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IncFII质粒NR1的repA4区域中的插入和缺失突变导致遗传不稳定。

Insertion and deletion mutations in the repA4 region of the IncFII plasmid NR1 cause unstable inheritance.

作者信息

Jiang T, Min Y N, Liu W, Womble D D, Rownd R H

机构信息

Center for Molecular Biology, Wayne State University, Detroit, Michigan 48202.

出版信息

J Bacteriol. 1993 Sep;175(17):5350-8. doi: 10.1128/jb.175.17.5350-5358.1993.

Abstract

Mutants of IncFII plasmid NR1 that have transposons inserted in the repA4 open reading frame (ORF) are not inherited stably. The repA4 ORF is located immediately downstream from the replication origin (ori). The repA4 coding region contains inverted-repeat sequences that are homologous to the terC inverted repeats located in the replication terminus of the Escherichia coli chromosome. The site of initiation of leading-strand synthesis for replication of NR1 is also located in repA4 near its 3' end. Transposon insertions between ori and the right-hand terC repeat resulted in plasmid instability, whereas transposon insertions farther downstream did not. Derivatives that contained a 35-bp frameshift insertion in the repA4 ORF were all stable, even when the frameshift was located very near the 5' end of the coding region. This finding indicates that repA4 does not specify a protein product that is essential for plasmid stability. Examination of mutants having a nest of deletions with endpoints in or near repA4 indicated that the 3' end of the repA4 coding region and the site of leading-strand initiation could be deleted without appreciable effect on plasmid stability. Deletion of the pemI and pemK genes, located farther downstream from repA4 and reported to affect plasmid stability, also had no detectable effect. In contrast, mutants from which the right-hand terC repeat, or both right- and left-hand repeats, had been deleted were unstable. None of the insertion or deletion mutations in or near repA4 affected plasmid copy number. Alteration of the terC repeats by site-directed mutagenesis had little effect on plasmid stability. Plasmid stability was not affected by a fus mutation known to inactivate the termination function. Therefore, it appears that the overall integrity of the repA4 region is more important for stable maintenance of plasmid NR1 than are any of the individual known features found in this region.

摘要

IncFII质粒NR1中,转座子插入repA4开放阅读框(ORF)的突变体不能稳定遗传。repA4 ORF位于复制起点(ori)的紧邻下游。repA4编码区包含与大肠杆菌染色体复制终点处terC反向重复序列同源的反向重复序列。NR1复制的前导链合成起始位点也位于repA4靠近其3'端的位置。ori与右手端terC重复序列之间的转座子插入导致质粒不稳定,而更下游的转座子插入则不会。在repA4 ORF中含有35 bp移码插入的衍生物都是稳定的,即使移码位于编码区5'端非常近的位置。这一发现表明,repA4并不指定对质粒稳定性至关重要的蛋白质产物。对在repA4内或其附近有一系列缺失端点的突变体进行检查表明,repA4编码区的3'端和前导链起始位点可以被删除,而对质粒稳定性没有明显影响。位于repA4下游更远位置且据报道会影响质粒稳定性的pemI和pemK基因的缺失,也没有可检测到的影响。相比之下,右手端terC重复序列或左右两端重复序列都被删除的突变体是不稳定的。repA4内或其附近的插入或缺失突变均不影响质粒拷贝数。通过定点诱变改变terC重复序列对质粒稳定性影响很小。已知能使终止功能失活的fus突变对质粒稳定性没有影响。因此,对于质粒NR1的稳定维持而言,repA4区域的整体完整性似乎比该区域中任何已知的单个特征都更重要。

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