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3D QSAR and Pharmacophore Study of Curcuminoids and Curcumin Analogs: Interaction with Thioredoxin Reductase

机译:姜黄素和姜黄素类似物的3D QSAR和药理学研究:与硫氧还蛋白还原酶的相互作用

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摘要

Curcumin is the yellow pigment of Curcuma longa that irreversibly inhibits the activity of thioredoxin reductase (TrxR) and forms adduct. TrxR, a homodimeric enzyme with E and F chains, is responsible for redox control of the cell and defense against oxidative stress. It is also well known that TrxR is over-expressed in tumor cells. Hence TrxR is a promising target for curcumin based therapy. Binding site of TrxR for curcumin is at the interface of homodimers. In the present study, naturally occurring curcuminoids and forty four synthetic analogs of curcumin were docked with SP/XP glide suite and E-pharmacophore was simulated. E-pharmacophore of both chains has shown three donor features and one acceptor feature. 3D atom based QSAR models have been proposed for the two series of curcumin analogues of known IC(50)values. The data obtained indicates that the training set model is quite efficient to predict the test set of data. Obtained models and ADMET prediction could be employed for design and synthesis of more potent inhibitors of TrxR.
机译:姜黄素是姜黄的黄色颜料,它不可逆地抑制硫氧还蛋白还原酶(TrxR)的活性并形成加合物。 TrxR是具有E和F链的同型二聚酶,负责细胞的氧化还原控制并防御氧化应激。众所周知,TrxR在肿瘤细胞中过表达。因此,TrxR是基于姜黄素的疗法的有希望的靶标。 TrxR与姜黄素的结合位点在同二聚体的界面上。在本研究中,将天然存在的姜黄素和四十四种姜黄素的合成类似物与SP / XP滑动套件对接,并模拟了E-药效团。两条链的电子药效团都显示出三个供体特征和一个受体特征。已经针对已知IC(50)值的两个姜黄素类似物系列提出了基于3D原子的QSAR模型。获得的数据表明训练集模型对于预测数据的测试集非常有效。获得的模型和ADMET预测可用于设计和合成更有效的TrxR抑制剂。

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