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通过邻近标记揭示视网膜神经元中的电突触蛋白质组。

Uncovering the electrical synapse proteome in retinal neurons via proximity labeling.

作者信息

Tetenborg Stephan, Shihabeddin Eyad, Kumar Elizebeth Olive Akansha Manoj, Sigulinsky Crystal L, Dedek Karin, Lin Ya-Ping, Echeverry Fabio A, Hoff Hannah, Pereda Alberto E, Jones Bryan W, Ribelayga Christophe P, Ebnet Klaus, Matsuura Ken, O'Brien John

出版信息

bioRxiv. 2025 May 1:2024.11.26.625481. doi: 10.1101/2024.11.26.625481.

Abstract

Electrical synapses containing Connexin 36 (Cx36) represent the main means for direct electrical communication among neurons in the mammalian nervous system. However, little is known about the protein complexes that constitute these synapses. In the present study, we applied different BioID strategies to screen the interactomes of Connexin 36 and its zebrafish orthologue Cx35b in retinal neurons. For proximity labeling in mice, we took advantage of the Cx36-EGFP strain and expressed a GFP-nanobody-TurboID fusion construct selectively in AII amacrine cells. For BioID in zebrafish, we generated a transgenic line expressing a Cx35b-TurboID fusion under control of the Cx35b promoter. Both strategies allowed us to capture a plethora of molecules that were associated with electrical synapses and showed a high degree of evolutionary conservation in the proteomes of both species. Besides known interactors of Cx36 such as ZO-1 and ZO-2 we have identified more than 50 new proteins, such as scaffold proteins, adhesion molecules and regulators of the cytoskeleton. Moreover, we determined the subcellular localization of these proteins in mouse retina and tested potential binding interactions with Cx36. Amongst these new interactors, we identified signal induced proliferation associated 1 like 3 (Sipa1l3), a protein that has been implicated in cell junction formation and cell polarity, as a new scaffold of electrical synapses. Interestingly, Sipa1l3 was able to interact with ZO-1, ZO-2 and Cx36, suggesting a pivotal role in electrical synapse function. In summary, our study provides the first detailed view of the electrical synapse proteome in retinal neurons, which is likely to apply to electrical synapses elsewhere.

摘要

包含连接蛋白36(Cx36)的电突触是哺乳动物神经系统中神经元之间直接电通信的主要方式。然而,对于构成这些突触的蛋白质复合物却知之甚少。在本研究中,我们应用了不同的BioID策略来筛选视网膜神经元中连接蛋白36及其斑马鱼同源物Cx35b的相互作用组。对于小鼠中的邻近标记,我们利用了Cx36-EGFP品系,并在AII无长突细胞中选择性地表达了GFP-纳米抗体-TurboID融合构建体。对于斑马鱼中的BioID,我们构建了一个转基因品系,该品系在Cx35b启动子的控制下表达Cx35b-TurboID融合蛋白。这两种策略都使我们能够捕获大量与电突触相关的分子,并且在这两个物种的蛋白质组中显示出高度的进化保守性。除了已知的Cx36相互作用蛋白,如ZO-1和ZO-2,我们还鉴定了50多种新蛋白质,如支架蛋白、粘附分子和细胞骨架调节剂。此外,我们确定了这些蛋白质在小鼠视网膜中的亚细胞定位,并测试了它们与Cx36的潜在结合相互作用。在这些新的相互作用蛋白中,我们鉴定出信号诱导增殖相关蛋白1样蛋白3(Sipa1l3),一种与细胞连接形成和细胞极性有关的蛋白质,作为电突触的新支架。有趣的是,Sipa1l3能够与ZO-1、ZO-2和Cx36相互作用,表明其在电突触功能中起关键作用。总之,我们的研究首次详细展示了视网膜神经元中电突触蛋白质组的情况,这可能也适用于其他部位的电突触。

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