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Betulinic acid, a potent inhibitor of eukaryotic topoisomerase I: identification of the inhibitory step, the major functional group responsible and development of more potent derivatives

机译:桦木酸,一种有效的真核拓扑异构酶抑制剂:抑制步骤的确定,负责的主要官能团和更有效的衍生物的开发

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Background: Betulinic acid, a naturally abundant, plant derived, pentacyclic triterpenoid possesses anti- HIV, anti-malarial and anti-inflammatory properties and has recently emerged as a potentanti-tumor compound. This study explores the mode of action of betulinic acid on eukaryotic topoisomerase I and identifies the major functional group responsible along with more potent derivatives.Material/Methods: Topoisomerase I relaxation activity was electrophoretically measured by the decreased mobility of the relaxed monomers followed by ethidium bromide staining. DNA cleavage was studied by electrophoretic separation of the nicked monomers from the relaxed and supercoiled monomers in presence of ethidium bromide. In-vivo DNA cleavage was studied in blasted mouse splenocytes by the SDS-K+ trapping of 3H-DNA-topoisomerase I-camptothecin ternary complex.Results: Betulinic acid exerts its inhibitory effect by preventing topoisomerase I-DNA interaction as a result of which the ‘cleavable complex’ is not formed. In consequence, it also acts as an antagonistto camptothecin-mediated cleavage. A series of analogues modified at C-3, C-17 and C- 20 positions of betulinic acid were subsequently assayed for inhibition of topoisomerase I catalytic activity. Replacement of the 17-carboxylic group reduces the inhibitory effect and decarboxylation leads to the complete loss of inhibitory effect.Conclusion: This study is the first detail report of betulinic acid as a very potent inhibitior of eukaryotic topoisomerase I and highlights the necessity of the carboxylic functional group. Dihydro betulinic acid is the most potent (IC50=0.5 µM) pentacyclic triterpenoid to inhibit eukaryotic topoisomerase I till date and can be exploited as a strong candidate for anti-tumor drug designing.
机译:背景:桦木酸是一种天然的,丰富的植物来源的五环三萜类化合物,具有抗HIV,抗疟疾和抗发炎的特性,最近成为一种有效的抗肿瘤化合物。这项研究探索了桦木酸对真核生物拓扑异构酶I的作用方式,并确定了负责作用的主要官能团以及更有效的衍生物。染色。通过在溴化乙锭存在下从松弛和超螺旋单体中电泳分离带切口的单体,研究了DNA裂解。通过3D-DNA-拓扑异构酶I-喜树碱三元复合物的SDS-K +捕获,研究了爆炸后的小鼠脾细胞中的体内DNA裂解结果。没有形成“可裂解的复合物”。因此,它也可以作为喜树碱介导的裂解的拮抗剂。随后测定了在桦木酸的C-3,C-17和C-20位置修饰的一系列类似物对拓扑异构酶I催化活性的抑制。 17-羧酸基团的取代降低了抑制作用,脱羧作用导致抑制作用的完全丧失。结论:这项研究是关于桦木酸作为真核拓扑异构酶I的强效抑制剂的第一个详细报道,并强调了羧酸的必要性功能小组。迄今为止,二氢桦木酸是最有效的(IC50 = 0.5 µM)五环三萜类化合物,可抑制真核拓扑异构酶I,可作为抗肿瘤药物设计的强大候选药物。

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