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核桃(胡桃)壳代谢产物的计算筛选揭示七叶苷是果胶裂解酶Pel3的潜在抑制剂:来自分子动力学和τRAMD的见解

Computational screening of walnut (Juglans regia) husk metabolites reveals Aesculin as a potential inhibitor of pectate lyase Pel3: Insights from molecular dynamics and τRAMD.

作者信息

Khakpour Ali, Shadmehri Negar Ahmadi, Sedaghati Amir, Jamshidian Hassan, Ghiabi Shamim, Baziyar Payam, Heidari-Soureshjani Ehsan, Mirahmadi Seyedeh Atefeh

机构信息

Department of Biology, Faculty of Science, University of Guilan, Rasht, Iran.

Department of Biology, Faculty of Science, University of Sistan and Baluchestan, Zahedan, Iran.

出版信息

Biochem Biophys Rep. 2025 Jul 23;43:102171. doi: 10.1016/j.bbrep.2025.102171. eCollection 2025 Sep.

Abstract

Pectate lyase (Pel3), an enzyme derived from bacteria, plays a significant role in the degradation of pectin and contributes to the spoilage of agricultural products. Pel3 can bind to pectin and break it down, a process that accelerates food decay. Aesculin, a natural compound extracted from walnut husk, has been recognized for its antibacterial and antifungal properties, making it a promising natural inhibitor. The aim of this study was to investigate the inhibitory mechanisms of Aesculin through molecular simulations and random accelerated molecular dynamics (RAMD). Molecular docking results showed that Aesculin may effectively bind to Pel3 and form a strong interaction. RMSD analysis revealed that Aesculin's binding to Pel3 reduced structural fluctuations, thereby enhancing the enzyme's structural stability. Slight changes in the radius of gyration (Rg) indicate a decrease in structural compactness in specific regions of the protein. Furthermore, SASA analysis revealed a modest increase in solvent accessibility. RAMD simulations, performed with 120 replicates, showed a short average residence time (∼0.015 ns), suggesting rapid unbinding and weak interaction at the active site. MM-PBSA analysis yielded a total binding free energy of -2.92 ± 0.44 kcal/mol, mainly driven by van der Waals and electrostatic contributions, confirming moderate and reversible binding. These findings suggest that Aesculin may form alternating interactions with Pel3 as an effective natural inhibitor and exhibit a short residence time in its active site. The molecular dynamics simulations and RAMD analysis suggest that Aesculin can enhance the structural stability of Pel3, presenting it as a potential anti-spoilage agent in the food and agricultural industries.

摘要

果胶酸裂解酶(Pel3)是一种源自细菌的酶,在果胶降解中起重要作用,并导致农产品变质。Pel3可以与果胶结合并将其分解,这一过程会加速食物腐烂。七叶树素是一种从核桃壳中提取的天然化合物,因其抗菌和抗真菌特性而受到认可,使其成为一种有前景的天然抑制剂。本研究的目的是通过分子模拟和随机加速分子动力学(RAMD)研究七叶树素的抑制机制。分子对接结果表明,七叶树素可能有效地与Pel3结合并形成强相互作用。均方根偏差(RMSD)分析表明,七叶树素与Pel3的结合减少了结构波动,从而增强了酶的结构稳定性。回转半径(Rg)的轻微变化表明蛋白质特定区域的结构紧凑性降低。此外,溶剂可及表面积(SASA)分析显示溶剂可及性略有增加。进行了120次重复的RAMD模拟显示平均停留时间较短(约0.015纳秒),表明在活性位点快速解离且相互作用较弱。MM-PBSA分析得出总结合自由能为-2.92±0.44千卡/摩尔,主要由范德华力和静电作用驱动,证实了适度且可逆的结合。这些发现表明,七叶树素可能作为一种有效的天然抑制剂与Pel3形成交替相互作用,并在其活性位点表现出较短的停留时间。分子动力学模拟和RAMD分析表明,七叶树素可以增强Pel3的结构稳定性,使其成为食品和农业行业潜在的抗变质剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cd0/12307661/e7fcad743683/gr1.jpg

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