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A regulatory SNP causes a human genetic disease by creating a new transcriptional promoter

机译:调节性SNP通过创建新的转录启动子导致人类遗传疾病

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We describe a pathogenetic mechanism underlying a variant form of the inherited blood disorder a thalassemia. Association studies of affected individuals from Melanesia localized the disease trait to the telomeric region of human chromosome 16, which includes the alpha-globin gene cluster, but no molecular defects were detected by conventional approaches. After resequencing and using a. combination of chromatin immunoprecipitation and expression analysis on a tiled oligonucleotide array, we identified a gain-of-function regulatory single-nucleotide polymorphism (rSNP) in a nongenic region between the alpha-globin genes and their upstream regulatory elements. The rSNP creates a new promoterlike element that interferes with normal activation of at[ downstream alpha-like globin genes. Thus, our work illustrates a strategy for distinguishing between neutral and functionally important rSNPs, and it also identifies a pathogenetic mechanism that could potentially underlie other genetic diseases.
机译:我们描述了遗传性血液病地中海贫血的变异形式的致病机制。来自美拉尼西亚的受影响个体的关联研究将疾病特征定位于人类染色体16的端粒区域,端粒区域包括α-珠蛋白基因簇,但常规方法未检测到分子缺陷。重新排序并使用后。结合染色质免疫沉淀和平铺寡核苷酸阵列上的表达分析,我们在α-珠蛋白基因与其上游调控元件之间的非基因区域中鉴定了功能增强的调控单核苷酸多态性(rSNP)。 rSNP产生了新的启动子样元件,其干扰了下游α样球蛋白基因的正常激活。因此,我们的工作阐明了区分中性和功能上重要的rSNP的策略,还鉴定了可能是其他遗传疾病的潜在致病机制。

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