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Disruption of the Hbs1l-Myb Locus Causes Hereditary Persistence of Fetal Hemoglobin in a Mouse Model

机译:Hbs11l-Myb基因座的破坏在小鼠模型中导致胎儿血红蛋白的遗传性持久性

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摘要

The human β-globin locus is comprised of embryonic, fetal, and adult globin genes, each of which is expressed at distinct stages of pre- and postnatal development. Functional defects in globin proteins or expression results in mild to severe anemia, such as in sickle-cell disease or β-thalassemia, but the clinical symptoms of both disorders are ameliorated by persistent expression of the fetal globin genes. Recent genome-wide association studies (GWAS) identified the intergenic region between the HBS1L and MYB loci as a candidate modifier of fetal hemoglobin expression in adults. However, it remains to be clarified whether the enhancer activity within the HBS1L-MYB regulatory domain contributes to the production of fetal hemoglobin in adults. Here we report a new mouse model of hereditary persistence of fetal hemoglobin (HPFH) in which a transgene was randomly inserted into the orthologous murine Hbs1l-Myb locus. This mutant mouse exhibited typically elevated expression of embryonic globins and hematopoietic parameters similar to those observed in human HPFH. These results support the contention that mutation of the HBS1L-MYB genomic domain is responsible for elevated expression of the fetal globin genes, and this model serves as an important means for the analysis of networks that regulate fetal globin gene expression.
机译:人β-球蛋白基因座由胚胎,胎儿和成人球蛋白基因组成,每个基因在出生前和出生后的不同阶段表达。珠蛋白蛋白或表达的功能缺陷会导致轻度至重度贫血,例如镰状细胞病或β-地中海贫血,但胎儿珠蛋白基因的持续表达可改善两种疾病的临床症状。最近的全基因组关联研究(GWAS)将HBS1L和MYB基因座之间的基因间区域鉴定为成人胎儿血红蛋白表达的候选修饰因子。但是,尚不清楚HBS1L-MYB调节域内的增强子活性是否有助于成人胎儿血红蛋白的产生。在这里,我们报告胎儿血红蛋白(HPFH)的遗传性持久性的新的小鼠模型,其中转基因随机插入直系同源的小鼠Hbs11-Myb基因座中。该突变小鼠通常表现出与人类HPFH中观察到的相似的胚胎球蛋白表达和造血参数升高。这些结果支持以下论点:HBS1L-MYB基因组域的突变导致胎儿珠蛋白基因表达升高,并且该模型作为分析调节胎儿珠蛋白基因表达的网络的重要手段。

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