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蛋白质介导的类胡萝卜素递送可抑制视网膜色素上皮细胞中脂褐素的光诱导氧化。

Protein-Mediated Carotenoid Delivery Suppresses the Photoinducible Oxidation of Lipofuscin in Retinal Pigment Epithelial Cells.

作者信息

Semenov Alexey N, Maksimov Eugene G, Moysenovich Anastasia M, Yakovleva Marina A, Tsoraev Georgy V, Ramonova Alla A, Shirshin Evgeny A, Sluchanko Nikolai N, Feldman Tatiana B, Rubin Andrew B, Kirpichnikov Mikhail P, Ostrovsky Mikhail A

机构信息

Faculty of Biology, M.V. Lomonosov Moscow State University, 1-12 Leninskie Gory, 119991 Moscow, Russia.

Interdisciplinary Scientific and Educational School "Molecular Technologies of the Living Systems and Synthetic Biology", M.V. Lomonosov Moscow State University, 1 Leninskie Gory, 119991 Moscow, Russia.

出版信息

Antioxidants (Basel). 2023 Feb 8;12(2):413. doi: 10.3390/antiox12020413.

Abstract

Lipofuscin of retinal pigment epithelium (RPE) cells is a complex heterogeneous system of chromophores which accumulates as granules during the cell's lifespan. Lipofuscin serves as a source of various cytotoxic effects linked with oxidative stress. Several age-related eye diseases such as macular degeneration of the retina, as well as some severe inherited eye pathologies, are accompanied by a significant increase in lipofuscin granule concentration. The accumulation of carotenoids in the RPE could provide an effective antioxidant protection against lipofuscin cytotoxic manifestations. Given the highly lipophilic nature of carotenoids, their targeted delivery to the vulnerable tissues can potentially be assisted by special proteins. In this study, we demonstrate how protein-mediated delivery of zeaxanthin using water-soluble carotenoid-binding protein (BmCBP-ZEA) suppresses the photoinducible oxidative stress in RPE cells caused by irradiation of lipofuscin with intense white light. We implemented fluorescence lifetime imaging of the RPE cell culture ARPE-19 fed with lipofuscin granules and then irradiated by white light with and without the addition of BmCBP-ZEA. We demonstrate that after irradiation the mean fluorescence lifetime of lipofuscin significantly increases, while the presence of BmCBP-ZEA at 200 nM concentration suppresses the increase in the average lifetime of lipofuscin fluorescence, indicating an approx. 35% inhibition of the oxidative stress. This phenomenon serves as indirect yet important evidence of the efficiency of the protein-mediated carotenoid delivery into pigment epithelium cells.

摘要

视网膜色素上皮(RPE)细胞中的脂褐素是一种复杂的发色团异质系统,在细胞生命周期中以颗粒形式积累。脂褐素是与氧化应激相关的各种细胞毒性作用的来源。几种与年龄相关的眼部疾病,如视网膜黄斑变性,以及一些严重的遗传性眼部疾病,都伴随着脂褐素颗粒浓度的显著增加。RPE中类胡萝卜素的积累可以提供有效的抗氧化保护,抵御脂褐素的细胞毒性表现。鉴于类胡萝卜素具有高度亲脂性,特殊蛋白质可能有助于将它们靶向递送至脆弱组织。在本研究中,我们展示了使用水溶性类胡萝卜素结合蛋白(BmCBP-ZEA)通过蛋白质介导递送玉米黄质如何抑制因用强光照射脂褐素而在RPE细胞中产生的光诱导氧化应激。我们对用脂褐素颗粒喂养然后在添加和不添加BmCBP-ZEA的情况下用白光照射的RPE细胞培养物ARPE-19进行了荧光寿命成像。我们证明,照射后脂褐素的平均荧光寿命显著增加,而浓度为200 nM的BmCBP-ZEA的存在抑制了脂褐素荧光平均寿命的增加,表明氧化应激受到了约35%的抑制。这一现象间接但有力地证明了蛋白质介导的类胡萝卜素递送至色素上皮细胞的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a34/9952040/991800cd5746/antioxidants-12-00413-g001.jpg

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