Hill T M, Sharma B, Valjavec-Gratian M, Smith J
Department of Microbiology and Immunology, University of North Dakota School of Medicine, Grand Forks 58202-9037, USA.
J Bacteriol. 1997 Mar;179(6):1931-9. doi: 10.1128/jb.179.6.1931-1939.1997.
In Escherichia coli, damage to DNA induces the expression of a set of genes known collectively as the SOS response. Part of the SOS response includes genes that repair DNA damage, but another part of the response coordinates DNA replication and septation to prevent untimely cell division. The classic SOS gene product that inhibits cell division is SfiA (or SulA), which binds to FtsZ and prevents septum formation until the DNA damage has been repaired. However, another pathway acts to coordinate DNA replication and cell division when sfiA, or the sfi-dependent pathway, is inoperative. Until recently, little was known of this alternative pathway, which is called the sfi-independent pathway. We report here that sfi-independent filamentation is suppressed by lexA(Ind-) mutations, suggesting that derepression of the LexA regulon is necessary for sfi-independent induction. However, expression of LexA-controlled genes is not sufficient; DNA damage is also required to induce this secondary pathway of cell division inhibition. Furthermore, we postulate that loss of the common regulatory circuitry of the sfi-dependent and sfi-independent pathways by recA or lexA mutants uncouples cell division and DNA replication.
在大肠杆菌中,DNA损伤会诱导一组统称为SOS应答的基因表达。SOS应答的一部分包括修复DNA损伤的基因,但应答的另一部分会协调DNA复制和隔膜形成,以防止细胞过早分裂。抑制细胞分裂的经典SOS基因产物是SfiA(或SulA),它与FtsZ结合,在DNA损伤修复之前阻止隔膜形成。然而,当sfiA或sfi依赖途径不起作用时,另一条途径会协调DNA复制和细胞分裂。直到最近,人们对这条称为sfi非依赖途径的替代途径知之甚少。我们在此报告,sfi非依赖的丝状化受到lexA(Ind-)突变的抑制,这表明LexA调控子的去阻遏对于sfi非依赖诱导是必要的。然而,LexA控制基因的表达并不充分;还需要DNA损伤来诱导这条细胞分裂抑制的次要途径。此外,我们推测recA或lexA突变体导致sfi依赖和sfi非依赖途径的共同调控电路丧失,从而使细胞分裂和DNA复制解偶联。