Munson B R, Maier P G, Greene R S
Experimental Biology Department, Roswell Park Memorial Institute, Buffalo, New York 14263.
J Bacteriol. 1989 Jul;171(7):3803-9. doi: 10.1128/jb.171.7.3803-3809.1989.
An in vitro Escherichia coli oriC-specific DNA replication system was used to investigate the DNA replication pathways of oriC plasmids. When this system was perturbed by the DNA ligase inhibitor nicotinamide mononucleotide (NMN), alterations occurred in the initiation of DNA synthesis and processing of intermediates and DNA products. Addition of high concentrations of NMN soon after initiation resulted in the accumulation of open circular dimers (OC-OC). These dimers were decatenated to open circular monomers (form II or OC), which were then processed to closed circular supercoiled monomers (form I or CC) products. After a delay, limited ligation of the interlinked dimers (OC-OC to CC-OC and CC-CC) also occurred. Similar results were obtained with replication protein extracts from polA mutants. The presence of NMN before any initiation events took place prolonged the existence of nicked template DNA and promoted, without a lag period, limited incorporation into form II molecules. This DNA synthesis was nonspecific with respect to oriC, as judged by DnaA protein dependence, and presumably occurred at nicks in the template DNA. These results are consistent with oriC-specific initiation requiring closed supercoiled molecules dependent on DNA ligase activity. The results also show that decatenation of dimers occurs readily on nicked dimer and represents an efficient pathway for processing replication intermediates in vitro.
利用体外大肠杆菌oriC特异性DNA复制系统研究oriC质粒的DNA复制途径。当该系统受到DNA连接酶抑制剂烟酰胺单核苷酸(NMN)干扰时,DNA合成起始以及中间体和DNA产物的加工过程会发生改变。起始后不久添加高浓度NMN会导致开环二聚体(OC-OC)积累。这些二聚体解连环形成开环单体(形式II或OC),然后加工成闭环超螺旋单体(形式I或CC)产物。延迟后,也会发生有限的连环二聚体连接(OC-OC至CC-OC和CC-CC)。用polA突变体的复制蛋白提取物也得到了类似结果。在任何起始事件发生之前存在NMN会延长切口模板DNA的存在时间,并在没有延迟期的情况下促进有限地掺入形式II分子。根据对DnaA蛋白的依赖性判断,这种DNA合成对oriC是非特异性的,推测发生在模板DNA的切口处。这些结果与oriC特异性起始需要依赖DNA连接酶活性的闭环超螺旋分子一致。结果还表明,二聚体的解连环很容易在切口二聚体上发生,并且代表了体外加工复制中间体的有效途径。