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Adenovirus Type 5 DNA Binding Protein Stimulates Binding of DNA Polymerase to the Replication Origin

机译:5型腺病毒DNA结合蛋白可刺激DNA聚合酶与复制起点的结合

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摘要

The adenovirus (Ad) DNA-binding protein (DBP) is essential for the elongation phase of Ad DNA replication by unwinding the template in an ATP-independent fashion, employing its capacity to form multimers. DBP also enhances the rate of initiation, with the highest levels obtained at low concentrations of Ad DNA polymerase (Pol). Here, we show that stimulation of initiation depends on the template conformation. Maximal stimulation, up to 15-fold, is observed on double-stranded or viral TP-containing origins. The stimulation is reduced on partially single-stranded origins and DBP does not enhance initiation any more once the origin is completely unwound. This suggests a role for DBP in origin unwinding that is comparable to its unwinding capacity during elongation. However, mutant DBP proteins defective in unwinding and elongation can still enhance initiation on ds templates. DBP also stimulates the binding of nuclear factor I (NFI) to the origin and lowers the Km for coupling of the first nucleotide to the precursor terminal protein by Pol. Mobility shift experiments reveal that DBP stimulates the binding of Pol on double-stranded origin and nonorigin DNA but not on single-stranded DNA. This effect is specific for DBP and is also seen with other DNA Pols. Our results suggest that, rather than by origin unwinding, DBP enhances initiation by modulating the origin conformation such that DNA Pol can bind more efficiently.
机译:腺病毒(Ad)DNA结合蛋白(DBP)通过以不依赖ATP的方式展开模板,利用其形成多聚体的能力来展开Ad DNA复制的延长阶段。 DBP还提高了起始速率,在低浓度的Ad DNA聚合酶(Pol)下获得了最高水平。在这里,我们显示了启动刺激取决于模板构象。在包含双链或病毒TP的来源中观察到最大刺激,最多15倍。在部分单链起源上,刺激减少,一旦完全解开,DBP不再增强起始。这表明DBP在原材退绕中的作用与其在伸长过程中的退绕能力相当。但是,在展开和延伸方面存在缺陷的突变DBP蛋白仍可以增强ds模板上的起始。 DBP还刺激核因子I(NFI)与起点的结合,并通过Pol降低了第一个核苷酸与前体末端蛋白偶联的Km。迁移率迁移实验表明,DBP刺激Pol在双链起源和非起源DNA上的结合,但在单链DNA上却没有。此效应对DBP特有,在其他DNA Pols中也可见。我们的研究结果表明,DBP可以通过调节起点构象来增强起始,从而使DNA Pol可以更有效地结合,而不是通过展开起点来进行。

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