Izard J, Samsonoff W A, Limberger R J
Wadsworth Center, David Axelrod Institute for Public Health, New York State Department of Health, Albany, New York 12201-2002, USA.
J Bacteriol. 2001 Feb;183(3):1078-84. doi: 10.1128/JB.183.3.1078-1084.2001.
In Treponema denticola, a ribbon-like structure of cytoplasmic filaments spans the cytoplasm at all stages of the cell division process. Insertional inactivation was used as a first step to determine the function of the cytoplasmic filaments. A suicide plasmid was constructed that contained part of cfpA and a nonpolar erythromycin resistance cassette (ermF and ermAM) inserted near the beginning of the gene. The plasmid was electroporated into T. denticola, and double-crossover recombinants which had the chromosomal copy of cfpA insertionally inactivated were selected. Immunoblotting and electron microscopy confirmed the lack of cytoplasmic filaments. The mutant was further analyzed by dark-field microscopy to determine cell morphology and by the binding of two fluorescent dyes to DNA to assess the distribution of cellular nucleic acids. The cytoplasmic filament protein-deficient mutant exhibited pleiotropic defects, including highly condensed chromosomal DNA, compared to the homogeneous distribution of the DNA throughout the cytoplasm in a wild-type cell. Moreover, chains of cells are formed by the cytoplasmic filament-deficient mutant, and those cells show reduced spreading in agarose, which may be due to the abnormal cell length. The chains of cells and the highly condensed chromosomal DNA suggest that the cytoplasmic filaments may be involved in chromosome structure, segregation, or the cell division process in Treponema.
在齿垢密螺旋体中,一种带状的细胞质丝结构在细胞分裂过程的所有阶段都贯穿细胞质。插入失活被用作确定细胞质丝功能的第一步。构建了一种自杀质粒,其包含cfpA的一部分以及插入基因起始附近的非极性红霉素抗性盒(ermF和ermAM)。将该质粒电穿孔导入齿垢密螺旋体,选择具有插入失活的cfpA染色体拷贝的双交换重组体。免疫印迹和电子显微镜证实了细胞质丝的缺失。通过暗视野显微镜进一步分析该突变体以确定细胞形态,并通过两种荧光染料与DNA的结合来评估细胞核酸的分布。与野生型细胞中DNA在整个细胞质中的均匀分布相比,缺乏细胞质丝蛋白的突变体表现出多效性缺陷,包括高度浓缩的染色体DNA。此外,缺乏细胞质丝的突变体形成细胞链,并且这些细胞在琼脂糖中的铺展减少,这可能是由于细胞长度异常所致。细胞链和高度浓缩的染色体DNA表明细胞质丝可能参与齿垢密螺旋体的染色体结构、分离或细胞分裂过程。