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Systematic Functional Dissection of Common Genetic Variation Affecting Red Blood Cell Traits

机译:影响红细胞特征的常见遗传变异的系统功能解剖

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Genome-wide association studies (GWAS) have successfully identified thousands of associations between common genetic variants and human disease phenotypes, but the majority of these variants are non-coding, often requiring genetic fine-mapping, epigenomic profiling, and individual reporter assays to delineate potential causal variants. We employ a massively parallel reporter assay (MPRA) to simultaneously screen 2,756 variants in strong linkage disequilibrium with 75 sentinel variants associated with red blood cell traits. We show that this assay identifies elements with endogenous erythroid regulatory activity. Across 23 sentinel variants, we conservatively identified 32 MPRA functional variants (MFVs). We used targeted genome editing to demonstrate endogenous enhancer activity across 3 MFVs that predominantly affect the transcription of SMIM1, RBM38, and CD164. Functional follow-up of RBM38 delineates a key role for this gene in the alternative splicing program occurring during terminal erythropoiesis. Finally, we provide evidence for how common GWAS-nominated variants can disrupt cell-type-specific transcriptional regulatory pathways.
机译:全基因组关联研究(GWAS)已成功鉴定出数千种常见遗传变异与人类疾病表型之间的关联,但是这些变异中的大多数是非编码性的,通常需要遗传精细映射,表观基因组分析和个别报告基因分析来进行描述潜在的因果变体。我们采用大规模平行报告基因检测(MPRA),同时筛选2756种在强连锁不平衡中的变体,以及与红细胞性状相关的75个前哨变体。我们表明,该测定法鉴定具有内源性类红细胞调节活性的元素。在23个哨兵变体中,我们保守地确定了32个MPRA功能变体(MFV)。我们使用靶向基因组编辑来证明跨3个MFV的内源性增强子活性,这些活性主要影响SMIM1,RBM38和CD164的转录。 RBM38的功能性随访描述了该基因在终末红细胞生成过程中发生的替代剪接程序中的关键作用。最后,我们提供证据证明常见的GWAS提名变体如何破坏细胞类型特异性的转录调控途径。

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