Theisen P W, Grimwade J E, Leonard A C, Bogan J A, Helmstetter C E
Department of Biological Sciences, Florida Institute of Technology, Melbourne 32901.
Mol Microbiol. 1993 Nov;10(3):575-84. doi: 10.1111/j.1365-2958.1993.tb00929.x.
Transcriptional levels of the Escherichia coli mioC and gidA genes, which flank the chromosomal origin of replication (oriC) and the dnaA gene, were correlated with the time of initiation of chromosome replication. The transcripts were measured either in dnaC2(ts) mutants that had been aligned for initiation of chromosome replication by a temperature shift or in synchronous cultures of cells obtained using the baby machine technique. In both types of experiments, mioC transcription was inhibited prior to initiation of chromosome replication and resumed several minutes after initiation. Conversely, gidA and dnaA transcription were both inhibited after initiation of replication, coincident with the period of hemimethylation of oriC DNA. It is proposed that mioC transcription prevents initiation of chromosome replication, and must terminate before replication can begin. It is further proposed that the eclipse period between rounds of replication, i.e. the minimum interval between successive initiations, encompasses the time required to methylate GATC sequences in newly replicated oriC plus the time required to terminate mioC transcription. Conversely, the active transcription of gidA and dnaA prior to initiation is consistent with their positive effects on initiation, and their shutdown after initiation could serve to limit premature reinitiation.
大肠杆菌mioC和gidA基因的转录水平与染色体复制起点(oriC)及dnaA基因相邻,它们与染色体复制起始时间相关。转录本的测量是在通过温度转换使染色体复制起始同步化的dnaC2(ts)突变体中进行,或者是在使用幼芽机技术获得的细胞同步培养物中进行。在这两种类型的实验中,mioC转录在染色体复制起始前受到抑制,并在起始后几分钟恢复。相反,gidA和dnaA转录在复制起始后均受到抑制,这与oriC DNA半甲基化时期一致。有人提出,mioC转录会阻止染色体复制起始,并且必须在复制开始前终止。进一步提出,两轮复制之间的隐蔽期,即连续起始之间的最短间隔,包括新复制的oriC中GATC序列甲基化所需的时间加上终止mioC转录所需的时间。相反,起始前gidA和dnaA的活跃转录与其对起始的积极作用一致,而起始后它们的关闭可能有助于限制过早重新起始。