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Structure-based virtual screening and molecular docking for the identification of potential multi-targeted inhibitors against breast cancer

机译:基于结构的虚拟筛选和分子对接用于鉴定潜在的多靶点乳腺癌抑制剂

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Breast cancer is characterized by an uncontrolled growth of cells in breast tissue. Genes that foster cell growth in breast cells are overexpressed, giving rise to breast tumors. The identification of effective inhibitors represents a rational chemopreventive strategy. The current in silico study provides a pharmacoinformatic approach for the identification of active compounds against a co-chaperone HSP90 and the human epidermal growth factor receptors EGFR and HER2eu receptor. The elevated levels of expression of these target proteins have been documented in breast cancer. The utilization of drug-likeness filters helped to evaluate the pharmacological activity of potential lead compounds. Those fulfilling this criterion were subjected to energy minimization for 1000 steepest descent steps at a root means square gradient of 0.02 with an Amber ff12SB force field. Based on molecular docking results and binding interaction analysis, this study represents five chemical compounds (S-258282355, S-258012947, S-259417539, S-258002927, and S-259411474) that indicate high binding energies that range between ?8.7 to ?10.3 kcal/mol. With high cytochrome P inhibitory promiscuity activity, these multi-targeted potential hits portray not only good physiochemical interactions but also an excellent profile of absorption, distribution, metabolism, excretion, and toxicity, which hypothesizes that these compounds can be developed as anticancer drugs in the near future.
机译:乳腺癌的特征是乳腺癌组织中细胞的不受控制的生长。促进乳腺细胞生长的基因被过度表达,引起乳腺肿瘤。有效抑制剂的鉴定代表了合理的化学预防策略。当前的计算机模拟研究提供了一种药物信息学方法,可用于鉴定针对伴侣伴侣HSP90和人类表皮生长因子受体EGFR和HER2 / neu受体的活性化合物。这些靶蛋白的表达水平升高已在乳腺癌中得到证明。药物样过滤器的使用有助于评估潜在铅化合物的药理活性。满足此条件的设备在Amber ff12SB力场的均方根梯度为0.02的情况下,经过1000个最陡下降步骤的能量最小化。根据分子对接结果和结合相互作用分析,本研究代表了五种化学化合物(S-258282355,S-258012947,S-259417539,S-258002927和S-259411474),它们显示的高结合能在8.7至1600之间。 10.3大卡/摩尔这些具有多种作用的潜在靶点具有很高的细胞色素P抑制滥交活性,不仅表现出良好的理化相互作用,而且还具有出色的吸收,分布,代谢,排泄和毒性特征,这表明这些化合物可以作为抗癌药物开发出来。不远的将来。

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