In Silico Binding Analysis of Cannabinoids with Eph Receptors for Therapeutic Use in Gliomas.

MedPress psychiatry and behavioral sciences Pub Date : 2022-01-01 Epub Date: 2022-10-31
Sai Batchu, Michael Joseph Diaz, Brandon Lucke-Wold
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Abstract

Background: Accumulating evidence suggests overexpression of Eph receptors is associated with malignant human gliomas. Inhibiting interactions of Eph receptors with their ephrin ligands may improve clinical outcomes in glioma patients. The present study investigated the potential of cannabinoids to bind Eph receptors and block Eph/ephrin interactions.

Methods: Twelve major cannabinoids were computationally docked with ligand binding domains from six glioma-associated Eph receptors through Auto Dock Vina to measure their potential binding affinities. The molecular structures and residue interactions of the most favorable poses for each receptor binding domain were further visually examined.

Results: Cannabichromene (CBC) exhibited the most favorable binding with EphA2, EphA3, and EphB4 receptor ligand binding domains while tetrahydrocannabinol (THC) was predicted to bind favorably with EphB2 and EphB3 receptor ligand binding domains. EphA4 showed the best potential binding affinity with cannabidivarin (CBDV). Further analysis revealed that these cannabinoids bind to specific locations on Eph receptors required for Eph/ephrin interactions.

Conclusion: The findings suggest that certain cannabinoids can effectively bind to hydrophobic pockets required for ephrin binding and thereby be used to block subsequent Eph/ephrin interactions.

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用于胶质瘤治疗的大麻素与 Eph 受体的 In Silico 结合分析。
背景:越来越多的证据表明,Eph 受体的过度表达与恶性人类胶质瘤有关。抑制 Eph 受体与其 ephrin 配体的相互作用可改善胶质瘤患者的临床预后。本研究调查了大麻素与 Eph 受体结合并阻断 Eph/ephrin 相互作用的潜力:方法:通过 Auto Dock Vina 将 12 种主要的大麻素与 6 种胶质瘤相关 Eph 受体的配体结合域进行计算对接,以测量其潜在的结合亲和力。对每个受体结合域最有利的姿势的分子结构和残基相互作用进行了进一步的直观检查:结果表明:大麻色素(CBC)与 EphA2、EphA3 和 EphB4 受体配体结合域的结合最有利,而四氢大麻酚(THC)预计与 EphB2 和 EphB3 受体配体结合域的结合最有利。EphA4 与大麻双胍(CBDV)的潜在结合亲和力最佳。进一步分析表明,这些大麻素与 Eph 受体上 Eph/ephrin 相互作用所需的特定位置结合:结论:研究结果表明,某些大麻素可以有效地结合到ephrin结合所需的疏水口袋,从而用于阻断随后的Eph/ephrin相互作用。
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