University of Copenhagen, Faculty of Health Sciences, ISIM, Copenhagen, Denmark.
Invest Ophthalmol Vis Sci. 2012 Sep 19;53(10):6324-30. doi: 10.1167/iovs.12-10385.
The complement system is closely linked to the pathogenesis of AMD. Several complement genes are expressed in RPE, and complement proteins accumulate in drusen. Further, a common variant of complement factor H (CFH) confers increased risk of developing AMD. Because the mechanisms by which changes in the function of CFH influence development of AMD are unclear, we examined ocular complement expression as a consequence of age in control and CFH null mutant mice.
Gene expression in neuroretinas and RPE/choroid from young and aged WT and Cfh(-/-) C57BL/6J mice was analyzed by microarrays. Expression of a wide range of complement genes was compared with expression in liver.
An age-associated increased expression of complement, particularly C1q, C3, and factor B, in the RPE/choroid coincided with increased expression of the negative regulators Cfh and Cd59a in the neuroretina. Young mice deficient in CFH expressed Cd59a similar to WT, but failed to upregulate Cd59a expression with age. Hepatic expression of Cd59a increased with age regardless of Cfh genotype.
While the connection between CFH deficiency and failure to upregulate CD59a remains unknown, these results suggest that expression of CD59 is tissue-specific and that neuroretinal regulation depends on CFH. This could contribute to the visual functional deficits and morphological changes in the Cfh(-/-) mouse retina that occur with age.
补体系统与 AMD 的发病机制密切相关。几种补体基因在 RPE 中表达,补体蛋白在玻璃膜疣中积累。此外,补体因子 H (CFH) 的常见变体增加了患 AMD 的风险。由于 CFH 功能变化影响 AMD 发展的机制尚不清楚,我们研究了作为对照和 CFH 缺失突变体小鼠年龄相关变化的眼部补体表达。
通过微阵列分析年轻和老年 WT 和 Cfh(-/-) C57BL/6J 小鼠的神经视网膜和 RPE/脉络膜中的基因表达。比较了广泛的补体基因的表达与肝脏中的表达。
与神经视网膜中负调节因子 Cfh 和 Cd59a 的表达一致,RPE/脉络膜中补体(尤其是 C1q、C3 和因子 B)的年龄相关性表达增加。年轻的 CFH 缺乏小鼠与 WT 相似地表达 Cd59a,但随着年龄的增长未能上调 Cd59a 的表达。无论 Cfh 基因型如何,肝组织中 Cd59a 的表达均随年龄增长而增加。
尽管 CFH 缺乏与未能上调 CD59a 之间的联系尚不清楚,但这些结果表明 CD59 的表达具有组织特异性,并且神经视网膜的调节取决于 CFH。这可能导致 Cfh(-/-) 小鼠视网膜随年龄增长而出现的视觉功能缺陷和形态变化。