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Complex of the herpes simplex virus type 1 origin binding protein UL9 with DNA as a platform for the design of a new type of antiviral drugs

机译:单纯疱疹病毒1型起源结合蛋白UL9与DNA的复合体作为设计新型抗病毒药物的平台

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摘要

The herpes simplex virus type 1 origin-binding protein, OBP, is a DNA helicase encoded by the UL9 gene. The protein binds in a sequence-specific manner to the viral origins of replication, two OriS sites and one OriL site. In order to search for efficient inhibitors of the OBP activity, we have obtained a recombinant origin-binding protein expressed in Escherichia coli cells. The UL9 gene has been amplified by PCR and inserted into a modified plasmid pET14 between NdeI and KpnI sites. The recombinant protein binds to Box I and Box II sequences and possesses helicase and ATPase activities. In the presence of ATP and viral protein ICP8 (single-strand DNA-binding protein), the initiator protein induces unwinding of the minimal OriS duplex (≈80 bp). The protein also binds to a single-stranded DNA (OriS*) containing a stable Box I-Box III hairpin and an unstable AT-rich hairpin at the 3′-end. In the present work, new minor groove binding ligands have been synthesized which are capable to inhibit the development of virus-induced cytopathic effect in cultured Vero cells. Studies on binding of these compounds to DNA and synthetic oligonucleotides have been performed by fluorescence methods, gel mobility shift analysis and footprinting assays. Footprinting studies have revealed that Pt-bis-netropsin and related molecules exhibit preferences for binding to the AT-spacer in OriS. The drugs stabilize structure of the AT-rich region and inhibit the fluctuation opening of AT-base pairs which is a prerequisite to unwinding of DNA by OBP. Kinetics of ATP-dependent unwinding of OriS in the presence and absence of netropsin derivatives have been studied by measuring the efficiency of Forster resonance energy transfer (FRET) between fluorophores attached to 5′- and 3′- ends of an oligonucleotide in the minimal OriS duplex. The results are consistent with the suggestion that OBP is the DNA Holiday junction (HJ) binding helicase. The protein induces conformation changes (bending and partial melting) of OriS duplexes and stimulates HJ formation in the absence of ATP. The antiviral activity of bis-netropsins is coupled with their ability to inhibit the fluctuation opening of AT base pairs in the A + T cluster and their capacity to stabilize the structure of the AT-rich hairpin in the single-stranded oligonucleotide corresponding to the upper chain in the minimal duplex OriS. The antiviral activities of bis-netropsins in cell culture and their therapeutic effects on HSV1-infected laboratory animals have been studied.
机译:单纯疱疹病毒1型起源结合蛋白OBP是由UL9基因编码的DNA解旋酶。该蛋白质以序列特异性的方式与病毒复制起点,两个OriS位点和一个OriL位点结合。为了寻找OBP活性的有效抑制剂,我们获得了在大肠杆菌细胞中表达的重组起始结合蛋白。 UL9基因已通过PCR扩增,并插入到NdeI和KpnI位点之间的修饰质粒pET14中。重组蛋白与Box I和Box II序列结合,并具有解旋酶和ATPase活性。在ATP和病毒蛋白ICP8(单链DNA结合蛋白)存在的情况下,起始蛋白诱导最小的OriS双链体解链(约80 bp)。该蛋白质还与单链DNA(OriS *)结合,该单链DNA在3'端含有稳定的Box I-Box III发夹和不稳定的富含AT的发夹。在目前的工作中,已经合成了新的小沟结合配体,其能够抑制培养的Vero细胞中病毒诱导的细胞病变作用的发展。这些化合物与DNA和合成寡核苷酸结合的研究已通过荧光方法,凝胶迁移率迁移分析和足迹测定法进行。足迹研究表明,Pt-bis-netropsin及其相关分子在与OriS中的AT-间隔子结合方面表现出偏好。该药物可稳定富含AT的区域的结构,并抑制AT碱基对的波动开放,这是OBP解开DNA的先决条件。通过在最小的OriS中测量寡核苷酸的5'-和3'-末端连接的荧光团之间的Forster共振能量转移(FRET)效率,研究了在存在和不存在netropsin衍生物的情况下OriS ATP依赖的解链动力学。双工。结果与OBP是结合DNA假日连接(HJ)的解旋酶的建议一致。该蛋白质诱导OriS双链体的构象变化(弯曲和部分融解),并在不存在ATP的情况下刺激HJ的形成。 bis-netropsins的抗病毒活性与它们抑制A + T簇中AT碱基对的波动开放的能力以及稳定对应于上链的单链寡核苷酸中富含AT的发夹结构的能力有关。最小双工OriS中的链。研究了bis-netropsins在细胞培养中的抗病毒活性及其对被HSV1感染的实验动物的治疗作用。

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