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人角膜在器官培养保存前后内皮细胞中Yes相关蛋白的表达

Expression of Yes-associated protein in endothelial cells of human corneas before and after storage in organ culture.

作者信息

Vaitinadapoulé Hanielle, Ben Moussa Olfa, Maurin Corantin, Aouimeur Inès, Perrache Chantal, Thomas Justin, Forestier Pierre, Crouzet Emmanuel, He Zhiguo, Gain Philippe, Thuret Gilles, Mascarelli Frédéric

机构信息

Laboratory of Biology, Engineering, and Imaging for Ophthalmology, BiiO, Faculty of Medicine, University of Jean Monnet, 10 rue de la Marandière, 42270, Saint-Priest en Jarez, France.

Ophthalmology Department, University Hospital, Avenue Albert Raimond, 42055, Saint-Etienne Cedex 02, France.

出版信息

Sci Rep. 2024 Dec 28;14(1):31073. doi: 10.1038/s41598-024-82269-y.

Abstract

The cornea, the anterior meniscus-shaped transparent and refractive structure of the eyeball, is the first mechanical barrier of the eye. Its functionality heavily relies on the health of its endothelium, its most posterior layer. The treatment of corneal endothelial cells (CECs) deficiency is allogeneic corneal graft using stored donor corneas. One of the main goals of eye banks is to maintain endothelial cell density (ECD) and endothelial barrier function, critical parameters influencing transplantation outcomes. Unlike in vivo, the stored cornea is not subjected to physiological mechanical stimuli, such as the hydrokinetic pressure of the aqueous humor and intraocular pressure (IOP). YAP (Yes-Associated Protein), a pivotal transcriptional coactivator, is recognized for its ability to sense diverse biomechanical cues and transduce them into specific biological signals, varying for each cell type and mechanical forces. The biomechanical cues that might regulate YAP in human corneal endothelium remain unidentified. Therefore, we investigated the expression and subcellular localization of YAP in the endothelium of corneas stored in organ culture (OC). Our findings demonstrated that CEC morphology, ECD and cell-cell interactions are distinctly and differentially associated with modifications in the expression, subcellular localization and phosphorylation of YAP. Notably, this phosphorylation occurs in the basal region of the primary cilium, which may play central cellular roles in sensing mechanical stimuli. The sustained recruitment of YAP in cellular junctions, nucleus, and cilium under long-term OC conditions strongly indicates its specific role in maintaining CEC homeostasis. Understanding these biophysical influences could aid in identifying molecules that promote homeostasis and enhance the functionality of CECs.

摘要

角膜是眼球前部呈半月形的透明屈光结构,是眼睛的第一道机械屏障。其功能在很大程度上依赖于其最内层——内皮细胞的健康状况。治疗角膜内皮细胞(CEC)缺乏症的方法是使用储存的供体角膜进行同种异体角膜移植。眼库的主要目标之一是维持内皮细胞密度(ECD)和内皮屏障功能,这是影响移植结果的关键参数。与体内情况不同,储存的角膜不会受到生理机械刺激,如房水的流体动力压力和眼内压(IOP)。YAP(Yes相关蛋白)是一种关键的转录共激活因子,因其能够感知多种生物力学信号并将其转化为特定的生物信号而闻名,这些信号因细胞类型和机械力的不同而有所差异。可能调节人角膜内皮细胞中YAP的生物力学信号仍未明确。因此,我们研究了YAP在器官培养(OC)储存角膜内皮中的表达和亚细胞定位。我们的研究结果表明,CEC的形态、ECD和细胞间相互作用与YAP的表达、亚细胞定位和磷酸化的改变明显且不同地相关。值得注意的是,这种磷酸化发生在初级纤毛的基部区域,这可能在感知机械刺激中发挥核心细胞作用。在长期OC条件下,YAP持续募集到细胞连接、细胞核和纤毛中,这强烈表明其在维持CEC稳态中的特定作用。了解这些生物物理影响有助于识别促进稳态并增强CEC功能的分子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40d3/11681211/8a7417503be5/41598_2024_82269_Fig1_HTML.jpg

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