Kasho Kazutoshi, Fujimitsu Kazuyuki, Matoba Toshihiro, Oshima Taku, Katayama Tsutomu
Department of Molecular Biology, Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka 812-8582, Japan.
Division of Genomics of Bacterial Cell Functions, Graduate School of Biological Sciences, Nara Institute of Science and Technology, Ikoma, Nara 630-0192, Japan.
Nucleic Acids Res. 2014 Dec 1;42(21):13134-49. doi: 10.1093/nar/gku1051. Epub 2014 Nov 6.
In Escherichia coli, the ATP-bound form of DnaA (ATP-DnaA) promotes replication initiation. During replication, the bound ATP is hydrolyzed to ADP to yield the ADP-bound form (ADP-DnaA), which is inactive for initiation. The chromosomal site DARS2 facilitates the regeneration of ATP-DnaA by catalyzing nucleotide exchange between free ATP and ADP bound to DnaA. However, the regulatory mechanisms governing this exchange reaction are unclear. Here, using in vitro reconstituted experiments, we show that two nucleoid-associated proteins, IHF and Fis, bind site-specifically to DARS2 to activate coordinately the exchange reaction. The regenerated ATP-DnaA was fully active in replication initiation and underwent DnaA-ATP hydrolysis. ADP-DnaA formed heteromultimeric complexes with IHF and Fis on DARS2, and underwent nucleotide dissociation more efficiently than ATP-DnaA. Consistently, mutant analyses demonstrated that specific binding of IHF and Fis to DARS2 stimulates the formation of ATP-DnaA production, thereby promoting timely initiation. Moreover, we show that IHF-DARS2 binding is temporally regulated during the cell cycle, whereas Fis only binds to DARS2 in exponentially growing cells. These results elucidate the regulation of ATP-DnaA and replication initiation in coordination with the cell cycle and growth phase.
在大肠杆菌中,DnaA的ATP结合形式(ATP-DnaA)促进复制起始。在复制过程中,结合的ATP水解为ADP,产生ADP结合形式(ADP-DnaA),其对起始无活性。染色体位点DARS2通过催化游离ATP与结合在DnaA上的ADP之间的核苷酸交换,促进ATP-DnaA的再生。然而,控制这种交换反应的调控机制尚不清楚。在这里,我们通过体外重组实验表明,两种类核相关蛋白IHF和Fis特异性结合到DARS2上,协同激活交换反应。再生的ATP-DnaA在复制起始中完全活跃,并经历DnaA-ATP水解。ADP-DnaA在DARS2上与IHF和Fis形成异源多聚体复合物,并且比ATP-DnaA更有效地进行核苷酸解离。一致地,突变分析表明,IHF和Fis与DARS2的特异性结合刺激了ATP-DnaA产生的形成,从而促进及时起始。此外,我们表明,IHF与DARS2的结合在细胞周期中受到时间调控,而Fis仅在指数生长的细胞中与DARS2结合。这些结果阐明了ATP-DnaA的调控以及与细胞周期和生长阶段协调的复制起始。