Liu L, Komori K, Ishino S, Bocquier A A, Cann I K, Kohda D, Ishino Y
Department of Molecular Biology, Binomolecular Engineering Research Institute, Suita, Osaka 565-0874, Japan.
J Biol Chem. 2001 Nov 30;276(48):45484-90. doi: 10.1074/jbc.M106391200. Epub 2001 Oct 2.
We characterized the primase complex of the hyperthermophilic archaeon, Pyrococcus furiosus. The two proteins, Pfup41 and Pfup46, have similar sequences to the p48 and p58 subunits, respectively, of the eukaryotic DNA polymerase alpha-primase complex. Unlike previously reported primases, the Pfup41 preferentially utilizes deoxyribonucleotides for its de novo synthesis, and moreover, it synthesizes up to several kilobases in length in a template-dependent manner (Bocquier, A., Liu, L., Cann, I., Komori, K., Kohda, D., and Ishino, Y. (2001) Curr. Biol. 11, 452-456). The p41-p46 complex showed higher DNA binding activity than the catalytic p41 subunit alone. In addition, the amount of DNA synthesized by the p41-p46 complex was much more abundant and shorter in length than that by Pfup41 alone. The activity for RNA primer synthesis, which was not detected with Pfup41, was observed from the reaction using the p41-p46 complex in vitro. The in vitro replication of M13 single-stranded DNA by the P. furiosus proteins was stimulated by ATP. Observation of the labeled primers by using [gamma-(32)P]ATP in the substrates suggests ATP as the preferable initiating nucleotide for the p41-p46 complex. These results show that the primer synthesis activity of Pfup41 is regulated by Pfup46, and the p41-p46 complex may function as the primase in the DNA replication machinery of P. furiosus, in a similar fashion to the eukaryotic polymerase alpha-primase complex.
我们对嗜热古菌激烈火球菌(Pyrococcus furiosus)的引发酶复合物进行了表征。两种蛋白质Pfup41和Pfup46分别与真核生物DNA聚合酶α-引发酶复合物的p48和p58亚基具有相似序列。与先前报道的引发酶不同,Pfup41在其从头合成中优先利用脱氧核糖核苷酸,而且它以模板依赖的方式合成长达数千碱基的长度(博基耶,A.,刘,L.,坎恩,I.,小森,K.,小田,D.,以及石野,Y.(2001年)《当代生物学》11,452 - 456)。p41 - p46复合物显示出比单独的催化性p41亚基更高的DNA结合活性。此外,p41 - p46复合物合成的DNA量比单独的Pfup41合成的DNA量丰富得多且长度更短。在体外使用p41 - p46复合物的反应中观察到了Pfup41未检测到的RNA引物合成活性。激烈火球菌蛋白对M13单链DNA的体外复制受到ATP的刺激。在底物中使用[γ-(32)P]ATP观察标记引物表明ATP是p41 - p46复合物更优选的起始核苷酸。这些结果表明Pfup41的引物合成活性受Pfup46调节,并且p41 - p46复合物可能在激烈火球菌的DNA复制机制中作为引发酶发挥作用,其方式类似于真核生物聚合酶α-引发酶复合物。