Department of Chemistry, Faculty of Arts and Science, Kocaeli University, Kocaeli, 41001, Turkey.
Department of Medicinal and Aromatic Plants, İzmit Vocational High School, Kocaeli University, Kocaeli, 41285, Turkey.
Protein J. 2024 Aug;43(4):869-887. doi: 10.1007/s10930-024-10220-1. Epub 2024 Aug 4.
Polyphenol oxidase (PPO) is an industrially important enzyme associated with browning reactions. In the present study, a set of ten new dihydropyridine [2,3-d] pyrimidines (TD-Hid-1-10) were synthesized and was found to be proven characteristically by H NMR, C NMR, IR, elemental analysis, and assessed as possible PPO inhibitors. PPO was purified from banana using three-phase partitioning, achieving an 18.65-fold purification and 136.47% activity recovery. Enzyme kinetics revealed that the compounds TD-Hid-6 and TD-Hid-7 are to be the most potent inhibitors, exhibiting mixed-type inhibition profile with IC values of 1.14 µM, 5.29 µM respectively against purified PPO enzyme. Electronic structure calculations at the B3LYP/PBE0 level of theories using def-2 SVP, def2-TZVP basis sets with various molecular descriptors characterized the electronic behavior of studied derivatives TD-Hid-1-10. Molecular electrostatic potential (MEP) and reduced density gradient analyses of RDG-NCI provided insights into charge distributions and weak intermolecular interactions. Docking study simulations predicted binding poses within crucial amino acid sequence in the 2y9x enzyme's active site, which is typically similar in sequence to the PPO form is not allowed. Ligands were analysed in terms of binding energies, inhibitor concentrations (mM) and various molecular interactions such as H-bonds, H-carbon, π-carbon, π-sigma, π-sigma, π-π T-shaped, π-π stacked, π-alkyl, Van der Waals and Cu interactions. The lowest binding energy (-7.83 kcal/mol) and the highest inhibitory effect (1.83 mM) were shown by the ligand Td-Hid-6, which forms H-bonds with Met280 and Asn260, exhibits π-sigma interactions with His61 and π-alkyl interactions with Val283. Other ligands also showed different interactions with various amino acids; for example, the Td-Hid-1 ligand formed H-bonds with His244 and showed π-sigma interactions with His244 and Val283.
多酚氧化酶(PPO)是一种与褐变反应相关的工业上重要的酶。在本研究中,合成了一组十个新的二氢吡啶[2,3-d]嘧啶(TD-Hid-1-10),并通过 1H NMR、13C NMR、IR、元素分析得到了证明,被评估为可能的 PPO 抑制剂。通过三相分配从香蕉中纯化 PPO,实现了 18.65 倍的纯化和 136.47%的活性回收率。酶动力学研究表明,化合物 TD-Hid-6 和 TD-Hid-7 是最有效的抑制剂,对纯化的 PPO 酶表现出混合抑制模式,IC 值分别为 1.14 μM 和 5.29 μM。使用 def-2 SVP、def2-TZVP 基组和各种分子描述符在 B3LYP/PBE0 理论水平上进行的电子结构计算,表征了研究衍生物 TD-Hid-1-10 的电子行为。分子静电势(MEP)和 RDG-NCI 简化密度梯度分析提供了对电荷分布和弱分子间相互作用的深入了解。对接研究模拟预测了配体在 2y9x 酶活性位点关键氨基酸序列中的结合构象,该序列在序列上与不允许的 PPO 形式相似。根据结合能、抑制剂浓度(mM)和各种分子相互作用(如氢键、H-碳、π-碳、π-σ、π-π T 型、π-π 堆积、π-烷基、范德华和 Cu 相互作用)分析配体。配体 TD-Hid-6 表现出最低的结合能(-7.83 kcal/mol)和最高的抑制效果(1.83 mM),它与 Met280 和 Asn260 形成氢键,与 His61 形成 π-σ 相互作用,与 Val283 形成 π-烷基相互作用。其他配体也与各种氨基酸表现出不同的相互作用;例如,配体 TD-Hid-1 与 His244 形成氢键,并与 His244 和 Val283 形成 π-σ 相互作用。