相同细胞中的活细胞成像显示,纤毛处CAV1蛋白周转减少可能是这种表型的原因。总之,我们生成了一份受泛素化调节的纤毛特异性蛋白质的综合清单,这有助于我们进一步了解健康和疾病状态下的纤毛生物学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bdf/9908615/17687086eb7f/fcell-11-1113656-g001.jpg

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