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位于胎儿血红蛋白-3缺失遗传性持续断点3'端的序列具有增强子活性,并且能够改变转基因小鼠中人胎儿γ-珠蛋白基因的发育表达。

Sequences located 3' to the breakpoint of the hereditary persistence of fetal hemoglobin-3 deletion exhibit enhancer activity and can modify the developmental expression of the human fetal A gamma-globin gene in transgenic mice.

作者信息

Anagnou N P, Perez-Stable C, Gelinas R, Costantini F, Liapaki K, Constantopoulou M, Kosteas T, Moschonas N K, Stamatoyannopoulos G

机构信息

Institute of Molecular Biology and Biotechnology, University of Crete, School of Medicine, Heraklion, Greece.

出版信息

J Biol Chem. 1995 Apr 28;270(17):10256-63. doi: 10.1074/jbc.270.17.10256.

Abstract

Expression of fetal gamma-globin genes in individuals with the deletion forms of hereditary persistence of fetal hemoglobin (HPFH) has been attributed either to enhancement by 3' regulatory elements juxtaposed to gamma-globin genes or to deletion of gamma-gene silencers normally residing within the beta-globin gene cluster. In the present study, we tested the hypothesis of imported enhancers downstream of beta-globin gene using the HPFH-3 deletion as a model. The abnormal bridging fragment of 13.6 kilobases (kb) containing the A gamma-gene with its flanking sequences and 6.2 kb of the juxtaposed region was microinjected into fertilized mouse eggs. Twelve transgenic mice positive for the fragment were generated. Samples from 11.5-day yolk sacs, 16-day fetal liver, and adult blood were analyzed for A gamma-mRNA using RNase protection assays. Three mice lacked A gamma expression in the yolk sac indicating non-optimal integration site. Four expressed A gamma-mRNA at the embryonic stage only, while two expressed A gamma-mRNA in both embryonic and fetal liver erythroid cells. Since the A gamma-gene with its normal flanking sequences and in the absence of the locus control region is expressed only in embryonic cells of transgenic mice, these data suggest that the juxtaposed sequences have altered the developmental specificity of the fetal gamma-globin gene. These sequences were further tested for the presence of an enhancer element, by their ability to activate a fusion reporter gene consisting of the CAT gene linked to the gamma-globin gene promoter, in erythroid (K562) and non-erythroid (HeLa) cells. A 0.7-kb region located immediately 3' to the breakpoint, enhanced chloramphenicol acetyltransferase activity by 3-fold in erythroid cells. The enhancer also activated the embryonic epsilon-globin gene promoter by 2-fold but not the adult beta- or delta-globin gene promoters. The enhancer represents a region of previously known complex tandem repeats; in this study we have completed the sequencing of the region encompassing the 0.7-kb enhancer element. Multiple areas of the enhancer region exhibit homology to the core element of the simian virus 40 enhancer and to the sequences of the human 3' A gamma- and the chicken 3' beta-globin enhancers. A consensus binding site for the erythroid specific GATA-1 transcription factor and seven consensus sites for the ubiquitous CP1 transcription factor are also included within the enhancer. These data suggest that these sequences located immediately 3' to the breakpoint of the HPFH-3 deletion, exhibit both the structure and the function of an enhancer, and can modify the developmental specificity of the fetal gamma-globin genes, resulting in their continued expression during adult life.

摘要

遗传性胎儿血红蛋白持续存在(HPFH)缺失形式个体中胎儿γ-珠蛋白基因的表达,要么归因于与γ-珠蛋白基因并列的3'调控元件的增强作用,要么归因于通常位于β-珠蛋白基因簇内的γ基因沉默子的缺失。在本研究中,我们以HPFH - 3缺失为模型,测试了β-珠蛋白基因下游导入增强子的假说。将包含Aγ基因及其侧翼序列和6.2 kb并列区域在内的13.6千碱基(kb)异常桥接片段显微注射到受精的小鼠卵中。产生了12只该片段呈阳性的转基因小鼠。使用核糖核酸酶保护分析,对11.5天的卵黄囊、16天的胎儿肝脏和成年血液样本进行Aγ - mRNA分析。3只小鼠的卵黄囊中缺乏Aγ表达,表明整合位点不理想。4只仅在胚胎阶段表达Aγ - mRNA,而2只在胚胎和胎儿肝脏的红系细胞中均表达Aγ - mRNA。由于带有其正常侧翼序列且无基因座控制区的Aγ基因仅在转基因小鼠的胚胎细胞中表达,这些数据表明并列序列改变了胎儿γ-珠蛋白基因的发育特异性。通过它们在红系(K562)和非红系(HeLa)细胞中激活由与γ-珠蛋白基因启动子相连的CAT基因组成的融合报告基因的能力,进一步测试这些序列中是否存在增强子元件。位于断点紧邻3'端的一个0.7 - kb区域,在红系细胞中使氯霉素乙酰转移酶活性增强了3倍。该增强子还使胚胎ε-珠蛋白基因启动子活性增强了2倍,但对成年β-或δ-珠蛋白基因启动子无此作用。该增强子代表一个先前已知的复杂串联重复区域;在本研究中,我们已完成了包含0.7 - kb增强子元件区域的测序。增强子区域的多个区域与猿猴病毒40增强子的核心元件以及人类3'Aγ-和鸡3'β-珠蛋白增强子的序列具有同源性。增强子内还包含红系特异性GATA - 1转录因子的一个共有结合位点和普遍存在的CP1转录因子的七个共有位点。这些数据表明,位于HPFH - 3缺失断点紧邻3'端的这些序列,兼具增强子的结构和功能,并且可以改变胎儿γ-珠蛋白基因的发育特异性,导致它们在成年期持续表达。

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