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Novel large deletions in the human alpha-globin gene cluster: Clarifying the HS-40 long-range regulatory role in the native chromosome environment.

机译:人类α-珠蛋白基因簇中的新型大缺失:阐明HS-40在天然染色体环境中的远程调节作用。

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摘要

Globin genes, which encode the protein subunits of hemoglobin (Hb), are organized in two different gene clusters and present a coordinated and differential pattern of expression during development. Concerning the human alpha-globin gene cluster (located at chromosome region 16p13.3), four upstream highly conserved elements known as multispecies conserved sequences (MCS-R1-4) or DNase I hypersensitive sites (HSs) are implicated in the long-range regulation of downstream gene expression. However, only the absence of the MCS-R2 site (HS-40) has proven to drastically downregulate the expression of those genes, and consequently, it has been regarded as the major and crucial distal regulatory element. In this study, Multiplex Ligation-dependent Probe Amplification was used to screen for deletions in the telomeric region of the short arm of chromosome 16, in an attempt to explain the alpha-thalassemia or the HbH disease present in a group of Portuguese patients. We report four novel and five uncommon deletions that remove the alpha-globin distal regulatory elements and/or the complete alpha-globin gene cluster. Interestingly, one of them occurred de novo and removes all HSs except HS-10, while other eliminates only the HS-40 site, the latter being replaced by the insertion of a 39 nucleotide orphan sequence. Our results demonstrate that HS-10 alone does not significantly enhance the alpha-globin gene expression. The absence of HS-40 in homozygosity, found in a patient with Hb H disease, strongly downregulates the expression of alpha-globin genes but it is not associated with a complete absence of alpha-globin chain production. The study of naturally occurring deletions in this region is of great interest to understand the role of each upstream regulatory element in the native human erythroid environment.
机译:球蛋白基因编码血红蛋白(Hb)的蛋白质亚基,被组织在两个不同的基因簇中,并在发育过程中呈现出协调和差异的表达模式。关于人类α-珠蛋白基因簇(位于染色体区域16p13.3),长距离涉及四个上游高度保守的元素,称为多物种保守序列(MCS-R1-4)或DNase I超敏位点(HSs)下游基因表达的调控。然而,仅MCS-R2位点(HS-40)的缺失被证明能大幅下调那些基因的表达,因此,它被认为是主要且至关重要的远端调控元件。在这项研究中,多重连接依赖性探针扩增被用于筛选16号染色体短臂端粒区域的缺失,以试图解释一组葡萄牙患者中存在的α地中海贫血或HbH疾病。我们报告了四个新颖的​​和五个不常见的删除,删除了alpha珠蛋白远端调节元件和/或完整的alpha珠蛋白基因簇。有趣的是,其中一个从头发生并去除了除HS-10以外的所有HS,而其他仅去除了HS-40位点,后者被插入39个核苷酸的孤儿序列所取代。我们的结果表明,单独使用HS-10不会显着增强α-珠蛋白基因的表达。在Hb H病患者中发现纯合子中没有HS-40,强烈下调了α-球蛋白基因的表达,但与完全不存在α-球蛋白链产生无关。研究该区域中自然发生的缺失对于了解每个上游调节元件在天然人红细胞环境中的作用非常重要。

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