Alfano C, McMacken R
Department of Biochemistry, Johns Hopkins University, Baltimore, MD 21205.
Nucleic Acids Res. 1988 Oct 25;16(20):9611-30. doi: 10.1093/nar/16.20.9611.
The prepriming steps in the initiation of bacteriophage lambda DNA replication depend on the action of the lambda O and P proteins and on the DnaB helicase, single-stranded DNA binding protein (SSB), and DnaJ and DnaK heat shock proteins of the E. coli host. The binding of multiple copies of the lambda O protein to the phage replication origin (ori lambda) initiates the ordered assembly of a series of nucleoprotein structures that form at ori lambda prior to DNA unwinding, priming and DNA synthesis steps. Since the initiation of lambda DNA replication is known to occur only on supercoiled templates in vivo and in vitro, we examined how the early steps in lambda DNA replication are influenced by superhelical tension. All initiation complexes formed prior to helicase-mediated DNA-unwinding form with high efficiency on relaxed ori lambda DNA. Nonetheless, the DNA templates in these structures must be negatively supertwisted before they can be replicated. Once DNA helicase unwinding is initiated at ori lambda, however, later steps in lambda DNA replication proceed efficiently in the absence of superhelical tension. We conclude that supercoiling is required during the initiation of lambda DNA replication to facilitate entry of a DNA helicase, presumably the DnaB protein, between the DNA strands.
噬菌体λ DNA 复制起始的预引发步骤依赖于λ O 和 P 蛋白的作用,以及大肠杆菌宿主的 DnaB 解旋酶、单链 DNA 结合蛋白(SSB)、DnaJ 和 DnaK 热休克蛋白。多个λ O 蛋白拷贝与噬菌体复制起点(oriλ)的结合启动了一系列核蛋白结构的有序组装,这些结构在 DNA 解旋、引发和 DNA 合成步骤之前在 oriλ 处形成。由于已知λ DNA 复制的起始仅在体内和体外的超螺旋模板上发生,我们研究了超螺旋张力如何影响λ DNA 复制的早期步骤。在解旋酶介导的 DNA 解旋之前形成的所有起始复合物在松弛的 oriλ DNA 上高效形成。尽管如此,这些结构中的 DNA 模板在能够被复制之前必须是负超螺旋的。然而,一旦在 oriλ 处启动 DNA 解旋酶解旋,λ DNA 复制的后续步骤在没有超螺旋张力的情况下也能高效进行。我们得出结论,在λ DNA 复制起始期间需要超螺旋化,以促进 DNA 解旋酶(可能是 DnaB 蛋白)进入 DNA 链之间。