Dressman H K, Wang C C, Karam J D, Drake J W
Laboratory of Molecular Genetics, National Institute of Environmental Health Sciences, P.O. Box 12233, Research Triangle Park, NC 27709, USA.
Proc Natl Acad Sci U S A. 1997 Jul 22;94(15):8042-6. doi: 10.1073/pnas.94.15.8042.
The primary structures of the replicative DNA polymerases (gp43s) of bacteriophage T4 and its distant phylogenetic relative RB69 are diverged, retaining only 61% identity and 74% similarity. Nevertheless, RB69 gp43 substitutes effectively for T4 gp43 in T4 DNA replication in vivo. We show here that RB69 gp43 replicates T4 genomes in vivo with a fidelity similar to that achieved by T4 gp43. Furthermore, replication by RB69 gp43 in the distantly related environment does not enhance the mutator activities of mutations in T4 genes that encode other components of the multienzyme DNA replicase. We also show that the fidelities of RB69 gp43 and T4 gp43 are both high in vitro and that they are similarly and sharply reduced in vivo by mutations that eliminate the 3'-exonucleolytic proofreading function. We conclude that gp43 interactions with the other replication proteins are probably nonessential for polymerase fidelity.
噬菌体T4及其远缘系统发育相关噬菌体RB69的复制性DNA聚合酶(gp43)的一级结构存在差异,仅保留61%的同一性和74%的相似性。然而,RB69 gp43在体内T4 DNA复制过程中能有效替代T4 gp43。我们在此表明,RB69 gp43在体内复制T4基因组时的保真度与T4 gp43相似。此外,在远缘相关环境中由RB69 gp43进行的复制不会增强T4基因中编码多酶DNA复制酶其他组分的突变的诱变活性。我们还表明,RB69 gp43和T4 gp43在体外的保真度都很高,并且通过消除3'-核酸外切酶校对功能的突变,它们在体内的保真度同样会急剧降低。我们得出结论,gp43与其他复制蛋白的相互作用可能对聚合酶保真度并非必不可少。