首页> 外文期刊>Investigative ophthalmology & visual science >Cellular retinaldehyde-binding protein interacts with ERM-binding phosphoprotein 50 in retinal pigment epithelium.
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Cellular retinaldehyde-binding protein interacts with ERM-binding phosphoprotein 50 in retinal pigment epithelium.

机译:细胞视网膜醛结合蛋白与视网膜色素上皮中的ERM结合磷蛋白50相互作用。

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PURPOSE: To characterize mechanisms of apical localization of visual cycle components in retinal pigment epithelium (RPE) by the identification of cellular retinaldehyde-binding protein (CRALBP) interaction partners. METHODS: An overlay assay was used to detect interactions of CRALBP with components of RPE microsomes. Interacting proteins were identified with two-dimensional (2D)-PAGE and liquid chromatography tandem mass spectrometry (LC MS/MS). Protein interactions were characterized by affinity chromatography, peptide competition, and expression of protein domains. Protein colocalization in mouse retina was examined using double-label immunocytochemistry and confocal microscopy. RESULTS: CRALBP bound to a 54-kDa protein in RPE microsomes, which was identified as ERM (ezrin, radixin, moesin)-binding phosphoprotein 50 (EBP50), a PDZ domain protein, also known as sodium/hydrogen exchanger regulatory factory type 1 (NHERF-1). EBP50 and ezrin in solubilized microsomes bound to CRALBP-agarose but not to acontrol agarose column. CRALBP bound to both recombinant PDZ domains of EBP50 but not to the C-terminal ezrin-binding domain. In outer retina, EBP50 and ezrin were localized to RPE and Muller apical processes. CRALBP was distributed throughout both RPE and Muller cells, including their apical processes. CONCLUSION: RM proteins are multivalent linkers that connect plasma membrane proteins with the cortical actin cytoskeleton. EBP50 interacts with ERM family members through a C-terminal domain and binds targets such as CRALBP through its PDZ domains, thus contributing to an apical localization of target proteins. Our results provide a structural basis for apical localization of a retinoid-processing complex in RPE cells and offer insight into the cell biology of retinoid processing and trafficking in RPE.
机译:目的:通过鉴定细胞视黄醛结合蛋白(CRALBP)相互作用的伙伴来表征视网膜色素上皮(RPE)的视觉循环组件的顶端定位机制。方法:采用叠加法检测CRALBP与RPE微粒体的相互作用。通过二维(2D)-PAGE和液相色谱串联质谱(LC MS / MS)鉴定相互作用的蛋白质。通过亲和色谱,肽竞争和蛋白结构域表达来表征蛋白相互作用。使用双标记免疫细胞化学和共聚焦显微镜检查了小鼠视网膜中的蛋白质共定位。结果:CRALBP结合到RPE微粒体中的54 kDa蛋白上,该蛋白被鉴定为结合ERM(ezrin,radixin,moesin)的磷酸化蛋白50(EBP50),PDZ域蛋白,也被称为钠​​/氢交换器调节工厂类型1 (NHERF-1)。溶解的微粒体中的EBP50和ezrin与CRALBP-琼脂糖结合,但不与对照琼脂糖柱结合。 CRALBP结合到EBP50的两个重组PDZ域,但不结合到C端ezrin结合域。在视网膜外侧,EBP50和ezrin局限于RPE和Muller根尖突。 CRALBP分布在整个RPE和Muller细胞中,包括其顶端过程。结论:RM蛋白是连接质膜蛋白和皮质肌动蛋白细胞骨架的多价接头。 EBP50通过C末端结构域与ERM家族成员相互作用,并通过其PDZ结构域结合诸如CRALBP的靶标,从而有助于靶标蛋白的根尖定位。我们的结果为RPE细胞中类维生素A加工复合物的根尖定位提供了结构基础,并为RPE中类维生素A加工和运输的细胞生物学提供了见识。

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