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复杂的调节相互作用塑造关节形态并影响骨关节炎疾病风险。

Complex regulatory interactions at shape joint morphology and osteoarthritis disease risk.

作者信息

Coveney Clarissa R, Maridas David, Chen Hao, Muthuirulan Pushpanathan, Liu Zun, Jagoda Evelyn, Yarlagadda Siddharth, Movahhedi Mohammadreza, Proffen Benedikt, Rosen Vicki, Kiapour Ata M, Capellini Terence D

机构信息

Department of Human Evolutionary Biology, Harvard University, Cambridge, MA, USA.

Broad Institute of MIT and Harvard, Cambridge, MA, USA.

出版信息

bioRxiv. 2024 Nov 1:2024.11.01.621374. doi: 10.1101/2024.11.01.621374.

Abstract

Our ability to pinpoint causal variants using GWAS is dependent on understanding the dynamic epigenomic and epistatic context of each associated locus. Being the best studied skeletal locus, associates with many diseases and has a complex cis-regulatory architecture. We interrogate regulatory interactions and model disease variants and . For all regulatory regions we see that local epigenetic activation/repression impacts patterns of joint-specific expression and disease risk. By modeling the most cited risk variant in mice we found that it had no impact on expression, joint morphology, or disease. Yet, we identified significant epistatic expression interactions between this risk variant and others lying within regulatory regions subject to repression or activation. These findings are important lessons on how regulatory interactions and local epistasis work in the etiology of disease risk, and that assessment of individual variants of high GWAS significance need not alone be considered causal.

摘要

我们利用全基因组关联研究(GWAS)精准定位因果变异的能力取决于对每个相关基因座动态表观基因组和上位性背景的理解。作为研究最深入的骨骼基因座,它与多种疾病相关,并且具有复杂的顺式调控结构。我们探究了调控相互作用,并对疾病变异体进行建模。对于所有调控区域,我们发现局部表观遗传激活/抑制会影响关节特异性表达模式和疾病风险。通过在小鼠中对引用最多的风险变异体进行建模,我们发现它对表达、关节形态或疾病没有影响。然而,我们在这个风险变异体与受抑制或激活的调控区域内的其他变异体之间发现了显著的上位性表达相互作用。这些发现为调控相互作用和局部上位性在疾病风险病因学中的作用提供了重要经验教训,并且具有高GWAS显著性的个体变异体评估不一定单独被视为具有因果关系。

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