Zhou P, Helmstetter C E
Department of Biological Sciences, Florida Institute of Technology, Melbourne 32901.
J Bacteriol. 1994 Oct;176(19):6100-6. doi: 10.1128/jb.176.19.6100-6106.1994.
Transcriptional levels within the ftsQAZ region of the Escherichia coli chromosome were correlated with chromosome replication and the division cycle. The transcripts were measured either in synchronous cultures generated by the baby machine technique or in dnaC2(Ts) mutants that had been aligned for initiation of chromosome replication by temperature shifts. Transcription within the ftsZ reading frame was found to fluctuate during the cell cycle, with maximal levels about midcycle and a minimum level at division, in cells growing with a doubling time of 24 min at 37 degrees C. Examination of transcription in dnaC(Ts) mutants aligned for chromosome replication indicated that the periodicity was due to a reduction in transcripts coincident with replication of the ftsQAZ region. Transcription originating upstream of the ftsA gene exhibited the periodicity and accounted for a significant proportion of the transcripts entering ftsZ. The most obvious interpretation of the data is that replication of the region transiently inhibits transcription, but alternative explanations have not been ruled out. However, no other relationship between transcription and either replication or division was detected.
大肠杆菌染色体ftsQAZ区域内的转录水平与染色体复制及分裂周期相关。通过婴儿机器技术产生的同步培养物中,或通过温度变化使染色体复制起始对齐的dnaC2(Ts)突变体中,均可测量转录本。在37℃下倍增时间为24分钟生长的细胞中,发现ftsZ阅读框内的转录在细胞周期中波动,在周期中期左右达到最高水平,在分裂时达到最低水平。对已对齐进行染色体复制的dnaC(Ts)突变体中的转录进行检查表明,这种周期性是由于与ftsQAZ区域复制同时发生的转录本减少所致。源自ftsA基因上游的转录表现出周期性,并且占进入ftsZ的转录本的很大比例。对这些数据最明显的解释是该区域的复制会短暂抑制转录,但其他解释尚未排除。然而,未检测到转录与复制或分裂之间的其他关系。