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Effects of two cis-acting mutations on the regulation and expression of release factor one in Escherichia coli

机译:两个顺式作用突变对大肠杆菌中释放因子一的调控和表达的影响

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Together with release factor (RF) 2, RF1 recognises the stop codons and triggers the hydrolysis of the nascent peptide from peptidyl-tRNA during translation termination. prfA, the gene that codes for RF1, is located at 27 min on the Escherichia coli map as the second gene in the hemA-operon. The concentration of RF1 has been shown to increase with increased growth rate, but it is not known where and how this control is exerted. In this study we show that the growth rate regulation of RF1, at least in part, is controlled at P-hemA1 one of two promoters preceding the hemA gene. We have also characterised two mutations, asuA1 and asuA2, that are antisuppressors to the tRNA suppressor Su2. Our data indicate that the antisuppressor phenotype is caused by an increased amount of RF1. The asuA2 mutation is a G to an A change just downstream of the -10 region of P-hemA1, it leads to a higher concentration of RF1 in the cell and abolishes the growth rate regulation. This indicates that the sequence between the -10 region and the transcription start site is important for growth rate control. The increase in concentration of RF1 caused by asuA1 is most likely at the translational level. The efficiency of translation initiation of prfA is low due to a long distance between the start codon and the Shine-Dalgarno (SD) sequence. The asuA1 mutation creates a new start codon with a more optimal distance to the SD sequence. This leads to an increased expression of RF1, probably due to increased initiation efficiency. (C) 2004 Elsevier SAS. All rights reserved.
机译:RF1与释放因子(RF)2一起识别终止密码子,并在翻译终止过程中触发新生肽从肽基tRNA的水解。 prfA是RF1的编码基因,在大肠杆菌图谱上位于第27分钟,是hemA操纵子中的第二个基因。已经显示RF1的浓度随着生长速率的增加而增加,但是尚不知道在何处以及如何进行这种控制。在这项研究中,我们显示RF1的生长速率调节至少部分受hemA基因之前的两个启动子之一的P-hemA1调控。我们还表征了两个突变,asuA1和asuA2,它们是tRNA抑制子Su2的抗抑制剂。我们的数据表明抗抑制剂表型是由RF1数量增加引起的。 asuA2突变是P-hemA1 -10区下游的G到A的变化,它导致细胞中RF1的浓度更高,并废除了生长速率调节。这表明-10区和转录起始位点之间的序列对于控制生长速率很重要。由asuA1引起的RF1浓度增加最有可能在翻译水平上。由于起始密码子与Shine-Dalgarno(SD)序列之间的距离较长,prfA的翻译起始效率较低。 asuA1突变产生了一个新的起始密码子,与SD序列之间的距离最佳。这可能导致RF1表达增加,这可能是由于启动效率提高所致。 (C)2004 Elsevier SAS。版权所有。

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