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5HTR 中保守模体和螺旋的变构调节:耐药性癫痫的药物发现和治疗方法的进展。

Allosteric modulation of conserved motifs and helices in 5HTR: Advances drug discovery and therapeutic approach towards drug resistant epilepsy.

机构信息

Department of Biophysics, Postgraduate Institute of Medical Education and Research, Chandigarh, India.

Department of Pharmacology, Postgraduate Institute of Medical Education and Research, Chandigarh, India.

出版信息

J Biomol Struct Dyn. 2023;41(22):13113-13126. doi: 10.1080/07391102.2023.2178508. Epub 2023 Feb 21.

Abstract

The 5HTR, class-A GPCR is a new target, and its significance for seizure reduction in Dravet syndrome is just now gaining interest, suggesting its specific role in epileptic seizure management. Homology modeling of human 5HTR (P41595), was performed using a template 4IB4, the modeled structure was cross-validated (stereo chemical hindrance, Ramachandran plot, enrichment analysis) to mimic a closer native structure. Virtual screening (8532 compounds), drug-likeliness, mutagenicity, and carcinogenicity profiling prioritized six compounds for molecular dynamics (500 ns), R DCCM. The receptor's C-alpha fluctuation upon bound agonist (6.91 Å), known antagonist (7.03 Å), and LAS 52115629 (5.83 Å) binding varies, leading to receptor stabilization. The residues C-alpha side-chain in active site strongly interacts (hydrogen bonds) with bound agonist (100% interaction: ASP135), known antagonist (95%:ASP135), and LAS 52115629 (100%:ASP135). The R for receptor-ligand complex, LAS 52115629 (25.68 Å), lies close to bound agonist-Ergotamine, and DCCM analysis also shows strong positive correlations for LAS 52115629 as compared to known drugs. LAS 52115629 is less likely to cause toxicity than known drugs. The structural parameters in the modeled receptor's conserved motifs (DRY, PIF, NPY) were altered for receptor activation upon ligand-binding, which otherwise was in the in-activated state. The ligand (LAS 52115629)-binding further alters the helices-III, V, VI (G-protein bound), and VII, which form potential interacting sites with the receptor and are proven necessary for activating the receptor. Therefore, LAS 52115629 can act as a potential 5HTR agonist, targeting drug-resistant epilepsy.Communicated by Ramaswamy H. Sarma.

摘要

5HTR,A 类 GPCR 是一个新的靶点,其在减少德拉维综合征中的癫痫发作方面的意义现在才开始引起关注,这表明它在癫痫发作管理中具有特定的作用。使用模板 4IB4 对人 5HTR(P41595)进行同源建模,所构建的结构经过交叉验证(立体化学干扰、Ramachandran 图、富集分析),以模拟更接近天然的结构。虚拟筛选(8532 种化合物)、药物相似性、致突变性和致癌性分析,优先选择了六种化合物进行分子动力学(500ns)、R DCCM 研究。配体结合后,受体的 C-α 波动(6.91Å)、已知的拮抗剂(7.03Å)和 LAS 52115629(5.83Å)结合变化,导致受体稳定。活性位点的残基 C-α侧链与结合的激动剂(100%相互作用:ASP135)、已知的拮抗剂(95%:ASP135)和 LAS 52115629(100%:ASP135)强烈相互作用(氢键)。受体-配体复合物的 R 值,LAS 52115629(25.68Å),与结合的激动剂麦角胺非常接近,DCCM 分析还显示 LAS 52115629 与已知药物相比具有很强的正相关性。LAS 52115629 引起毒性的可能性小于已知药物。配体结合后,模型受体保守基序(DRY、PIF、NPY)中的结构参数发生变化,从而激活受体,否则受体处于非激活状态。配体(LAS 52115629)结合进一步改变螺旋 III、V、VI(与 G 蛋白结合)和 VII,这些螺旋形成与受体相互作用的潜在结合位点,对于激活受体是必需的。因此,LAS 52115629 可以作为一种潜在的 5HTR 激动剂,用于治疗耐药性癫痫。由 Ramaswamy H. Sarma 通讯。

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