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Data on molecular docking of tautomers and enantiomers of ATTAF-1 and ATTAF-2 selectivty to the human/fungal lanosterol-14α-demethylase

机译:对人/真菌Lanterol-14α-脱甲基酶的ATAF-1和ATAF-2选择性的互变异构体和ATAF-2选择性的互变异构体和对映体的数据

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摘要

The data have been obtained for tautomers and enantiomers of ATTAF-1 and ATTAF-2 that were developed based on antifungal standard drugs with triazole scaffold. These compounds were docked into the human and fungal lanosterol-14α-demethylase. In order to validate the data, 8 standard triazole antifungal drugs (Fluconazole, Itraconazole, Posaconazole, Ravuconazole, Albaconazole, Voriconazole, Isavuconazole and Efinaconazole) were also docked into the human and fungal lanosterol-14α-demethylase. The binding conformations of these molecules and their interactions with lanosterol-14α-demethylase may inform the development of further small molecule lanosterol-14α-demethylase inhibitors with significant selectivity toward this enzyme. The analysis has done on the basis of type of interactions (bond type and distance). The length of the Fe-N coordination bond for (R)-N2-ATTAF-1 and (S)-N1-ATTAF-2 complexes is obtained 6.36 and 4.19 Å, respectively and about 2 Å in the other tautomer and enantiomer complexes, reflecting the lower basicity of the N-4 atom in the 1,2,4-triazole ring of (R)-N2-ATTAF-1 and (S)-N1-ATTAF-2 in comparison with the N-4 atom in the 1,2,4-triazole ring in other tautomers and enantiomers and supporting higher selectivity of (R)-N2-ATTAF-1 and (S)-N1-ATTAF-2 towards the target CYP51 enzymes vs. human. Interestingly, we have investigated unfavorable interactions (donor-donor) with TRP239 and MET378 for (R)-N2-ATTAF-1 and (S)-N1-ATTAF-2, respectively. These unfavorable interactions also have been seen in case of posaconazole and isavuconazole. The data presented in this article are related to the research paper entitled "In silico prediction of ATTAF-1 and ATTAF-2 selectivity towards human/fungal lanosterol 14α-demethylase using molecular dynamic simulation and docking approaches".
机译:已经为基于抗真菌标准药物的抗原标准药物开发的ATAF-1和ATTAF-2的互变异构体和映体的对映体获得的数据。将这些化合物停靠在人和真菌Lanterol-14α-脱甲基酶中。为了验证数据,8种标准三唑抗真菌药物(氟康唑,伊曲甘油,海康唑,Racuconazole,BaRaconazole,voriconazole,异戊酰胺)也被停靠在人和真菌Lanterol-14α-脱甲基酶中。这些分子的结合构象及其与Lanosterol-14α-脱甲基化酶的相互作用可以通过对该酶的显着选择性的选择性提供信息的进一步的小分子Lanosterol-14α-脱甲基酶抑制剂。该分析基于相互作用的类型(键类型和距离)进行。 (R)-N2- attAF-1和(S)-N1-ATTAF-2复合物的Fe-N配位键的长度分别为6.36和4.19Å,以及其他互变异构体和对映体复合物中的约2次,反映(R)-N2-ATTAF-1和(S)-N1-ATTAF-2的1,2,4-三唑环中N-4原子的较低碱度与N-4原子相比在其他互变异构体和对映体中的1,2,4-三唑环,并支持较高选择性(R)-N2-ATTAF-1和(S)-N1-ATTAF-2朝向靶CYP51酶与人。有趣的是,我们分别研究了TRP239和MET378的不利相互作用(供体供体供体)分别用于(R)-N2-ATTAF-1和(S)-N1-ATTAF-2。在posaconazole和异戊酰唑的情况下,这些不利的相互作用也已经出现。本文中提出的数据与使用分子动态模拟和对接方法的人/真菌Lanterol14α-Demethylase的Attaf-1和Attaf-1和Attaf-2选择性的硅预测中的研究文件有关。

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