Hendricks E C, Szerlong H, Hill T, Kuempel P
Department of Molecular, Cellular and Developmental Biology, University of Colorado, Boulder, CO 80309, USA.
Mol Microbiol. 2000 May;36(4):973-81. doi: 10.1046/j.1365-2958.2000.01920.x.
We have studied the growth and division of xerC, xerD and dif mutants of Escherichia coli, which are unable to resolve dimer chromosomes. These mutants express the Dif phenotype, which includes reduced viability, SOS induction and filamentation, and abnormal nucleoid morphology. Growth was studied in synchronous cultures and in microcolonies derived from single cells. SOS induction and filamentation commenced after an apparently normal cell division, which sheared unresolved dimer chromosomes. This has been called guillotining. Microcolony analysis demonstrated that cell division in the two daughter cells was inhibited after guillotining, and microcolonies formed that consisted of two filaments lying side by side. Growth of these filaments was severely reduced in hipA+ strains. We propose that guillotining at dif destroys the expression of the adjacent hipBA genes and, in the absence of continued formation of HipB, HipA inhibits growth. The length of the filaments was also affected by SfiA: sfiA dif hipA mutants initially formed filaments, but cell division at the ends of the filaments ultimately produced a number of DNA-negative cells. If SOS induction was blocked by lexA3 (Ind-), filaments did not form, and cell division was not inhibited. However, pedigree analysis of cells in microcolonies demonstrated that lethal sectoring occurred as a result of limited growth and division of dead cells produced by guillotining.
我们研究了大肠杆菌xerC、xerD和dif突变体的生长和分裂情况,这些突变体无法解决二聚体染色体问题。这些突变体表现出Dif表型,包括活力降低、SOS诱导和丝状化,以及异常的类核形态。在同步培养物和源自单细胞的微菌落中研究了生长情况。SOS诱导和丝状化在一次明显正常的细胞分裂后开始,这次分裂切断了未解决的二聚体染色体。这被称为斩首式分裂。微菌落分析表明,斩首式分裂后两个子细胞中的细胞分裂受到抑制,形成了由两条并列细丝组成的微菌落。在hipA+菌株中,这些细丝的生长严重受限。我们提出,在dif位点的斩首式分裂破坏了相邻hipBA基因的表达,并且在没有持续形成HipB的情况下,HipA抑制生长。细丝的长度也受到SfiA的影响:sfiA dif hipA突变体最初形成细丝,但细丝末端的细胞分裂最终产生了许多DNA阴性细胞。如果SOS诱导被lexA3(Ind-)阻断,细丝就不会形成,细胞分裂也不会受到抑制。然而,对微菌落中细胞的谱系分析表明,由于斩首式分裂产生的死亡细胞的有限生长和分裂,导致了致死性扇形分布。