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Translating GWAS in rheumatic disease: approaches to establishing mechanism and function for genetic associations with ankylosing spondylitis

机译:在风湿性疾病中翻译GWAS:建立与强直性脊柱炎遗传关联的机制和功能的方法

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摘要

Ankylosing spondylitis (AS) is a highly heritable chronic inflammatory arthritis characterized by osteoproliferation, fusion of affected joints and systemic manifestations. Many disease associations for AS have been reported through genome-wide association studies; however, identifying modulated genes and functional mechanism remains challenging. This review summarizes current genetic associations involving AS and describes strategic approaches for functional follow-up of disease-associated variants. Fine mapping using methods leveraging Bayesian approaches are outlined. Evidence highlighting the importance of context specificity for regulatory variants is reviewed, noting current evidence in AS for the relevant cell and tissue type to conduct such analyses. Technological advances for understanding the regulatory landscape within which functional variants may act are discussed using exemplars. Approaches include defining regulatory elements based on chromatin accessibility, effects of variants on genes at a distance through evidence of physical interactions (chromatin conformation capture), expression quantitative trait loci mapping and single-cell methodologies. Opportunities for mechanistic studies to investigate the function of specific variants, regulatory elements and genes enabled by genome editing using clustered regularly interspaced short palindromic repeats/Cas9 are also described. Further progress in our understanding of the genetics of AS through functional genomic and epigenomic approaches offers new opportunities to understand mechanism and develop innovative treatments.
机译:强直性脊柱炎(AS)是一种高度可遗传的慢性炎症性关节炎,其特征是骨增生,受影响的关节融合和全身表现。通过全基因组关联研究已经报道了许多AS疾病关联。然而,鉴定调节基因和功能机制仍然具有挑战性。这篇综述总结了当前涉及AS的遗传关联,并描述了对疾病相关变体进行功能随访的战略方法。概述了利用贝叶斯方法的精细映射。本文回顾了强调背景特异性对于调控变异的重要性的证据,并指出了目前AS中有关进行此类分析的相关细胞和组织类型的证据。使用示例讨论了理解功能变体可在其中起作用的调节环境的技术进步。方法包括基于染色质可及性,通过物理相互作用证据(染色质构象捕获),远距离变异对基因的影响,表达定量性状基因座作图和单细胞方法来定义调控元件。还介绍了机械研究的机会,以研究通过使用聚类规则间隔的短回文重复序列/ Cas9进行基因组编辑而实现的特定变体,调控元件和基因的功能。通过功能基因组学和表观基因组学方法对AS遗传学的进一步了解为了解机制和开发创新疗法提供了新的机会。

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