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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Evaluation of potential flavonoid inhibitors of glyoxalase-I based on virtual screening and in vitro studies
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Evaluation of potential flavonoid inhibitors of glyoxalase-I based on virtual screening and in vitro studies

机译:基于虚拟筛选和体外研究评估潜在的乙二醛酶I类黄酮类抑制剂

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摘要

Glyoxalase-I (GLO-I) is a component of the ubiquitous detoxification system involved in the conversion of methylglyoxal (MG) to d-lactate in the glycolytic pathway. MG toxicity arises from its ability to form advanced glycation end products. GLO-I has been reported to be frequently overexpressed in various types of cancer cells. In this study, we performed structure-based virtual screening of focused flavonoids commercial library to identify potential and specific inhibitors of GLO-I. The compounds were ranked based on Glide extra precision docking score and five hits (curcumin, quercetin, morin, naringin and silibinin) were selected on the basis of their interaction with active site amino acid residues of GLO-I. Mixed mode QM/MM calculation was performed on the top-scoring hit to ascertain the role of zinc ion in ligand binding. In addition, the identified hits were subjected to MM/GBSA binding energy prediction, ADME prediction and similarity studies. The hits were tested in vitro for cell viability, and GLO-I inhibition. Naringin (ST072162) was found to be most potent inhibitor of GLO-I among the identified hits with highest glide XP dock score of -14.906. These findings suggest that naringin could be a new scaffold for designing inhibitors against GLO-I with potential application as anticancer agents.
机译:乙二醛酶-I(GLO-1)是普遍存在的解毒系统的一个组成部分,参与了糖酵解途径中甲基乙二醛(MG)到d-乳酸的转化。 MG的毒性来自其形成高级糖基化终产物的能力。据报道,GLO-1在各种类型的癌细胞中经常过表达。在这项研究中,我们对重点类黄酮商业文库进行了基于结构的虚拟筛选,以鉴定潜在的和特异性的GLO-1抑制剂。根据Glide的超精密对接得分对化合物进行排名,并根据它们与GLO-1活性位点氨基酸残基的相互作用选择五个命中(姜黄素,槲皮素,莫林,柚皮苷和水飞蓟宾)。对得分最高的命中进行混合模式QM / MM计算,以确定锌离子在配体结合中的作用。另外,对鉴定出的命中进行MM / GBSA结合能预测,ADME预测和相似性研究。体外测试了命中的细胞活力和GLO-1抑制。在已鉴定的命中中,柚皮苷(ST072162)是最有效的GLO-1抑制剂,滑行XP码头得分最高为-14.906。这些发现表明,柚皮苷可能是用于设计针对GLO-1的抑制剂的新支架,其潜在用途为抗癌剂。

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