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CD33: Increased inclusion of exon 2 implicates the Ig V-set domain in Alzheimer's disease susceptibility

机译:CD33:增加外显子2的包含牵涉到阿尔茨海默氏病易感性中的Ig V-set域

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摘要

We previously demonstrated that the Alzheimer's disease (AD) associated risk allele, rs3865444C, results in a higher surface density of CD33 on monocytes. Here, we find alternative splicing of exon 2 to be the primary mechanism of the genetically driven differential expression of CD33 protein. We report that the risk allele, rs3865444C, is associated with greater cell surface expression of CD33 in both subjects of European and African-American ancestry and that there is a single haplotype influencing CD33 surface expression. A meta-analysis of the two populations narrowed the number of significant SNPs in high linkage disequilibrium (LD) (r2 0.8) with rs3865444 to just five putative causal variants associated with increased protein expression. Using gene expression data from flow-sorted CD14+CD16- monocytes from 398 healthy subjects of three populations, we show that the rs3865444C risk allele is strongly associated with greater expression of CD33 exon 2 (pMETA = 2.36 × 10-60). Western blotting confirms increased protein expression of the full-length CD33 isoform containing exon 2 relative to the rs3865444C allele (P 0.0001). Of the variants in strong LD with rs3865444, rs12459419, which is located in a putative SRSF2 splice site of exon 2, is the most likely candidate to mediate the altered alternative splicing of CD33's Immunoglobulin V-set domain 2 and ultimately influence AD susceptibility.
机译:我们先前证明,与阿尔茨海默氏病(AD)相关的风险等位基因rs3865444C,导致单核细胞上CD33的表面密度更高。在这里,我们发现外显子2的选择性剪接是CD33蛋白遗传驱动差异表达的主要机制。我们报告,风险等位基因,rs3865444C,与欧洲和非裔美国人血统的受试者中更大的CD33细胞表面表达相关,并且有一个单倍型影响CD33表面表达。对这两个种群的荟萃分析将高连锁不平衡(LD)(r2> 0.8)中具有rs3865444的重要SNP的数量缩小到与蛋白质表达增加相关的五个假定的因果变体。使用来自三个人群的398位健康受试者的按流分类的CD14 + CD16-单核细胞的基因表达数据,我们显示rs3865444C风险等位基因与CD33外显子2的更高表达密切相关(pMETA = 2.36×10-60)。 Western印迹证实相对于rs3865444C等位基因,含外显子2的全长CD33同工型的蛋白质表达增加(P <0.0001)。在具有rs3865444的强LD中的变体中,位于外显子2的推定SRSF2剪接位点的rs12459419最有可能成为调解CD33免疫球蛋白V-set结构域2的可变剪接并最终影响AD易感性的候选基因。

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