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研究蒜氨酸作为 AMPA 受体潜在激活剂的作用。

investigation of Alliin as potential activator for AMPA receptor.

机构信息

Karadeniz Technical University, Faculty of Medicine, Department of Biophysics, Trabzon-Turkey.

Istanbul University-Cerrahpasa , Faculty of Medicine, Department of Biophysics, Istanbul-Turkey.

出版信息

Biomed Phys Eng Express. 2021 Nov 10;8(1). doi: 10.1088/2057-1976/ac351c.

Abstract

Natural products from plants, such as flavonoids, arouse immense interest in medicine because of the therapeutic and many other bioactive properties. The molecular docking is a very useful method to screen the molecules based on their free binding energies and give important structural suggestions about how molecules might activate or inhibit the target receptor by comparing reference molecules. Alliin and Allicin differ from many other flavonoids because of containing no benzene rings and having nitrogen and sulfur atoms in their structure. In this study Alliin and Allicin affinity on AMPA, NMDA and GABA-A receptors were evaluated in the central nervous system by using the molecular docking method. Both Alliin and Allicin indicated no inhibitory effects. However Alliin showed significant selectivity to human AMPA receptor (3RN8) as an excitatory. The binding energy of glutamate to 3RN8 was -6.61 kcal mol, while the binding energy of Allin was -8.08 kcal mol. Furthermore Alliin's affinity to the other AMPA and NMDA receptors is quite satisfactory compared to the reference molecule glutamate. In conclusion based on the molecular docking study, Alliin can be useful for synaptic plasticity studies whereas might be enhance seizure activity because of the increased permeability to cations. It also can be beneficial to improve learning and memory and can be used as a supportive product to the hypofunction of NMDA associated problems.

摘要

植物来源的天然产物,如类黄酮,由于具有治疗作用和许多其他生物活性,引起了医学界的极大兴趣。分子对接是一种非常有用的方法,可以根据它们的自由结合能对分子进行筛选,并通过比较参考分子,提供关于分子如何激活或抑制靶受体的重要结构建议。蒜氨酸和大蒜素与许多其他类黄酮不同,因为它们的结构中不含苯环,而是含有氮和硫原子。在这项研究中,使用分子对接方法评估了蒜氨酸和大蒜素在中枢神经系统中对 AMPA、NMDA 和 GABA-A 受体的亲和力。蒜氨酸和大蒜素均未显示出抑制作用。然而,蒜氨酸对人 AMPA 受体(3RN8)表现出显著的选择性,作为兴奋性物质。谷氨酸与 3RN8 的结合能为-6.61 kcal/mol,而蒜氨酸的结合能为-8.08 kcal/mol。此外,与参考分子谷氨酸相比,蒜氨酸对其他 AMPA 和 NMDA 受体的亲和力相当令人满意。总之,根据分子对接研究,蒜氨酸可用于突触可塑性研究,而由于阳离子通透性增加,可能会增强癫痫发作活动。它还可以有益于改善学习和记忆,并可作为 NMDA 相关问题功能低下的支持性产品。

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