Nurse P, Liu J, Marians K J
Molecular Biology Program, Memorial Sloan-Kettering Cancer Center, Cornell University Graduate School of Medical Sciences, New York, New York 10021, USA.
J Biol Chem. 1999 Aug 27;274(35):25026-32. doi: 10.1074/jbc.274.35.25026.
The role of PriA, required for the assembly of the phiX174-type primosome on DNA, in cellular DNA replication has been unclear since its discovery. Recent evidence, based on the phenotypes of strains carrying priA null mutations, has led to proposals that the primosome assembly activity of PriA was required to load replication forks at intermediates such as D loops during homologous recombination. McGlynn et al. (McGlynn, P., Al-Deib, A. A., Liu, J., Marians, K. J., and Lloyd, R. G. (1997) J. Mol. Biol. 270, 212-221) demonstrated that PriA could, in fact, bind D loops. We show here that there are two modes of stable binding of PriA to DNA. One mode, in which the enzyme binds 3'-single-stranded extensions from duplex DNAs, presumably reflects the 3' --> 5' DNA helicase activity of PriA. The D loop DNA binding activity of PriA can be accounted for by the second mode, where the enzyme binds bent DNA at three strand junctions.
自发现以来,PriA(在DNA上组装φX174型引发体所必需)在细胞DNA复制中的作用一直不清楚。基于携带priA无效突变菌株的表型的最新证据,有人提出在同源重组过程中,PriA的引发体组装活性是在诸如D环等中间体处加载复制叉所必需的。McGlynn等人(McGlynn, P., Al-Deib, A. A., Liu, J., Marians, K. J., and Lloyd, R. G. (1997) J. Mol. Biol. 270, 212 - 221)证明,事实上,PriA能够结合D环。我们在此表明,PriA与DNA存在两种稳定结合模式。一种模式是该酶结合双链DNA的3'单链延伸,这可能反映了PriA的3'→5'DNA解旋酶活性。PriA的D环DNA结合活性可由第二种模式解释,即该酶在三个链交界处结合弯曲的DNA。