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一甲基丁二酸酯诱导银屑病药物对视网膜色素上皮细胞胱氨酸/谷氨酸交换蛋白 SLC7A11 的诱导作用。

Induction of the cystine/glutamate exchanger SLC7A11 in retinal pigment epithelial cells by the antipsoriatic drug monomethylfumarate.

机构信息

Departments of Biochemistry and Molecular Biology, Georgia Health Sciences University, Augusta, GA 30912, USA.

出版信息

Invest Ophthalmol Vis Sci. 2013 Mar 1;54(3):1592-602. doi: 10.1167/iovs.12-11289.

Abstract

PURPOSE

Oxidative stress is a common pathological factor in degenerative retinal diseases; therefore, identifying novel strategies for its limitation is critically important and highly relevant clinically. Along these lines, our present goal was to evaluate the effect(s) of the fumarate ester and antipsoriatic agent monomethylfumarate (MMF) on the expression and functional activity of the cystine/glutamate exchanger SLC7A11 (system xc(-)), a transport system critical to potentiation of antioxidant signaling in retina.

METHODS

ARPE-19 and primary mouse RPE cells were cultured in the presence or absence of varying concentrations of MMF (0-5000 μM) for 0 to 24 hours. MMF (10 mM) was also delivered intravitreally to mouse eyes. RT-PCR, radiolabeled uptake, Western blotting, and glutathione (GSH) assays were then used to evaluate the effects of MMF on endogenous antioxidant machinery.

RESULTS

MMF induced system xc(-), Nrf2, and hypoxia-inducible factor 1α (Hif-1α) in cultured RPE cells. Additionally, the compound was recognized as a transportable substrate by the Na(+)-coupled monocarboxylate transporter SLC5A8 (SMCT1). In vivo these factors were evidenced by a significant increase in retinal levels of GSH.

CONCLUSIONS

MMF stimulates multiple pathways in retinal cells that potentiate cellular events leading to the upregulation of genes/mechanisms that function to protect retina against various forms of insult; upregulation of system xc(-) is one such consequence. To our knowledge, this is the first report that fumarate esters, compounds already employed clinically for other indications, are effective in retina via xc(-) induction. This novel, hitherto unknown mechanism helps to explain the antioxidant feature of these compounds and highlights their therapeutic potential in retina.

摘要

目的

氧化应激是退行性视网膜疾病的常见病理因素;因此,寻找限制其发生的新策略具有重要的临床意义。基于这一思路,我们目前的目的是评估富马酸酯和抗银屑病药物单甲基富马酸(MMF)对胱氨酸/谷氨酸交换体 SLC7A11(系统 xc(-))表达和功能活性的影响,该转运系统对增强视网膜抗氧化信号至关重要。

方法

在存在或不存在不同浓度 MMF(0-5000 μM)的情况下培养 ARPE-19 和原代小鼠 RPE 细胞 0 至 24 小时。还将 MMF(10 mM)眼内注射到小鼠眼睛中。然后使用 RT-PCR、放射性标记摄取、Western 印迹和谷胱甘肽(GSH)测定来评估 MMF 对内源性抗氧化机制的影响。

结果

MMF 在培养的 RPE 细胞中诱导系统 xc(-)、Nrf2 和缺氧诱导因子 1α(Hif-1α)。此外,该化合物被鉴定为 Na(+)-偶联单羧酸转运体 SLC5A8(SMCT1)的可转运底物。在体内,这些因素表现为视网膜中 GSH 水平显著增加。

结论

MMF 刺激视网膜细胞中的多种途径,增强导致基因/机制上调的细胞事件,这些机制可保护视网膜免受各种形式的损伤;系统 xc(-)的上调就是这样的结果之一。据我们所知,这是首次报道富马酸酯,已经用于其他适应症的化合物,通过诱导 xc(-)在视网膜中有效。这种新的、迄今未知的机制有助于解释这些化合物的抗氧化特性,并强调了它们在视网膜中的治疗潜力。

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