Bailey Scott, Eliason William K, Steitz Thomas A
Department of Molecular Biophysics and Biochemistry and Howard Hughes Medical Institute, Yale University, New Haven, CT 06520, USA.
Science. 2007 Oct 19;318(5849):459-63. doi: 10.1126/science.1147353.
The complex between the DnaB helicase and the DnaG primase unwinds duplex DNA at the eubacterial replication fork and synthesizes the Okazaki RNA primers. The crystal structures of hexameric DnaB and its complex with the helicase binding domain (HBD) of DnaG reveal that within the hexamer the two domains of DnaB pack with strikingly different symmetries to form a distinct two-layered ring structure. Each of three bound HBDs stabilizes the DnaB hexamer in a conformation that may increase its processivity. Three positive, conserved electrostatic patches on the N-terminal domain of DnaB may also serve as a binding site for DNA and thereby guide the DNA to a DnaG active site.
DnaB解旋酶与DnaG引发酶形成的复合物在真细菌复制叉处解开双链DNA,并合成冈崎RNA引物。六聚体DnaB及其与DnaG的解旋酶结合结构域(HBD)形成的复合物的晶体结构表明,在六聚体内,DnaB的两个结构域以明显不同的对称性堆积,形成独特的双层环状结构。三个结合的HBD中的每一个都将DnaB六聚体稳定在一种可能会增加其持续合成能力的构象中。DnaB N端结构域上的三个带正电荷的保守静电斑块也可能作为DNA的结合位点,从而将DNA引导至DnaG活性位点。