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Unique and Highly Selective Anticytomegalovirus Activities of Artemisinin-Derived Dimer Diphenyl Phosphate Stem from Combination of Dimer Unit and a Diphenyl Phosphate Moiety

机译:青蒿素衍生的二聚体磷酸二苯酯与二聚体单元和磷酸二苯酯部分结合的独特且高度选择性的抗巨细胞病毒活性

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摘要

We report that the artemisinin-derived dimer diphenyl phosphate (DPP; dimer 838) is the most selective inhibitor of human cytomegalovirus (CMV) replication among a series of artemisinin-derived monomers and dimers. Dimer 838 was also unique in being an irreversible CMV inhibitor. The peroxide unit within artemisinins' chemical structures is critical to their activities, and its absence results in loss of anti-CMV activities. Surprisingly, the deoxy dimer of 838 retained modest anti-CMV activity, suggesting that the DPP moiety of dimer 838 contributes to its anti-CMV activities. DPP alone did not inhibit CMV replication, but triphenyl phosphate (TPP) had modest CMV inhibition, although its selectivity index was low. Artemisinin DPP derivatives dimer 838 and monomer diphenyl phosphate (compound 558) showed stronger CMV inhibition and a higher selectivity index than their analogs lacking the DPP unit. An add-on and removal assay revealed that removing DPP derivatives (compounds 558 and 838) but not the non-DPP backbones (artesunate and compound 606) at 24 h postinfection (hpi) already resulted in dominant CMV inhibition. CMV inhibition was fully irreversible with 838 and partially irreversible with 558, while non-DPP artemisinins were reversible inhibitors. While all artemisinin derivatives and TPP reduced the expression of the CMV immediate early 2 (IE2), UL44, and pp65 proteins at or after 48 hpi, only TPP inhibited the expression of both IE1 and IE2. Combination of a non-DPP dimer (compound 606) with TPP was synergistic in CMV inhibition, while ganciclovir and TPP were additive. Although TPP shared structural similarity with monomer DPP (compound 558) and dimer DPP (compound 838), its pattern of CMV inhibition was significantly different from the patterns of the artemisinins. These findings demonstrate that the DPP group contributes to the unique activities of compound 838.
机译:我们报告说,青蒿素衍生的二聚磷酸二苯酯(DPP;二聚体838)是人类巨细胞病毒(CMV)复制的一系列青蒿素衍生的单体和二聚体中最具选择性的抑制剂。 Dimer 838在不可逆的CMV抑制剂方面也很独特。青蒿素化学结构中的过氧化物单元对它们的活性至关重要,而其缺失会导致抗CMV活性的丧失。令人惊讶的是,838的脱氧二聚体保留了适度的抗CMV活性,表明二聚体838的DPP部分有助于其抗CMV活性。单独使用DPP不能抑制CMV复制,但是磷酸三苯酯(TPP)具有适度的CMV抑制作用,尽管其选择性指数很低。青蒿素DPP衍生物二聚体838和单体磷酸二苯酯(化合物558)比没有DPP单元的类似物具有更强的CMV抑制作用和更高的选择性指数。附加和去除试验表明,在感染后(hpi)24 h去除DPP衍生物(化合物558和838)而不是非DPP骨架(青蒿琥酯和化合物606)已导致显性CMV抑制。 CMV抑制作用在838下是完全不可逆的,在558作用下是部分不可逆的,而非DPP青蒿素是可逆的抑制剂。尽管所有青蒿素衍生物和TPP在48 hpi或之后均降低了CMV立即早期2(IE2),UL44和pp65蛋白的表达,但只有TPP抑制了IE1和IE2的表达。非DPP二聚体(化合物606)与TPP的组合在CMV抑制方面具有协同作用,而更昔洛韦和TPP则具有累加作用。尽管TPP与单体DPP(化合物558)和二聚体DPP(化合物838)具有相似的结构,但其CMV抑制模式与青蒿素模式明显不同。这些发现表明,DPP基团有助于化合物838的独特活性。

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