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首页> 外文期刊>Molecular and Cellular Biology >A fetal globin gene mutation in A gamma nondeletion hereditary persistence of fetal hemoglobin increases promoter strength in a nonerythroid cell.
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A fetal globin gene mutation in A gamma nondeletion hereditary persistence of fetal hemoglobin increases promoter strength in a nonerythroid cell.

机译:胎儿血红蛋白的Aγ不缺失遗传性持久性中的胎儿球蛋白基因突变增加了非红系细胞中的启动子强度。

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Single base substitutions have been identified in the promoter regions of A gamma-globin genes from individuals with certain types of nondeletion A gamma hereditary persistence of fetal hemoglobin (HPFH). The presence of these mutations is closely associated with the A gamma HPFH phenotype, but proof that they are the nondeletion HPFH determinants is lacking. To test directly whether these base substitutions can result in an increase in A gamma-globin gene transcription, we studied cosmid clones containing the G gamma- through beta-globin gene regions from individuals with Greek-type (G-to-A base substitution at -117) and Chinese-type (C-to-T base substitution at -196) A gamma HPFH in a transient expression assay. When tested as part of a cosmid clone, the Greek HPFH A gamma-globin gene consistently produced about 1.4 times as much RNA as the wild-type A gamma-globin gene when standardized against RNA transcribed from the G gamma genes in cis. The relative strengths of the normal and HPFH A gamma-globin gene promoters were also compared in transient expression assays with plasmids containing the A gamma-globin genes. Pseudo-wild-type A gamma-globin genes containing a short, transcriptionally neutral deletion were used so that two A gamma-globin genes that differed in their promoter sequences could be compared in the same transfection. The plasmid transient expression results indicated a 1.3- to 1.4-fold increase in steady-state RNA levels from the Greek-type A gamma HPFH promoter compared with the wild-type A gamma promoter, while no difference was documented between the Chinese-type A gamma HPFH promoter and the wild-type A gamma promoter.
机译:已经从具有某些非缺失类型的胎儿血红蛋白(HPFH)的个体的Aγ珠蛋白基因的启动子区域中鉴定出单碱基取代。这些突变的存在与AγHPFH表型密切相关,但缺乏证明它们是非缺失HPFH决定簇的证据。为了直接测试这些碱基取代是否会导致Aγ-珠蛋白基因转录的增加,我们研究了含有Gamma-beta球蛋白基因区的粘粒克隆,这些克隆来自希腊型个体(G-to-A碱基替换为-117)和中国型(-196处C-T碱基取代)瞬时表达测定中的γHPFH。当作为粘粒克隆的一部分进行测试时,希腊标准HPFH Aγ-珠蛋白基因按从Gγ基因顺式转录的RNA进行标准化后,产生的RNA始终是野生型Aγ-珠蛋白基因的1.4倍。正常和HPFH Aγ-珠蛋白基因启动子的相对强度也在瞬时表达分析中与含有Aγ-珠蛋白基因的质粒进行了比较。使用含有短的,转录中性缺失的伪野生型Aγ-球蛋白基因,以便可以在同一转染中比较两个启动子序列不同的Aγ-球蛋白基因。质粒瞬时表达结果表明,与野生型Aγ启动子相比,希腊型AγHPFH启动子的稳态RNA水平增加了1.3到1.4倍,而中国A型之间没有差异γHPFH启动子和野生型Aγ启动子。

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