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Structural and Biophysical Characterization of the Proteins Interacting with the Herpes Simplex Virus 1 Origin of Replication

机译:与单纯疱疹病毒1相互作用的蛋白质相互作用的蛋白质的结构和生物物理表征

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摘要

The C terminus of the herpes simplex virus type 1 origin-binding protein, UL9ct, interacts directly with the viral single-stranded DNA-binding protein ICP8. We show that a 60-amino acid C-terminal deletion mutant of ICP8 (ICP8ΔC) also binds very strongly to UL9ct. Using small angle x-ray scattering, the low resolution solution structures of UL9ct alone, in complex with ICP8ΔC, and in complex with a 15-mer double-stranded DNA containing Box I of the origin of replication are described. Size exclusion chromatography, analytical ultracentrifugation, and electrophoretic mobility shift assays, backed up by isothermal titration calorimetry measurements, are used to show that the stoichiometry of the UL9ct-dsDNA15-mer complex is 2:1 at micromolar protein concentrations. The reaction occurs in two steps with initial binding of UL9ct to DNA (Kd ∼ 6 nm) followed by a second binding event (Kd ∼ 0.8 nm). It is also shown that the stoichiometry of the ternary UL9ct-ICP8ΔC-dsDNA15-mer complex is 2:1:1, at the concentrations used in the different assays. Electron microscopy indicates that the complex assembled on the extended origin, oriS, rather than Box I alone, is much larger. The results are consistent with a simple model whereby a conformational switch of the UL9 DNA-binding domain upon binding to Box I allows the recruitment of a UL9-ICP8 complex by interaction between the UL9 DNA-binding domains.
机译:1型单纯疱疹病毒起源结合蛋白的C末端UL9ct与病毒单链DNA结合蛋白ICP8直接相互作用。我们显示,ICP8(ICP8ΔC)的60个氨基酸的C端缺失突变体也与UL9ct结合非常牢固。使用小角度X射线散射,描述了单独的UL9ct的低分辨率溶液结构,与ICP8ΔC的复合物以及与包含复制起点Box I的15-mer双链DNA的复合物。体积排阻色谱,分析超速离心和电泳迁移率变动分析(以等温滴定量热法测量为后盾)用于显示UL9ct-dsDNA15-mer复合物的化学计量比为2:1(微摩尔蛋白浓度)。反应分两步进行,首先将UL9ct与DNA结合(Kd〜6 nm),然后进行第二次结合事件(Kd〜0.8 nm)。还显示在不同测定中使用的浓度下,三元UL9ct-ICP8ΔC-dsDNA15-mer复合物的化学计量为2:1:1。电子显微镜表明,在扩展原点oriS上组装的复合物,而不是单独的Box I,要大得多。结果与简单模型一致,在该模型中,结合框I的UL9 DNA结合结构域的构象转换允许通过UL9 DNA结合结构域之间的相互作用募集UL9-ICP8复合物。

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