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The herpes simplex virus type 1 DNA polymerase processivity factor, UL42, does not alter the catalytic activity of the UL9 origin-binding protein but facilitates its loading onto DNA

机译:单纯疱疹病毒1型DNA聚合酶增生因子UL42不会改变UL9起始结合蛋白的催化活性,但有助于将其加载到DNA上

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The herpes simplex virus type 1 UL42 DNA polymerase processivity factor interacts physically with UL9 and enhances its ability to unwind short, partially duplex DNA. In this report, ATP hydrolysis during translocation of UL9 on single-stranded (ss) or partially duplex DNA was examined in the presence and absence of UL42 to determine the effect of UL42 on the catalytic function of UL9. Our studies reveal that a homodimer of UL9 is sufficient for DNA translocation coupled to ATP hydrolysis, and the steady-state ATPase catalytic rate was greater on partially duplex DNA than on ss DNA in the presence or absence of UL42. Although UL42 protein increased the steady-state rate for ATP hydrolysis by UL9 during translocation on either partially duplex or ss DNA, UL42 had no significant effect on the intrinsic ATPase activity of UL9. UL42 also had no effect on the catalytic rate of ATP hydrolysis when UL9 was not limiting but enhanced the steady-state ATPase rate at only subsaturating UL9 concentrations. At subsaturating UL9 to DNA ratios, stoichiometric concentrations of UL42 were shown to increase the amount of UL9 bound to ss DNA at equilibrium. These data support a model whereby UL42 increases the ability of UL9 to load onto DNA, thus increasing its ability to assemble into a functional complex capable of unwinding duplex DNA.
机译:单纯疱疹病毒1型UL42 DNA聚合酶持续性因子与UL9发生物理相互作用,并增强了其解开短链,部分双链DNA的能力。在此报告中,在存在和不存在UL42的情况下,检查了UL9在单链(ss)或部分双链DNA上易位期间的ATP水解,以确定UL42对UL9催化功能的影响。我们的研究表明,在存在或不存在UL42的情况下,UL9的同型二聚体足以实现与ATP水解偶联的DNA移位,并且在部分双链体DNA上,稳态ATPase催化速率要比在ss DNA上更高。尽管UL42蛋白在部分双链体或ss DNA上易位期间增加了UL9水解ATP的稳态速率,但UL42对UL9的固有ATPase活性没有明显影响。当UL9没有限制但仅在亚饱和的UL9浓度下提高稳态ATPase速率时,UL42对ATP水解的催化速率也没有影响。在UL9与DNA的比例不饱和时,显示出化学计量浓度的UL42可增加平衡时与单链DNA结合的UL9量。这些数据支持一个模型,其中UL42增加了UL9加载到DNA上的能​​力,从而提高了其组装成能够解开双链DNA的功能复合物的能力。

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