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TCF4 三核苷酸重复扩展和紫外线照射增加了 Fuchs 内皮角膜营养不良对铁死亡的易感性。

TCF4 trinucleotide repeat expansions and UV irradiation increase susceptibility to ferroptosis in Fuchs endothelial corneal dystrophy.

机构信息

Department of Pharmaceutical Sciences and Experimental Therapeutics, College of Pharmacy, University of Iowa, Iowa City, IA, 52242, USA.

Department of Ophthalmology & Visual Sciences, Carver College of Medicine, University of Iowa, Iowa City, IA, 52242, USA; Iowa Lions Eye Bank, Coralville, IA, 52241, USA.

出版信息

Redox Biol. 2024 Nov;77:103348. doi: 10.1016/j.redox.2024.103348. Epub 2024 Sep 10.

Abstract

Fuchs endothelial corneal dystrophy (FECD), the leading indication for corneal transplantation in the U.S., causes loss of corneal endothelial cells (CECs) and corneal edema leading to vision loss. FECD pathogenesis is linked to impaired response to oxidative stress and environmental ultraviolet A (UVA) exposure. Although UVA is known to cause nonapoptotic oxidative cell death resulting from iron-mediated lipid peroxidation, ferroptosis has not been characterized in FECD. We investigated the roles of genetic background and UVA exposure in causing CEC degeneration in FECD. Using ungenotyped FECD patient surgical samples, we found increased levels of cytosolic ferrous iron (Fe) and lipid peroxidation in end-stage diseased tissues compared with healthy controls. Using primary and immortalized cell cultures modeling the TCF4 intronic trinucleotide repeat expansion genotype, we found altered gene and protein expression involved in ferroptosis compared to controls including elevated levels of Fe, basal lipid peroxidation, and the ferroptosis-specific marker transferrin receptor 1. Increased cytosolic Fe levels were detected after physiologically relevant doses of UVA exposure, indicating a role for ferroptosis in FECD disease progression. Cultured cells were more prone to ferroptosis induced by RSL3 and UVA than controls, indicating ferroptosis susceptibility is increased by both FECD genetic background and UVA. Finally, cell death was preventable after RSL3 induced ferroptosis using solubilized ubiquinol, indicating a role for anti-ferroptosis therapies in FECD. This investigation demonstrates that genetic background and UVA exposure contribute to iron-mediated lipid peroxidation and cell death in FECD, and provides the basis for future investigations of ferroptosis-mediated disease progression in FECD.

摘要

福斯曼角膜内皮营养不良症(FECD)是美国角膜移植的主要适应证,可导致角膜内皮细胞(CEC)丧失和角膜水肿,从而导致视力丧失。FECD 的发病机制与氧化应激和环境中紫外线 A(UVA)暴露的反应受损有关。尽管已知 UVA 会导致铁介导的脂质过氧化引起的非凋亡性氧化细胞死亡,但在 FECD 中尚未对铁死亡进行描述。我们研究了遗传背景和 UVA 暴露在导致 FECD 的 CEC 变性中的作用。使用未基因分型的 FECD 患者手术样本,我们发现与健康对照组相比,晚期病变组织中的细胞质亚铁(Fe)和脂质过氧化水平升高。使用模拟 TCF4 内含子三核苷酸重复扩展基因型的原代和永生化细胞培养物,我们发现与对照组相比,涉及铁死亡的基因和蛋白表达发生改变,包括 Fe 水平升高、基础脂质过氧化和铁死亡特异性标记物转铁蛋白受体 1。在生理相关剂量的 UVA 暴露后检测到细胞质 Fe 水平升高,表明铁死亡在 FECD 疾病进展中起作用。与对照组相比,培养细胞在 RSL3 和 UVA 诱导的铁死亡中更易发生,表明 FECD 遗传背景和 UVA 均可增加铁死亡易感性。在用可溶 ubiquinol 处理 RSL3 诱导的铁死亡后,细胞死亡可预防,表明抗铁死亡疗法在 FECD 中的作用。这项研究表明,遗传背景和 UVA 暴露导致 FECD 中的铁介导的脂质过氧化和细胞死亡,并为未来研究 FECD 中的铁死亡介导的疾病进展提供了基础。

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