Dorman C J, Lynch A S, Ni Bhriain N, Higgins C F
Department of Biochemistry, University of Dundee, UK.
Mol Microbiol. 1989 Apr;3(4):531-40. doi: 10.1111/j.1365-2958.1989.tb00199.x.
The level of DNA supercoiling is crucial for many cellular processes, including gene expression, and is determined, primarily, by the opposing actions of two enzymes: topoisomerase I and DNA gyrase. Escherichia coli strains lacking topoisomerase I (topA mutants) normally fail to grow in the absence of compensatory mutations which are presumed to relax DNA. We have found that, in media of low osmolarity, topA mutants are viable in the absence of any compensatory mutation, consistent with the view that decreased extracellular osmolarity causes a relaxation of cellular DNA. At higher osmolarity most compensatory mutations, as expected, are in the gyrA and gyrB genes. The only other locus at which compensatory mutations arise, designated toc, is shown to involve the amplification of a region of chromosomal DNA which includes the tolC gene. However, amplification of tolC alone is insufficient to explain the phenotypes of toc mutants. tolC insertion mutations alter the distribution of plasmid topoisomers in vivo. This effect is probably indirect, possibly a result of altered membrane structure and an alteration in the cell's osmotic barrier. As tolC is a highly pleiotropic locus, affecting the expression of many genes, it is possible that some of the TolC phenotypes are a direct result of this topological change. The possible relationship between toc and tolC mutations, and the means by which tolC mutations might affect DNA supercoiling, are discussed.
DNA超螺旋水平对包括基因表达在内的许多细胞过程至关重要,并且主要由两种酶的相反作用决定:拓扑异构酶I和DNA促旋酶。缺乏拓扑异构酶I的大肠杆菌菌株(topA突变体)在没有假定可使DNA松弛的补偿性突变时通常无法生长。我们发现,在低渗透压培养基中,topA突变体在没有任何补偿性突变的情况下也能存活,这与细胞外渗透压降低导致细胞DNA松弛的观点一致。在较高渗透压下,正如预期的那样,大多数补偿性突变存在于gyrA和gyrB基因中。唯一出现补偿性突变的其他位点,称为toc,被证明涉及包含tolC基因的染色体DNA区域的扩增。然而,单独扩增tolC不足以解释toc突变体的表型。tolC插入突变会改变体内质粒拓扑异构体的分布。这种效应可能是间接的,可能是膜结构改变和细胞渗透屏障改变的结果。由于tolC是一个高度多效性位点,影响许多基因的表达,因此一些TolC表型可能是这种拓扑变化的直接结果。本文讨论了toc和tolC突变之间的可能关系,以及tolC突变可能影响DNA超螺旋的方式。