Nelson Scott W, Yang Jingsong, Benkovic Stephen J
Department of Chemistry, Pennsylvania State University, University Park, Pennsylvania 16802, USA.
J Biol Chem. 2006 Mar 31;281(13):8697-706. doi: 10.1074/jbc.M512185200. Epub 2006 Jan 9.
The T4 helicase loading protein (gp59) interacts with a multitude of DNA replication proteins. In an effort to determine the functional consequences of these protein-protein interactions, point mutations were introduced into the gp59 protein. Mutations were chosen based on the available crystal structure and focused on hydrophobic residues with a high degree of solvent accessibility. Characterization of the mutant proteins revealed a single mutation, Y122A, which is defective in polymerase binding and has weakened affinity for the helicase. The interaction between single-stranded DNA-binding protein and Y122A is unaffected, as is the affinity of Y122A for DNA substrates. When standard concentrations of helicase are employed, Y122A is unable to productively load the helicase onto forked DNA substrates. As a result of the loss of polymerase binding, Y122A cannot inhibit the polymerase during nucleotide idling or prevent it from removing the primer strand of a D-loop. However, Y122A is capable of inhibiting strand displacement synthesis by polymerase. The retention of strand displacement inhibition by Y122A, even in the absence of a gp59-polymerase interaction, indicates that there are two modes of polymerase inhibition by gp59. Inhibition of the polymerase activity only requires gp59 to bind to the replication fork, whereas inhibition of the exonuclease activity requires an interaction between the polymerase and gp59. The inability of Y122A to interact with both the polymerase and the helicase suggests a mechanism for polymerase unlocking by the helicase based on a direct competition between the helicase and polymerase for an overlapping binding site on gp59.
T4解旋酶装载蛋白(gp59)与多种DNA复制蛋白相互作用。为了确定这些蛋白质-蛋白质相互作用的功能后果,将点突变引入gp59蛋白中。根据现有的晶体结构选择突变,重点关注具有高溶剂可及性的疏水残基。对突变蛋白的表征揭示了一个单一突变Y122A,它在聚合酶结合方面存在缺陷,并且对解旋酶的亲和力减弱。单链DNA结合蛋白与Y122A之间的相互作用未受影响,Y122A对DNA底物的亲和力也是如此。当使用标准浓度的解旋酶时,Y122A无法有效地将解旋酶装载到叉状DNA底物上。由于聚合酶结合的丧失,Y122A在核苷酸空转期间无法抑制聚合酶,也无法阻止其去除D环的引物链。然而,Y122A能够抑制聚合酶的链置换合成。即使在不存在gp59-聚合酶相互作用的情况下,Y122A仍保留链置换抑制作用,这表明gp59对聚合酶有两种抑制模式。抑制聚合酶活性仅需要gp59结合到复制叉,而抑制核酸外切酶活性则需要聚合酶与gp59之间的相互作用。Y122A无法与聚合酶和解旋酶都相互作用,这表明解旋酶通过与聚合酶直接竞争gp59上的重叠结合位点来解锁聚合酶的机制。