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β-珠蛋白启动子的精细结构遗传分析

Fine structure genetic analysis of a beta-globin promoter.

作者信息

Myers R M, Tilly K, Maniatis T

出版信息

Science. 1986 May 2;232(4750):613-8. doi: 10.1126/science.3457470.

Abstract

A novel procedure for saturation mutagenesis of cloned DNA was used to obtain more than 100 single base substitutions within the promoter of the mouse beta-major globin gene. The effects of these promoter substitutions on transcription were determined by transfecting the cloned mutant genes into HeLa cells on plasmids containing an SV40 transcription enhancer, and measuring the levels of correctly initiated beta-globin transcripts after 2 days. Mutations in three regions of the promoter resulted in a significant decrease in the level of transcription: (i) the CACCC box, located between -87 and -95, (ii) the CCAAT box, located between -72 and -77, and (iii) the TATA box, located between -26 and -30 relative to the start site of transcription. In contrast, two different mutations in nucleotides immediately upstream from the CCAAT box resulted in a 3- to 3.5-fold increase in transcription. With two minor exceptions, single base substitutions in all other regions of the promoter had no effect on transcription. These results precisely delineate the cis-acting sequences required for accurate and efficient initiation of beta-globin transcription, and they establish a general approach for the fine structure genetic analysis of eukaryotic regulatory sequences.

摘要

一种用于克隆DNA饱和诱变的新方法被用于在小鼠β-珠蛋白基因启动子内获得100多个单碱基替换。通过将克隆的突变基因转染到含有SV40转录增强子的质粒上的HeLa细胞中,并在2天后测量正确起始的β-珠蛋白转录本水平,来确定这些启动子替换对转录的影响。启动子三个区域的突变导致转录水平显著降低:(i)位于-87至-95之间的CACCC框,(ii)位于-72至-77之间的CCAAT框,以及(iii)相对于转录起始位点位于-26至-30之间的TATA框。相比之下,CCAAT框上游紧邻核苷酸的两个不同突变导致转录增加3至3.5倍。除了两个小的例外,启动子所有其他区域的单碱基替换对转录没有影响。这些结果精确地描绘了β-珠蛋白转录准确高效起始所需的顺式作用序列,并建立了一种用于真核调控序列精细结构遗传分析的通用方法。

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