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非缺失型HPFHγ-珠蛋白基因启动子的比较研究。

Comparative studies of nondeletional HPFH gamma-globin gene promoters.

作者信息

Motum P I, Lindeman R, Harvey M P, Trent R J

机构信息

Department of Molecular Genetics, Royal Prince Alfred Hospital, Sydney, Australia.

出版信息

Exp Hematol. 1993 Jul;21(7):852-8.

PMID:7686501
Abstract

The -198 T-->C and the -175 T-->C transitions involving the proximal gamma-globin gene promoter are associated with the hereditary persistence of fetal hemoglobin (HPFH) phenotype and have been demonstrated to increase promoter activity in erythroid cells using transient and stable transfection systems. The above base changes are thought to alter the binding of different transcription regulatory proteins. Another mutation of the proximal gamma-globin promoter, -158 C-->T, has been less clearly linked to the HPFH phenotype but has been associated with increased G gamma activity. In the present paper, the -198 T-->C, -175 T-->C and -158 C-->T mutations both singly and in various combinations were evaluated by an in vitro expression assay. gamma-Globin promoters were transfected by electroporation into K562 human erythroleukemia cells and their activity measured in a human growth hormone (hGH) reporter gene assay. A novel cotransfectant was used to assess transfection efficiency. Results confirmed the previously reported upregulation of gamma-globin activity with the -198 T-->C and -175 T-->C HPFH mutations and a cooperative effect on promoter activity when both these mutations are present in cis. No effect of the -158 C-->T mutation was seen either alone or in combination with the -175 T-->C and -198 T-->C mutations.

摘要

涉及近端γ-珠蛋白基因启动子的-198 T→C和-175 T→C转换与胎儿血红蛋白(HPFH)表型的遗传性持续存在相关,并且已经证明,使用瞬时和稳定转染系统可增加红系细胞中的启动子活性。上述碱基变化被认为会改变不同转录调节蛋白的结合。近端γ-珠蛋白启动子的另一个突变-158 C→T与HPFH表型的联系尚不太明确,但与Gγ活性增加有关。在本文中,通过体外表达试验对-198 T→C、-175 T→C和-158 C→T突变单独以及各种组合进行了评估。通过电穿孔将γ-珠蛋白启动子转染到K562人红白血病细胞中,并在人生长激素(hGH)报告基因试验中测量其活性。使用一种新型共转染剂来评估转染效率。结果证实了先前报道的-198 T→C和-175 T→C HPFH突变导致γ-珠蛋白活性上调,并且当这两种突变顺式存在时对启动子活性具有协同作用。单独或与-175 T→C和-198 T→C突变组合时,均未观察到-158 C→T突变的影响。

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