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首页> 外文期刊>Molecular physics >Molecular interactions of agonist and inverse agonist ligands at serotonin 5-HT2C G protein-coupled receptors: computational ligand docking and molecular dynamics studies validated by experimental mutagenesis results
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Molecular interactions of agonist and inverse agonist ligands at serotonin 5-HT2C G protein-coupled receptors: computational ligand docking and molecular dynamics studies validated by experimental mutagenesis results

机译:血清素5-HT2C G蛋白偶联受体上激动剂和反向激动剂配体的分子相互作用:通过实验诱变结果验证了计算配体对接和分子动力学研究

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摘要

To understand molecular determinants for ligand activation of the serotonin 5-HT2C G protein-coupled receptor (GPCR), a drug target for obesity and neuropsychiatric disorders, a 5-HT2C homology model was built according to an adrenergic beta(2) GPCR (beta(2)AR) structure and validated using a 5-HT2B GPCR crystal structure. The models were equilibrated in a simulated phosphatidyl choline membrane for ligand docking and molecular dynamics studies. Ligands included (2S, 4R)-(-)-trans-4-(3'-bromo- and trifluoro-phenyl)-N,N-dimethyl-1,2,3,4-tetrahydronaphthalene-2-amine (3'-Br-PAT and 3'-CF3-PAT), a 5-HT2C agonist and inverse agonist, respectively. Distinct interactions of 3'-Br-PAT and 3'-CF3-PAT at the wild-type (WT) 5-HT2C receptor model were observed and experimental 5-HT2C receptor mutagenesis studies were undertaken to validate the modelling results. For example, the inverse agonist 3'-CF3-PAT docked deeper in the WT 5-HT2C binding pocket and altered the orientation of transmembrane helices (TM) 6 in comparison to the agonist 3'-Br-PAT, suggesting that changes in TM orientation that result from ligand binding impact function. For both PATs, mutation of 5-HT2C residues S3.36, T3.37, and F5.47 to alanine resulted in significantly decreased affinity, as predicted from modelling results. It was concluded that upon PAT binding, 5-HT2C residues T3.37 and F5.47 in TMs 3 and 5, respectively, engage in inter-helical interactions with TMs 4 and 6, respectively. The movement of TMs 5 and 6 upon agonist and inverse agonist ligand binding observed in the 5-HT2C receptor modelling studies was similar to movements reported for the activation and deactivation of the beta(2)AR, suggesting common mechanisms among aminergic neurotransmitter GPCRs.
机译:为了了解血清素5-HT2C G蛋白偶联受体(GPCR)的配体激活的分子决定因素,这是肥胖症和神经精神疾病的药物靶标,根据肾上腺素beta(2)GPCR建立了5-HT2C同源模型(2)AR)结构,并使用5-HT2B GPCR晶体结构进行了验证。将模型在模拟的磷脂酰胆碱膜中平衡以进行配体对接和分子动力学研究。配体包括(2S,4R)-(-)-trans-4-(3'-溴和三氟苯基)-N,N-二甲基-1,2,3,4-四氢萘-2-胺(3' -Br-PAT和3'-CF3-PAT),分别是5-HT2C激动剂和反向激动剂。观察到了3'-Br-PAT和3'-CF3-PAT在野生型(WT)5-HT2C受体模型上的独特相互作用,并进行了实验性5-HT2C受体诱变研究以验证建模结果。例如,与激动剂3'-Br-PAT相比,反向激动剂3'-CF3-PAT更深地停在WT 5-HT2C结合袋中,并改变了跨膜螺旋(TM)6的方向,这表明TM的变化配体结合影响功能导致的分子取向。对于两种PAT,如建模结果所预测的,将5-HT2C残基S3.36,T3.37和F5.47突变为丙氨酸会导致亲和力显着降低。结论是,PAT结合后,TM 3和5中的5-HT2C残基T3.37和F5.47分别与TM 4和6进行螺旋间相互作用。在5-HT2C受体模型研究中观察到的激动剂和反向激动剂配体结合后TMs 5和6的运动与报告的β(2)AR激活和失活的运动相似,表明胺能神经递质GPCR之间存在共同的机制。

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