Exploration of binding mechanism of triclosan towards cancer markers using molecular docking and molecular dynamics

Exploration of binding mechanism of triclosan towards cancer markers using molecular docking and molecular dynamics
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DOI:
10.1016/j.chemosphere.2022.133550
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发表时间:
2022-01-07
期刊:
影响因子:
8.8
通讯作者:
Bhunia, Biswanath
Bhunia, Biswanath
中科院分区:
环境科学与生态学2区
文献类型:
--
作者:
Bhardwaj, Prashant;Biswas, G. P.;Bhunia, Biswanath

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5-氯-2-(2,4-二氯苯氧基)苯酚分子被称为三氯生 (TCS),它也是一种潜在的内分泌干扰合成化学品。 TCS 暴露与人类烯酰基载体蛋白还原酶 (hER) 的控制有关,而 hER 与一系列危及生命的疾病有关。然而,除了 hER 之外,导致多种癌症的 TCS 新蛋白靶标尚不清楚。这项工作的目标是研究 TCS 和来自各种癌症信号通路的蛋白质的蛋白质结合模式。 Discovery Studio 4.1用于对蛋白质-三氯生复合物进行分子对接和分子动力学(MD)。首先使用基于 CHARMM 的对接与大于 21.40 kcal/mol 的 CDOCKER 能量筛选蛋白质。 Fas 相关死亡结构域 (FADD)、受体相互作用蛋白 1 (RIP1)、F-Kappa B 诱导激酶 (NIK)、c-Jun N 末端激酶 (JNK)、凋亡信号调节激酶 1 (ASK1)、B 细胞淋巴瘤 2 (Bcl-2)、凋亡诱导因子的 CDOCKER 能量 (AIF)、α-微管蛋白和肌动蛋白分别为-20.68 kcal/mol、-26.88 kcal/mol、-23.43 kcal/mol、-22.21 kcal/mol、-20.40 kcal/mol、-21.10 kcal/mol、-20.98 kcal/mol、-24.67 kcal/mol 和-23.09 kcal/mol 分别。使用 CHARMM 力场通过标准动力学级联工具对筛选的蛋白质进行 MD。使用能量-时间图、均方根偏差 (RMSD) 和均方根波动 (RMSF) 来获取 MD 结果。 α-微管蛋白、NIK、FADD和RIP1的100个构象异构体被发现具有增加RMSD的趋势,而Bcl-2、ASK1、AIF、Actin和JNK蛋白具有较低的RMSD值。与 FADD、AIF 和 JNK 相比,Bcl-2、ASK1、α-微管蛋白、肌动蛋白、NIK 和 RIP1 残基的 RMSF 变异较高。在能量变化中也看到了类似的模式,其范围从 1000 kcal/mol 到 2000 kcal/mol。与 FADD、ASK1、AIF、肌动蛋白、α-微管蛋白、NIK 和 JNK 相比,RIP1 和 Bcl-2 在侧链 RMSF 中显示出更多变异。因此,可以推测凋亡信号通路的AIF和JNK蛋白在TCS介导的反应中至关重要。
The molecule 5-chloro-2-(2,4-dichlorophenoxy) phenol is well-known as Triclosan (TCS), which is also a potential endocrine disrupting synthetic chemical. TCS exposure has been connected to the control of the human enoyl-acyl carrier protein-reductase (hER), which has been linked to a range of life threatening diseases. However, other than hER, the new protein targets for TCS that are responsible for a variety of cancers are yet unclear. The goal of this work is to investigate into the protein binding patterns of TCS and proteins from various cancer signaling pathways. Discovery Studio 4.1 was used to perform molecular docking and molecular dynamics (MD) on the protein-triclosan complex. The proteins were first screened using CHARMM-based docking with a CDOCKER energy greater than-21.40 kcal/mol. The CDOCKER energies of Fas-associated death domain (FADD), Receptor-interacting protein 1 (RIP1), F-Kappa B-inducing kinase (NIK), c-Jun N-terminal kinase (JNK), Apoptosis signal-regulating kinase 1 (ASK1), B-cell lymphoma 2 (Bcl-2), Apoptosis-inducing factor (AIF), alpha-tubulin, and Actin were-20.68 kcal/mol,-26.88 kcal/mol,-23.43 kcal/mol,-22.21 kcal/mol,-20.40 kcal/ mol,-21.10 kcal/mol,-20.98 kcal/mol,-24.67 kcal/mol, and-23.09 kcal/mol respectively. MD was performed on the screened proteins by standard dynamics cascade tool using CHARMM Force field. The MD results were accessed using the energy-time graph, root-mean-square deviation (RMSD), and root mean square fluctuations (RMSF). The 100 conformers of alpha-tubulin, NIK, FADD, and RIP1 were found to have a trend of increasing RMSD, whereas Bcl-2, ASK1, AIF, Actin, and JNK proteins had lower RMSD values. In compared to FADD, AIF, and JNK, the RMSF variations of the Bcl-2, ASK1, alpha-tubulin, Actin, NIK, and RIP1 residues were shown to be high. Similar patterns were seen in the energy variations, which range from 1000 kcal/mol to 2000 kcal/mol. RIP1 and Bcl-2 showed more variation in the sidechain RMSF in comparison to FADD, ASK1, AIF, Actin, alpha-tubulin, NIK and JNK. Thus, it can be postulated that AIF and JNK proteins of apoptosis signaling pathway are pivotal in the TCS mediated reactions.