Investigation of the interactions of anticancer drugs with tyrosine kinase enzyme using semi-empirical methods and comparisons with DFT Calculations

Q3 Biochemistry, Genetics and Molecular Biology Turkish Computational and Theoretical Chemistry Pub Date : 2022-12-15 DOI:10.33435/tcandtc.1089782
Y. Is
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Abstract

In this work, the interaction energies of some commercial molecules that are still used clinically with aminoacids in the active region of the tyrosine kinase were calculated by semi-empirical methods such as AM1 and PM3. There are already some results calculated with DFT methods and published in an article previously. By comparing the results there with those found here, it has been discussed whether semi-empirical methods with much shorter computation times can be used to estimate the most critical aminoacids for the tyrosine kinase enzyme instead of DFT methods which take much more time. According to the results obtained here, in order for semi-empirical methods to be used instead of DFT methods for this purpose, the examined ligands must have an electrical charge in the physiological environment. In other words, the hypothesis put forward remains valid only if the ligand under consideration has a charge. The use of semi-empirical methods such as AM1 and PM3 instead of DFT methods to estimate the residues with which a molecule that does not have any electrical charge interacts most strongly did not yield overlapping results.
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用半经验方法研究抗癌药物与酪氨酸激酶的相互作用,并与DFT计算比较
在这项工作中,一些仍在临床上使用的商业分子与酪氨酸激酶活性区域的氨基酸的相互作用能通过半经验方法(如AM1和PM3)计算。已经有一些用DFT方法计算的结果在之前的文章中发表过。通过比较那里的结果与这里的结果,讨论了计算时间短得多的半经验方法是否可以用来估计酪氨酸激酶酶的最关键氨基酸,而不是花费更多时间的DFT方法。根据这里得到的结果,为了用半经验方法代替DFT方法来达到这个目的,被检测的配体必须在生理环境中具有电荷。换句话说,所提出的假设只有在考虑的配体带电荷时才有效。使用半经验方法,如AM1和PM3,而不是DFT方法来估计与没有任何电荷的分子相互作用最强烈的残基,并没有产生重叠的结果。
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来源期刊
Turkish Computational and Theoretical Chemistry
Turkish Computational and Theoretical Chemistry Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
CiteScore
2.40
自引率
0.00%
发文量
4
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