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大肠杆菌中ftsZ的新型温度敏感等位基因。

New temperature-sensitive alleles of ftsZ in Escherichia coli.

作者信息

Addinall Stephen G, Small Elaine, Whitaker Duncan, Sturrock Shane, Donachie William D, Khattar Medhat M

机构信息

Department of Biology, American University of Beirut, Beirut, Lebanon.

出版信息

J Bacteriol. 2005 Jan;187(1):358-65. doi: 10.1128/JB.187.1.358-365.2005.

Abstract

We isolated five new temperature-sensitive alleles of the essential cell division gene ftsZ in Escherichia coli, using P1-mediated, localized mutagenesis. The five resulting single amino acid changes (Gly109-->Ser109 for ftsZ6460, Ala129-->Thr129 for ftsZ972, Val157-->Met157 for ftsZ2066, Pro203-->Leu203 for ftsZ9124, and Ala239-->Val239 for ftsZ2863) are distributed throughout the FtsZ core region, and all confer a lethal cell division block at the nonpermissive temperature of 42 degrees C. In each case the division block is associated with loss of Z-ring formation such that fewer than 2% of cells show Z rings at 42 degrees C. The ftsZ9124 and ftsZ6460 mutations are of particular interest since both result in abnormal Z-ring formation at 30 degrees C and therefore cause significant defects in FtsZ polymerization, even at the permissive temperature. Neither purified FtsZ9124 nor purified FtsZ6460 exhibited polymerization when it was assayed by light scattering or electron microscopy, even in the presence of calcium or DEAE-dextran. Hence, both mutations also cause defects in FtsZ polymerization in vitro. Interestingly, FtsZ9124 has detectable GTPase activity, although the activity is significantly reduced compared to that of the wild-type FtsZ protein. We demonstrate here that unlike expression of ftsZ84, multicopy expression of the ftsZ6460, ftsZ972, and ftsZ9124 alleles does not complement the respective lethalities at the nonpermissive temperature. In addition, all five new mutant FtsZ proteins are stable at 42 degrees C. Therefore, the novel isolates carrying single ftsZ(Ts) point mutations, which are the only such strains obtained since isolation of the classical ftsZ84 mutation, offer significant opportunities for further genetic characterization of FtsZ and its role in cell division.

摘要

我们利用P1介导的定位诱变技术,在大肠杆菌中分离出了必需细胞分裂基因ftsZ的五个新的温度敏感型等位基因。所产生的五个单氨基酸变化(ftsZ6460为Gly109→Ser109,ftsZ972为Ala129→Thr129,ftsZ2066为Val157→Met157,ftsZ9124为Pro203→Leu203,ftsZ2863为Ala239→Val239)分布在FtsZ核心区域,并且在42℃的非允许温度下均导致致死性细胞分裂阻滞。在每种情况下,分裂阻滞都与Z环形成的丧失相关,以至于在42℃时少于2%的细胞显示出Z环。ftsZ9124和ftsZ6460突变特别令人感兴趣,因为两者在30℃时都会导致异常的Z环形成,因此即使在允许温度下也会在FtsZ聚合中引起显著缺陷。当通过光散射或电子显微镜检测时,纯化的FtsZ9124和纯化的FtsZ6460即使在存在钙或DEAE-葡聚糖的情况下也均未表现出聚合作用。因此,这两个突变在体外也会导致FtsZ聚合缺陷。有趣的是,FtsZ9124具有可检测到的GTPase活性,尽管与野生型FtsZ蛋白相比该活性显著降低。我们在此证明,与ftsZ84的表达不同,ftsZ6460、ftsZ972和ftsZ9124等位基因的多拷贝表达在非允许温度下并不能互补各自的致死性。此外,所有五个新的突变FtsZ蛋白在42℃时都是稳定的。因此,携带单个ftsZ(Ts)点突变的新型分离株是自经典ftsZ84突变分离以来获得的唯一此类菌株,为进一步对FtsZ进行遗传表征及其在细胞分裂中的作用提供了重要机会。

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