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Rapid and precise mapping of the Escherichia coli release factor genes by two physical approaches.

机译:通过两种物理方法快速精确地绘制大肠杆菌释放因子基因。

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摘要

The termination of protein synthesis in Escherichia coli requires two codon-specific factors termed RF1 and RF2. RF1 mediates UAA- and UAG-directed termination, while RF2 mediates UAA- and UGA-directed termination. The genes encoding these factors have been isolated and sequenced, and RF2 was found to be encoded in two separate reading frames. The map position of RF1 has been reported as 27 min on the E. coli chromosome, while the RF2 map position has not yet been identified. In this study, two new and independent methods for gene mapping, using pulsed field gel electrophoresis and an ordered bacteriophage library spanning the entire chromosome, were used to localize the map position of the RF2 gene. In addition, the location of the RF1 gene was more precisely defined. The RF2 gene is located at 62.3 min on the chromosome, while the RF1 gene is located at 26.7 min. This approach to mapping cloned genes promises to be a rapid and simple means for determining the gene order of the genome.
机译:大肠杆菌中蛋白质合成的终止需要两个密码子特异性因子,分别称为RF1和RF2。 RF1介导UAA和UAG定向的终端,而RF2介导UAA和UGA定向的终端。编码这些因子的基因已被分离和测序,发现RF2在两个独立的阅读框中编码。据报道,RF1的图位置在大肠杆菌染色体上为27分钟,而RF2的图位置尚未确定。在这项研究中,使用脉冲场凝胶电泳和跨越整个染色体的有序噬菌体文库,两种新的独立的基因作图方法被用于定位RF2基因的作图位置。另外,更精确地定义了RF1基因的位置。 RF2基因位于染色体上的62.3分钟,而RF1基因位于26.7分钟。这种定位克隆基因的方法有望成为确定基因组基因顺序的一种快速简便的方法。

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