Zhang J W, Stamatoyannopoulos G, Anagnou N P
Department of Medicine, University of Washington, Seattle 98195.
Blood. 1988 Sep;72(3):983-8.
We have identified and molecularly characterized a novel deletion in the beta-globin gene cluster that increases fetal hemoglobin (HbF) synthesis in a 24-year-old Laotian man who is heterozygous for this mutation. The patient is asymptomatic with a mild anemia, hypochromia, and microcytosis (Ht = 39%, MCH = 22.8 pg, MCV = 71 fl), normal levels of HbA2 (3.0%) and 11.5% HbF (G gamma A gamma ratio 60 to 40), with heterocellular distribution (52% F cells). Extensive restriction endonuclease mapping defined the 5' breakpoint within the IVS II of the delta-globin gene, between positions 775 to 781 very similar to the 5' breakpoint of the Sicilian delta beta-thalassemia. However, the 3' breakpoint was localized between two Pst I sites 4.7 kb 3' of the beta-globin gene, thus ending about 0.7 kb upstream from the 3' breakpoint of the Sicilian delta beta-thalassemia. This results in a 12.5 kb deletion of DNA. It is of interest that the 5' breakpoint of the deletion residues within an AT-rich region which has been proposed as a specific recognition signal for recombination events, while the 3' breakpoint lies within a cluster of L1 repetitive sequences (formerly known as Kpn I family repeats). The presence of the 3' breakpoints of several other deletions within this region of L1 repeats also suggests that such sequences might serve as hot spots for recombination and eventually lead to thalassemia deletions. The similarity of the 5' and 3' breakpoints of these delta beta-thalassemias underscores the putative regulatory role of the deleted and juxtaposed sequences on the expression of the gamma-globin genes in adult life.
我们已经鉴定并从分子层面表征了β-珠蛋白基因簇中的一种新型缺失,该缺失增加了一名24岁老挝男性胎儿血红蛋白(HbF)的合成,该男性为此突变的杂合子。患者无症状,有轻度贫血、低色素血症和小红细胞症(血细胞比容 = 39%,平均红细胞血红蛋白含量 = 22.8 pg,平均红细胞体积 = 71 fl),HbA2水平正常(3.0%),HbF为11.5%(GγAγ比例为60比40),呈异细胞分布(52% F细胞)。广泛的限制性内切酶图谱确定了δ-珠蛋白基因IVS II内5'断点,位于775至781位之间,与西西里δβ地中海贫血的5'断点非常相似。然而,3'断点位于β-珠蛋白基因3'端4.7 kb处的两个Pst I位点之间,因此在西西里δβ地中海贫血3'断点上游约0.7 kb处结束。这导致了12.5 kb的DNA缺失。有趣的是,缺失的5'断点位于一个富含AT的区域内,该区域被认为是重组事件的特定识别信号,而3'断点位于L1重复序列簇内(以前称为Kpn I家族重复序列)。该区域L1重复序列内其他几个缺失的3'断点的存在也表明,这些序列可能是重组热点,并最终导致地中海贫血缺失。这些δβ地中海贫血5'和3'断点的相似性强调了缺失和并列序列在成人期对γ-珠蛋白基因表达的假定调节作用。