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首页> 外文期刊>Journal of Molecular Biology >Spontaneous Hotspot Mutations Resistant to Mismatch Correction in Escherichia coli: Transcription-dependent Mutagenesis Involving Template-switching Mechanisms.
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Spontaneous Hotspot Mutations Resistant to Mismatch Correction in Escherichia coli: Transcription-dependent Mutagenesis Involving Template-switching Mechanisms.

机译:抗大肠杆菌错配校正的自发性热点突变:依赖模板转换机制的转录依赖性诱变。

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The generation and stabilization of spontaneous mutations are affected by many factors, including the accuracy of DNA replication, the generation of spontaneous DNA lesions, and the capacity of mutation-avoidance systems. However, little is known about the causes of spontaneous mutations in cells with fully active mutation-avoidance systems. Using the rpsL forward mutation assay, we previously found that the directionality of replication fork movement significantly affects spontaneous mutagenesis in Escherichia coli. In particular, sequence substitutions and a hotspot type of single-base frameshift, both of which are caused by quasipalindrome-directed mutagenesis, appeared to depend on the directionality of the replication fork. These mutations are also resistant to post-replicative mismatch correction. Here, we show that the level of transcription of the rpsL gene strongly affects spontaneous mutagenesis at two mutational hotspot sites in the target sequence, one for a T-->G base substitution and the other for a+1 single-base frameshift. Mutation frequencies at the hotspot sites were below a detectable level when the transcription of the target sequence was tightly suppressed, but were dramatically increased when the target sequence was highly transcribed. Both of the hotspot mutations were also dependent on the directionality of the replication fork and were caused by quasipalindrome-directed mutagenesis. The frequencies of the hotspot mutations were unchanged in a mismatch-repair deficient strain, indicating that the hotspot mutations are resistant to the mismatch correction. Based on these findings, we propose a novel mutagenic process for these hotspot mutations that depends on transcription and involves template-switching mechanisms induced by spontaneous DNA lesions.
机译:自发突变的产生和稳定受许多因素影响,包括DNA复制的准确性,自发DNA损伤的产生以及避免突变系统的能力。但是,对于具有完全活性的避免突变系统的细胞中自发突变的原因知之甚少。使用rpsL正向突变分析,我们先前发现复制叉运动的方向性显着影响大肠杆菌中的自发诱变。特别地,序列取代和单碱基移码的热点类型,都由准回文定点诱变引起,似乎取决于复制叉的方向性。这些突变也抵抗复制后错配校正。在这里,我们显示rpsL基因的转录水平强烈影响目标序列中两个突变热点的自发诱变,一个为T-> G碱基替换,另一个为a + 1单碱基移码。当紧密抑制靶序列的转录时,热点位点的突变频率低于可检测的水平,但是当靶序列被高度转录时,突变频率显着增加。这两个热点突变也都取决于复制叉的方向性,并且是由准回文基因定向诱变引起的。在错配修复缺陷菌株中,热点突变的频率没有变化,这表明热点突变对错配校正有抵抗力。基于这些发现,我们为这些热点突变提出了一种新颖的诱变过程,该过程取决于转录并涉及由自发性DNA损伤诱导的模板转换机制。

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