首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Synergic effect of polymorphisms in ERCC6 5 ' flanking region and complement factor H on age-related macular degeneration predisposition
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Synergic effect of polymorphisms in ERCC6 5 ' flanking region and complement factor H on age-related macular degeneration predisposition

机译:ERCC6 5'侧翼区多态性和补体因子H对年龄相关性黄斑变性易感性的协同作用

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This study investigates age-related macular degeneration (AMD) genetic risk factors through identification of a functional single-nucleotide polymorphism (SNP) and its disease association. We chose ERCC6 because of its roles in the aging process, DNA repair, and ocular degeneration from the gene disruption. Bioinformatics indicated a putative binding-element alteration on the sequence containing C-6530 > G SNP in the 5 ' flanking region of ERCC6 from Sp1 on the C allele to SP1, GATA-1, and OCT-1 on the G allele. Electrophoretic mobility shift assays displayed distinctive C and G allele-binding patterns to nuclear proteins. Luciferase expression was higher in the vector construct containing the G allele than that containing the C allele. A cohort of 460 advanced AMD cases and 269 age-matched controls was examined along with pathologically diagnosed 57 AMD and 18 age-matched non-AMD archived cases. ERCC6 C-6530 > G was associated with AMD susceptibility, both independently and through interaction with an SNP (rs380390) in the complement factor H (CFH) intron reported to be highly associated with AMD. A disease odds ratio of 23 was conferred by homozygozity for risk alleles at both ERCC6 and CFH compared with homozygozity for nonrisk alleles. Enhanced ERCC6 expression was observed in lymphocytes from healthy donors bearing ERCC6 C-6530 > G alleles. Intense immunostaining of ERCC6 was also found in AMD eyes from ERCC6 C-6530 > G carriers. The strong AMD predisposition conferred by the ERCC6 and CFH SNPs may result from biological epistasis, because ERCC6 functions in universal transcription as a component of RNA pol I transcription complex.
机译:本研究通过鉴定功能性单核苷酸多态性(SNP)及其疾病关联性来研究年龄相关性黄斑变性(AMD)遗传危险因素。我们之所以选择ERCC6,是因为它在衰老过程,DNA修复和基因破坏引起的眼部退化中发挥了作用。生物信息学表明,在ERCC6的5'侧翼区域中从C等位基因上的Sp1到SP等位基因上的SP1,GATA-1和OCT-1的序列中,包含C-6530> G SNP的序列被推定为结合元素改变。电泳迁移率变动分析显示出与核蛋白不同的C和G等位基因结合模式。在含有G等位基因的载体构建体中,萤光素酶的表达高于含有C等位基因的载体。检查了460例晚期AMD病例和269例年龄匹配的对照,以及经病理学诊断的57例AMD和18例年龄匹配的非AMD存档病例。 ERCC6 C-6530> G与AMD易感性相关,既独立又通过与据报道与AMD高度相关的补体因子H(CFH)内含子中的SNP(rs380390)相互作用来实现。 ERCC6和CFH的风险等位基因的纯合子与非风险等位基因的纯合子相比,疾病几率为23。在携带ERCC6 C-6530> G等位基因的健康供体的淋巴细胞中观察到ERCC6表达增强。在ERCC6 C-6530> G携带者的AMD眼睛中也发现了ERCC6的强烈免疫染色。 ERCC6和CFH SNP赋予AMD的强大易感性可能是由于生物上位所致,因为ERCC6在普遍转录中起着RNA pol I转录复合物的作用。

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