Rare predicted loss-of-function and damaging missense variants in CFHR5 associate with protection from age-related macular degeneration.

IF 8.1 1区 生物学 Q1 GENETICS & HEREDITY
American journal of human genetics Pub Date : 2025-05-01 Epub Date: 2025-04-17 DOI:10.1016/j.ajhg.2025.03.016
Aaron M Holleman, Aimee M Deaton, Rachel A Hoffing, Lynne Krohn, Philip LoGerfo, Paul Nioi, Mollie E Plekan, Sebastian Akle Serrano, Simina Ticau, Tony E Walshe, Anna Borodovsky, Lucas D Ward
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引用次数: 0

Abstract

Age-related macular degeneration (AMD) is a leading cause of blindness among older adults worldwide, but treatment options are limited. Genetics studies have implicated the CFH locus, containing CFH and five CFHR genes, CFHR1-5, in AMD. While CFH has been robustly linked with AMD risk, potential additional roles for the CFHR genes remain unclear, obscured by strong linkage disequilibrium across the locus. Investigating rare coding variants can help to identify causal genes in such regions. We used whole-exome sequencing data from 406,952 UK Biobank participants to examine AMD associations with genes at the CFH locus. For each gene, we used burden testing to examine associations of rare (minor-allele frequency [MAF] < 1%) predicted loss-of-function (pLoF) and predicted damaging missense variants with AMD. We considered "broadly defined AMD" (ICD-10 35.3; ncases = 10,700) and "strictly defined AMD" (dry or wet AMD; ncases = 346). Adjusting for CFH-region variants known to independently associate with AMD, we find that CFHR5 rare variant burden significantly associates with a decreased risk of broadly defined AMD (odds ratio [OR] = 0.75, p = 7 × 10-4), with this association primarily driven by pLoF variants. Furthermore, the association of CFHR5 rare variants with AMD protection is estimated to be stronger for individuals with the CFH rs1061170 AMD risk allele (p.Tyr402His [p.Y402H]; interaction p = 0.04). Corresponding analyses of strict AMD were underpowered. However, we observe that thinning of the photoreceptor layer outer segment strongly predicts strict AMD and find that CFHR5 rare variant burden is significantly associated with increased thickness of this retinal layer (+0.34 SD, p = 4 × 10-4, n = 45,365). These findings suggest CFHR5 inhibition as a potential therapeutic approach for AMD.

CFHR5中罕见的预测功能丧失和破坏性错义变异与年龄相关性黄斑变性的保护有关。
年龄相关性黄斑变性(AMD)是全球老年人失明的主要原因,但治疗选择有限。遗传学研究表明,AMD存在CFH位点,包含CFH和CFHR基因CFHR1-5。虽然CFH与AMD风险密切相关,但CFHR基因的潜在其他作用仍不清楚,因为整个位点的连锁不平衡很明显。研究罕见的编码变异可以帮助识别这些区域的致病基因。我们使用来自406,952名UK Biobank参与者的全外显子组测序数据来检测AMD与CFH位点基因的关联。对于每个基因,我们使用负担测试来检查罕见(次要等位基因频率[MAF]病例= 10,700)和“严格定义的AMD”(干性或湿性AMD;Ncases = 346)。调整已知与AMD独立相关的cfh区域变异,我们发现CFHR5罕见变异负担与广义AMD风险降低显著相关(比值比[OR] = 0.75, p = 7 × 10-4),这种关联主要由pLoF变异驱动。此外,CFHR5罕见变异与AMD保护的关联估计在CFH rs1061170 AMD风险等位基因(p.Tyr402His [p.Y402H];交互作用p = 0.04)。相应的严格AMD分析不足。然而,我们观察到光感受器层外段变薄强烈预测AMD,并发现CFHR5罕见变异负担与该视网膜层厚度增加显著相关(+0.34 SD, p = 4 × 10-4, n = 45,365)。这些发现表明CFHR5抑制是AMD的潜在治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
14.70
自引率
4.10%
发文量
185
审稿时长
1 months
期刊介绍: The American Journal of Human Genetics (AJHG) is a monthly journal published by Cell Press, chosen by The American Society of Human Genetics (ASHG) as its premier publication starting from January 2008. AJHG represents Cell Press's first society-owned journal, and both ASHG and Cell Press anticipate significant synergies between AJHG content and that of other Cell Press titles.
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