Ramirez F, O'Donnell J V, Natta C, Bank A
J Clin Invest. 1976 Dec;58(6):1475-81. doi: 10.1172/JCI108604.
Complementary DNA (cDNA) specific for gamma-globin nucleotide sequences has been prepared by hybridizing total cDNA made from cord blood messenger RNA (mRNA) as template to an excess of normal adult human globin mRNA and recovering the single-stranded cDNA from hydroxylapatite. The specificity of the gamma cDNA for gamma mRNA sequences is strongly supported by the hybridization of this cDNA at low Cot values (Co, concentration of RNA and t, time in seconds) to RNA samples containing large amounts of functional gamma globin mRNA and the lack of hybridization to RNA samples containing little, if any, gamma-globin mRNA. The absence of cross-hybridization of gamma cDNA with alpha, beta, and delta mRNAs is demonstrated by the complete hybridization of the gamma cDNA to mRNA samples completely lacking either alpha or beta and delta mRNA. An estimate of the number of gamma-globin genes in human cellular DNA was obtained by hybridization of purified gamma cDNA to DNA from spleen and white blood cells of normal and beta-thalassemia subjects and measurement of the percent of gamma cDNA hybridized at saturation. The results indicate that there are between one and two gamma-globin genes per total haploid gene DNA equivalent obtained from both normal and beta-thalassemia subjects. These values are consistent with genetic evidence for the presence of multiple gamma gene loci in human cells. The finding that the number of gamma-globin genes in beta-thalassemia DNA is similar to that in nonthalassemia DNA indicates that a deletion of gamma-globin genes cannot account for either the inadequate gamma-globin synthesis or indirectly for the decreased or absent beta-globin synthesis in beta-thalassemia cells.
通过将以脐血信使核糖核酸(mRNA)为模板制备的总互补脱氧核糖核酸(cDNA)与过量的正常成人人类珠蛋白mRNA杂交,并从羟基磷灰石中回收单链cDNA,制备了针对γ-珠蛋白核苷酸序列的互补DNA(cDNA)。这种cDNA在低Cot值(C₀,RNA浓度和t,秒数)下与含有大量功能性γ-珠蛋白mRNA的RNA样品杂交,而与几乎不含或不含γ-珠蛋白mRNA的RNA样品不杂交,有力地支持了γ cDNA对γ mRNA序列的特异性。γ cDNA与α、β和δ mRNA不存在交叉杂交,这通过γ cDNA与完全缺乏α或β和δ mRNA的mRNA样品完全杂交得到证明。通过将纯化的γ cDNA与正常和β地中海贫血患者的脾脏和白细胞DNA杂交,并测量饱和时杂交的γ cDNA百分比,获得了人类细胞DNA中γ-珠蛋白基因数量的估计值。结果表明,从正常和β地中海贫血患者获得的每总单倍体基因DNA当量中,有1到2个γ-珠蛋白基因。这些值与人类细胞中存在多个γ基因座的遗传证据一致。β地中海贫血DNA中γ-珠蛋白基因数量与非地中海贫血DNA中相似的发现表明,γ-珠蛋白基因的缺失不能解释β地中海贫血细胞中γ-珠蛋白合成不足,也不能间接解释β-珠蛋白合成减少或缺乏的原因。