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Characterization of Ribeye Subunits in Zebrafish Hair Cells Reveals That Exogenous Ribeye B-Domain and CtBP1 Localize to the Basal Ends of Synaptic Ribbons

机译:斑马鱼毛细胞中的肋眼亚基的表征揭示了外源性肋眼B-域和CtBP1定位于突触带的基端。

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摘要

Synaptic ribbons are presynaptic structures formed by the self-association of RIBEYE–the main structural component of ribbon synapses. RIBEYE consists of two domains: a unique N-terminal A-domain and a C-terminal B-domain that is identical to the transcription co-repressor C-terminal binding protein 2 (CtBP2). Previous studies in cell lines have shown that RIBEYE A-domain alone is sufficient to form ribbon-like aggregates and that both A- and B- domains form homo-and heterotypic interactions. As these interactions are likely the basis for synaptic-ribbon assembly and structural plasticity, we wanted to examine how zebrafish Ribeye A- and B- domains interact with synaptic ribbons in vivo. To that end, we characterized the localization of exogenously expressed Ribeye A- and B- domains and the closely related protein, CtBP1, in the hair cells of transgenic zebrafish larvae. Unexpectedly, exogenously expressed Ribeye A-domain showed variable patterns of localization in hair cells; one zebrafish paralog of A-domain failed to self-associate or localize to synaptic ribbons, while the other self-assembled but sometimes failed to localize to synaptic ribbons. By contrast, Ribeye B-domain/CtBP2 was robustly localized to synaptic ribbons. Moreover, both exogenously expressed B-domain/CtBP2 and CtBP1 were preferentially localized to the basal end of ribbons adjacent to the postsynaptic density. Overexpression of B-domain/CtBP2 also appeared to affect synaptic-ribbon composition; endogenous levels of ribbon-localized Ribeye were significantly reduced as hair cells matured in B-domain/CtBP2 transgenic larvae compared to wild-type. These results reveal how exogenously expressed Ribeye domains interact with synaptic ribbons, and suggest a potential organization of elements within the ribbon body.
机译:突触带是由RIBEYE(带状突触的主要结构成分)的自缔合形成的突触前结构。 RIBEYE由两个结构域组成:一个独特的N末端A结构域和一个C末端B结构域,与转录共阻遏物C末端结合蛋白2(CtBP2)相同。先前在细胞系中的研究表明,仅RIBEYE A结构域足以形成带状聚集体,并且A结构域和B结构域均形成同型和异型相互作用。由于这些相互作用可能是突触丝带组装和结构可塑性的基础,因此我们想研究斑马鱼Ribeye A-和B-域在体内如何与突触带相互作用。为此,我们表征了外源表达的Ribeye A-和B-结构域以及紧密相关的蛋白CtBP1在转基因斑马鱼幼虫的毛细胞中的定位。出乎意料的是,外源表达的Ribeye A结构域在毛细胞中显示出可变的定位模式。一个A域的斑马鱼旁系同源物未能自缔合或定位于突触带,而另一个自组装但有时未能定位至突触带。相比之下,Ribeye B结构域/ CtBP2被牢固地定位到突触带。此外,外源表达的B结构域/ CtBP2和CtBP1都优先定位在邻近突触后密度的带基端。 B结构域/ CtBP2的过表达似乎也影响突触丝带的组成。与野生型相比,随着B细胞/ CtBP2转基因幼虫中毛发细胞的成熟,带状定位的眼眼的内源性水平显着降低。这些结果揭示了外源表达的核眼结构域如何与突触带相互作用,并暗示了带状体内元素的潜在组织。

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