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Natural Stilbenoids Isolated from Grapevine Exhibiting Inhibitory Effects against HIV-1 Integrase and Eukaryote MOS1 Transposase In Vitro Activities

机译:从葡萄中分离出的天然Stilbenoids对HIV-1整合酶和真核生物MOS1转座酶具有体外抑制活性。

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摘要

Polynucleotidyl transferases are enzymes involved in several DNA mobility mechanisms in prokaryotes and eukaryotes. Some of them such as retroviral integrases are crucial for pathogenous processes and are therefore good candidates for therapeutic approaches. To identify new therapeutic compounds and new tools for investigating the common functional features of these proteins, we addressed the inhibition properties of natural stilbenoids deriving from resveratrol on two models: the HIV-1 integrase and the eukaryote MOS-1 transposase. Two resveratrol dimers, leachianol F and G, were isolated for the first time in Vitis along with fourteen known stilbenoids: E-resveratrol, E-piceid, E-pterostilbene, E-piceatannol, (+)-E-ε-viniferin, E-ε-viniferinglucoside, E-scirpusin A, quadragularin A, ampelopsin A, pallidol, E-miyabenol C, E-vitisin B, hopeaphenol, and isohopeaphenol and were purified from stalks of Vitis vinifera (Vitaceae), and moracin M from stem bark of Milliciaexelsa (Moraceae). These compounds were tested in in vitro and in vivo assays reproducing the activity of both enzymes. Several molecules presented significant inhibition on both systems. Some of the molecules were found to be active against both proteins while others were specific for one of the two models. Comparison of the differential effects of the molecules suggested that the compounds could target specific intermediate nucleocomplexes of the reactions. Additionally E-pterostilbene was found active on the early lentiviral replication steps in lentiviruses transduced cells. Consequently, in addition to representing new original lead compounds for further modelling of new active agents against HIV-1 integrase, these molecules could be good tools for identifying such reaction intermediates in DNA mobility processes.
机译:多核苷酸转移酶是参与原核生物和真核生物中几种DNA迁移机制的酶。其中一些诸如逆转录病毒整合对于致病过程至关重要,因此是治疗方法的良好候选者。为了确定新的治疗化合物和研究这些蛋白质共同功能特征的新工具,我们在两种模型上研究了源自白藜芦醇的天然类芪衍生物对两种模型的抑制作用:HIV-1整合酶和真核生物MOS-1转座酶。在葡萄中首次分离出两个白藜芦醇二聚体,花生四烯酸F和G,以及十四种已知的类芪类化合物:E-白藜芦醇,E-哌啶,E-蝶烯,E-皮三酚,(+)-E-ε-葡萄素,E -ε-viniferinglucoside,E-scirpusin A,quadragularin A,ampelopsin A,pallidol,E-miyabenol C,E-vitisin B,hopephenol和isohopeaphenol,并从葡萄树的茎中提纯,葡萄干M从茎皮中提取Milliciaexelsa(桑科)。这些化合物在体外和体内试验中均经过测试,可再现两种酶的活性。几个分子对两个系统都表现出明显的抑制作用。发现某些分子对两种蛋白质均具有活性,而其他分子则对两种模型之一具有特异性。分子差异作用的比较表明,该化合物可以靶向反应的特定中间核复合物。另外,在慢病毒转导的细胞中,发现E-上皮二苯乙烯在早期慢病毒复制步骤中具有活性。因此,除了代表新的原始先导化合物以进一步建模针对HIV-1整合酶的新活性剂外,这些分子还可以作为在DNA迁移过程中鉴定此类反应中间体的良好工具。

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