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Direct Promoter Repression by BCL11A Controls the Fetal to Adult Hemoglobin Switch

机译:BCL11A直接启动子抑制控制胎儿到成人的血红蛋白转换

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摘要

Fetal hemoglobin (HbF, α2γ2) level is genetically controlled and modifies severity of adult hemoglobin (HbA, α2β2) disorders, sickle cell disease and β-thalassemia. Common genetic variation affects expression of BCL11A, a regulator of HbF silencing. To uncover how BCL11A supports the developmental switch from γ- to β- globin, we use a functional assay and protein binding microarray to establish a requirement for a zinc-finger cluster in BCL11A in repression, and identify a preferred DNA recognition sequence. This motif appears in embryonic and fetal-expressed globin promoters, and is duplicated in γ-globin promoters. The more distal of the duplicated motifs is mutated in individuals with hereditary persistence of fetal hemoglobin. Using the CUT&RUN approach to map protein binding sites in erythroid cells, we demonstrate BCL11A occupancy preferentially at the distal motif, which can be disrupted by editing the promoter. Our findings reveal that direct γ-globin gene promoter repression by BCL11A underlies hemoglobin switching.
机译:胎儿血红蛋白(HbF,α2γ2)的水平受到遗传控制,可改变成人血红蛋白(HbA,α2β2)疾病,镰状细胞病和β地中海贫血的严重程度。常见的遗传变异会影响HbF沉默调节因子BCL11A的表达。为了揭示BCL11A如何支持从γ-球蛋白向β-球蛋白的发育转换,我们使用功能测定和蛋白质结合微阵列来建立BCL11A中锌指簇抑制的要求,并鉴定优选的DNA识别序列。该基序出现在胚胎和胎儿表达的球蛋白启动子中,并在γ-球蛋白启动子中重复。在具有胎儿血红蛋白的遗传性持久性的个体中,复制的基序的更远端突变。使用CUT&RUN方法在红细胞中定位蛋白结合位点,我们证明BCL11A优先位于远端基序,可通过编辑启动子来破坏它。我们的发现表明BCL11A直接抑制γ-球蛋白基因启动子是血红蛋白转换的基础。

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