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复制起始区域的DnaA快速周转有助于DNA复制的起始控制。

Rapid turnover of DnaA at replication origin regions contributes to initiation control of DNA replication.

作者信息

Schenk Katrin, Hervás Ana B, Rösch Thomas C, Eisemann Marc, Schmitt Bernhard A, Dahlke Stephan, Kleine-Borgmann Luise, Murray Seán M, Graumann Peter L

机构信息

SYNMIKRO, LOEWE Center for Synthetic Microbiology, Marburg, Germany.

Department of Chemistry, Philipps Universität Marburg, Marburg, Germany.

出版信息

PLoS Genet. 2017 Feb 6;13(2):e1006561. doi: 10.1371/journal.pgen.1006561. eCollection 2017 Feb.

Abstract

DnaA is a conserved key regulator of replication initiation in bacteria, and is homologous to ORC proteins in archaea and in eukaryotic cells. The ATPase binds to several high affinity binding sites at the origin region and upon an unknown molecular trigger, spreads to several adjacent sites, inducing the formation of a helical super structure leading to initiation of replication. Using FRAP analysis of a functional YFP-DnaA allele in Bacillus subtilis, we show that DnaA is bound to oriC with a half-time of 2.5 seconds. DnaA shows similarly high turnover at the replication machinery, where DnaA is bound to DNA polymerase via YabA. The absence of YabA increases the half time binding of DnaA at oriC, showing that YabA plays a dual role in the regulation of DnaA, as a tether at the replication forks, and as a chaser at origin regions. Likewise, a deletion of soj (encoding a ParA protein) leads to an increase in residence time and to overinitiation, while a mutation in DnaA that leads to lowered initiation frequency, due to a reduced ATPase activity, shows a decreased residence time on binding sites. Finally, our single molecule tracking experiments show that DnaA rapidly moves between chromosomal binding sites, and does not arrest for more than few hundreds of milliseconds. In Escherichia coli, DnaA also shows low residence times in the range of 200 ms and oscillates between spatially opposite chromosome regions in a time frame of one to two seconds, independently of ongoing transcription. Thus, DnaA shows extremely rapid binding turnover on the chromosome including oriC regions in two bacterial species, which is influenced by Soj and YabA proteins in B. subtilis, and is crucial for balanced initiation control, likely preventing fatal premature multimerization and strand opening of DnaA at oriC.

摘要

DnaA是细菌中保守的复制起始关键调节因子,与古细菌和真核细胞中的ORC蛋白同源。该ATP酶与起始区域的几个高亲和力结合位点结合,在未知分子触发因素作用下,扩散到几个相邻位点,诱导形成螺旋超结构,从而引发复制起始。通过对枯草芽孢杆菌中功能性YFP-DnaA等位基因进行荧光漂白恢复(FRAP)分析,我们发现DnaA与oriC的结合半衰期为2.5秒。DnaA在复制机器上也表现出同样高的周转速度,在那里DnaA通过YabA与DNA聚合酶结合。YabA的缺失增加了DnaA在oriC处的结合半衰期,表明YabA在DnaA的调节中起双重作用,既是复制叉处的系绳,又是起始区域的追赶者。同样,soj(编码一种ParA蛋白)的缺失会导致停留时间增加和过度起始,而由于ATP酶活性降低导致起始频率降低的DnaA突变体,其在结合位点上的停留时间会减少。最后,我们的单分子追踪实验表明,DnaA在染色体结合位点之间快速移动,且停留时间不超过几百毫秒。在大肠杆菌中,DnaA的停留时间也很短,在200毫秒左右,并且在一到两秒的时间框架内在空间上相对的染色体区域之间振荡,与正在进行的转录无关。因此,DnaA在包括两种细菌物种的oriC区域在内的染色体上表现出极其快速的结合周转,这在枯草芽孢杆菌中受Soj和YabA蛋白影响,对于平衡起始控制至关重要,可能防止DnaA在oriC处发生致命的过早多聚化和链打开。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/080c/5319796/cfd34130dbfb/pgen.1006561.g001.jpg

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