Bi E, Lutkenhaus J
Department of Microbiology, Molecular Genetics, and Immunology, University of Kansas Medical Center, Kansas City 66103.
J Bacteriol. 1990 Oct;172(10):5602-9. doi: 10.1128/jb.172.10.5602-5609.1990.
In Escherichia coli, the ftsZ gene is thought to be an essential cell division gene. Several dominant mutations that make lon mutant cells refractory to the cell division inhibitor SulA, sulB9, sulB25, and sfiB114, have been mapped to the ftsZ gene. DNA sequence analysis of these mutations and the sfiB103 mutation confirmed that all of these mutations mapped within the ftsZ gene and revealed that the two sulB mutations were identical and by selection for resistance to higher levels of SulA, contained a second mutation within the ftsZ gene. We therefore propose that these mutations be redesignated ftsZ(Rsa) for resistance to SulA. A procedure involving mutagenesis of ftsZ cloned on low-copy-number vectors was used to isolate three additional ftsZ(Rsa) mutations. DNA sequence analysis of these mutations revealed that they were distinct from the previously isolated mutations. One of these mutations, ftsZ3(Rsa), led to an altered FtsZ protein that could no longer support cell growth but still conferred the Rsa phenotype in the presence of ftsZ+. In addition to being resistant to SulA, all ftsZ(Rsa) mutations also conferred resistance to a LacZ-FtsZ hybrid protein (ZZ). One possibility is that FtsZ functions as a multimer and that FtsZ(Rsa) mutant proteins have an increased ability for multimerization, making them resistant to SulA and ZZ.
在大肠杆菌中,ftsZ基因被认为是一个必需的细胞分裂基因。几个使lon突变细胞对细胞分裂抑制剂SulA、sulB9、sulB25和sfiB114产生抗性的显性突变已被定位到ftsZ基因上。对这些突变以及sfiB103突变的DNA序列分析证实,所有这些突变都定位在ftsZ基因内,并揭示这两个sulB突变是相同的,而且通过选择对更高水平SulA的抗性,在ftsZ基因内还含有第二个突变。因此,我们建议将这些突变重新命名为ftsZ(Rsa),表示对SulA的抗性。利用一种涉及对克隆在低拷贝数载体上的ftsZ进行诱变的方法,又分离出了另外三个ftsZ(Rsa)突变。对这些突变的DNA序列分析表明,它们与先前分离的突变不同。其中一个突变,ftsZ3(Rsa),导致FtsZ蛋白发生改变,不再能够支持细胞生长,但在存在ftsZ+的情况下仍赋予Rsa表型。除了对SulA有抗性外,所有ftsZ(Rsa)突变还赋予对LacZ-FtsZ杂交蛋白(ZZ)的抗性。一种可能性是,FtsZ作为一种多聚体发挥作用,并且FtsZ(Rsa)突变蛋白具有增强的多聚化能力,使其对SulA和ZZ具有抗性。