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光诱导的视网膜变性与铁代谢基因表达、铁蛋白水平和衰老的变化相关。

Light-induced retinal degeneration correlates with changes in iron metabolism gene expression, ferritin level, and aging.

机构信息

Institut National de la Santé et de la Recherche Médicale, U872, Paris, France.

出版信息

Invest Ophthalmol Vis Sci. 2011 Mar 10;52(3):1261-74. doi: 10.1167/iovs.10-5705.

Abstract

PURPOSE

Retinal degeneration is associated with iron accumulation in several rodent models in which iron-regulating proteins are impaired. Oxidative stress is catalyzed by unbound iron.

METHODS

The role of the heavy chain of ferritin, which sequesters iron, in regulating the thickness of the photoreceptor nuclear layer in the 4- and 16-month-old wild-type H ferritin (HFt(+/+)) and heterozygous H ferritin (HFt(+/-)) mice was investigated, before and 12 days after exposure to 13,000-lux light for 24 hours. The regulation of gene expression of the various proteins involved in iron homeostasis, such as transferrin, transferrin receptor, hephaestin, ferroportin, iron regulatory proteins 1 and 2, hepcidin, ceruloplasmin, and heme-oxygenase 1, was analyzed by quantitative (q)RT-PCR during exposure (2, 12, and 24 hours) and 24 hours after 1 day of exposure in the 4-month-old HFt(+/+) and HFt(+/-) mouse retinas.

RESULTS

Retinal degeneration in the 4-month-old HFt(+/-) mice was more extensive than in the HFt(+/+) mice. Yet, it was more extensive in both of the 16-month-old mouse groups, revealing the combined effect of age and excessive light. Injury caused by excessive light modified the temporal gene expression of iron-regulating proteins similarly in the HFt(+/-) and HFt(+/+) mice.

CONCLUSIONS

Loss of one allele of H ferritin appears to increase light-induced degeneration. This study highlighted that oxidative stress related to light-induced injury is associated with major changes in gene expression of iron metabolism proteins.

摘要

目的

在几种铁调节蛋白受损的啮齿动物模型中,视网膜退化与铁积累有关。氧化应激是由未结合的铁催化的。

方法

研究了铁蛋白重链(铁蛋白重链可隔离铁)在调节 4 个月和 16 个月大的野生型 H 铁蛋白(HFt(+/+))和杂合 H 铁蛋白(HFt(+/-))小鼠的光感受器核层厚度中的作用,在暴露于 13000 勒克斯光 24 小时之前和之后 12 天。在暴露(2、12 和 24 小时)期间和暴露后 1 天的 24 小时内,通过定量(q)RT-PCR 分析了各种铁稳态蛋白(如转铁蛋白、转铁蛋白受体、hephaestin、亚铁蛋白、铁调节蛋白 1 和 2、hepcidin、铜蓝蛋白和血红素加氧酶 1)的基因表达调节,在 4 个月大的 HFt(+/+)和 HFt(+/-)鼠视网膜中。

结果

4 个月大的 HFt(+/-)小鼠的视网膜退化比 HFt(+/+)小鼠更广泛。然而,在 16 个月大的两组小鼠中,情况更为严重,这揭示了年龄和过量光照的综合影响。过量光照引起的损伤在 HFt(+/-)和 HFt(+/+)小鼠中同样改变了铁调节蛋白的时间基因表达。

结论

失去一个 H 铁蛋白等位基因似乎会增加光诱导的退化。本研究强调,与光诱导损伤相关的氧化应激与铁代谢蛋白基因表达的重大变化有关。

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