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首页> 外文期刊>Molecular Systems Design & Engineering >In silico strategy for isoform-selective 5-HT2AR and 5-HT2CR inhibitors
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In silico strategy for isoform-selective 5-HT2AR and 5-HT2CR inhibitors

机译:在硅片的策略isoform-selective 5-HT2AR和5-HT2CR抑制剂

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5-HT2ARand5-HT2CR are widely expressed throughout the brain and have been drawing significant clinical interest due to their involvement in mediating mental disorders. Indeed, 5-HT2AR acts as a biological target for atypical antipsychotics and addiction, and 5-HT2CR also serves as a therapeutic target for depression and addiction. Given that 5-HT2AR and 5-HT2CR provide opposing influences upon DA mesocorticoaccumbens output, plus 5-HT2CR is thought to be involved in appetite that might result in the side effect of weight gain, it makes great sense for drug design to provide the selective mechanisms of 5-HT2AR and 5-HT2CRinorder to meet the increasing need for more effective medications. Toward this end, the structure and chemical properties of crucial residues between 5-HT2AR and 5-HT2CR were analyzed based on their individual crystal structures. Moreover, pruvanserin and RS102221, the highly selective antagonists of 5-HT2AR and 5-HT2CR, respectively, were employed to illuminate the selective binding modes through a comprehensive application of methods, including molecular docking, molecular dynamic simulations, MM-GBSA, alanine scanning mutagenesis, DFT technologies, and structure-based pharmacophore modeling. It was found that although 5-HT2A/CR isoforms share high sequence homology in active pockets, they do possess distinctive physiological functions. The key residues that contributed to the selectivity between 5-HT2A/CR are ASP155, LEU229, TRP336, and PHE340 of 5-HT2AR, as well as ASP134, LEU209, and PHE328 of 5-HT2CR. Moreover, in view of the much smaller hydrophobic region of the 5-HT2AR, a ligand with reduced side chain volume would increase its selectivity to 5-HT2AR, and . In addition, considering that RS102221/5-HT2CR formed more water bridges compared to that of pruvanserin/5-HT2AR, hydrogen bonding interactions should be emphasized in the design of 5-HT2CR selective inhibitors. Collectively, this study provided novel insights into the rational selectivity mechanisms of 5-HT2AR/5-HT2CR inhibitors, which laid important foundations for designing selective inhibitors towards 5-HT2AR and 5-HT2CR.
机译:5-HT2ARand5-HT2CR广泛表达大脑和重要图纸由于他们的参与临床感兴趣协调精神障碍。作为典型的生物目标抗精神病药物和成瘾,5-HT2CR也作为治疗抑郁症和目标上瘾。反对对DA mesocorticoaccumbens影响输出,加上5-HT2CR被认为是参与可能导致的副作用的胃口体重增加,药物设计的伟大意义提供5-HT2AR的选择机制和5-HT2CRinorder满足日益增长的需要为更有效的药物。的结构和化学性质至关重要残留5-HT2AR和5-HT2CR之间分析了基于个人的晶体结构。高度的选择性拮抗剂5-HT2AR和5-HT2CR分别了通过阐明选择绑定模式全面的应用方法,包括分子对接、分子动态模拟,MM-GBSA,丙氨酸扫描诱变,DFT技术和基于结构的药效团建模。亚型共享高序列同源性活跃口袋,他们拥有独特的生理功能。导致5-HT2A / CR之间的选择性ASP155、LEU229 TRP336, PHE340吗5-HT2AR以及ASP134、LEU209 PHE3285-HT2CR。配体与5-HT2AR的疏水区域侧链减少量将增加选择性5-HT2AR,。考虑到RS102221/5-HT2CR形成更多水比的桥梁pruvanserin / 5-HT2AR,氢键应该强调在设计的交互5-HT2CR选择性抑制剂。这项研究提供了新颖的见解理性的选择机制5-HT2AR / 5-HT2CR抑制剂,这奠定了重要基础设计选择性抑制剂5-HT2AR和5-HT2CR。

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