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Affinity comparison of different THCA synthase to CBGA using modeling computational approaches

机译:使用建模计算方法比较不同THCA合酶与CBGA的亲和力

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摘要

The Δ9-Tetrahydrocannabinol (THCA) is the primary psychoactive compound of Cannabis Sativa. It is produced by Δ1- Tetrahydrocannabinolic acid synthase (THCA) which catalyzes the oxidative cyclization of cannabigerolic acid (CBGA) the precursor of the THCA. In this study, we were interested by the three dimensional structure of THCA synthase protein. Generation of models were done by MODELLER v9.11 and homology modeling with Δ1-tetrahydrocannabinolic acid (THCA) synthase X ray structure (PDB code 3VTE) on the basis of sequences retrieved from GenBank. Procheck, Errat, and Verify 3D tools were used to verify the reliability of the six 3D models obtained, the overall quality factor and the Prosa Z-score were also used to check the quality of the six modeled proteins. The RMSDs for C-alpha atoms, main-chain atoms, side-chain atoms and all atoms between the modeled structures and the corresponding template ranged between 0.290 Å-1.252 Å, reflecting the good quality of the obtained models. Our study of the CBGA-THCA synthase docking demonstrated that the active site pocket was successfully recognized using computational approach. The interaction energy of CBGA computed in ‘fiber types’ proteins ranged between -4.1 95 kcal/mol and -5.95 kcal/mol whereas in the ‘drug type’ was about -7.02 kcal/mol to -7.16 kcal/mol, which maybe indicate the important role played by the interaction energy of CBGA in the determination of the THCA level in Cannabis Sativa L. varieties. Finally, we have proposed an experimental design in order to explore the binding energy source of ligand-enzyme in Cannabis Sativa and the production level of the THCA in the absence of any information regarding the correlation between the enzyme affinity and THCA level production. This report opens the doors to more studies predicting the binding site pocket with accuracy from the perspective of the protein affinity and THCA level produced in Cannabis Sativa.
机译:Δ 9-四氢大麻酚(THCA)是大麻的主要精神活性化合物。它是由Δ 1-四氢大麻酸合酶(THCA)产生的,它催化THCA的前体大麻二酸(CBGA)的氧化环化作用。在这项研究中,我们对THCA合酶蛋白的三维结构感兴趣。通过MODELLER v9.11进行模型生成,并根据从GenBank检索到的序列,使用Δ1-四氢大麻酸(THCA)合酶X射线结构(PDB代码3VTE)进行同源性建模。使用Procheck,Errat和Verify 3D工具来验证所获得的六个3D模型的可靠性,还使用总体质量因子和Prosa Z评分来检查六个建模蛋白质的质量。 C-α原子,主链原子,侧链原子以及建模结构与相应模板之间的所有原子的RMSD范围为0.290〜1.252,反映了所获得模型的良好质量。我们对CBGA-THCA合酶对接的研究表明,使用计算方法可以成功识别出活性位点。在“纤维类型”蛋白中计算出的CBGA的相互作用能在-4.1 95 kcal / mol和-5.95 kcal / mol之间,而在“药物类型”蛋白中的相互作用能量为-7.02 kcal / mol到-7.16 kcal / mol。 CBGA的相互作用能在确定大麻品种THCA含量中起重要作用。最后,我们提出了一项实验设计,目的是在没有关于酶亲和力与THCA水平产生之间相关性的任何信息的情况下,探索大麻中配体酶的结合能来源和THCA的产生水平。该报告为从大麻中产生的蛋白质亲和力和THCA水平的角度准确预测结合位点口袋开辟了更多的研究之门。

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