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典型和非典型抗精神病药物在多巴胺D2受体(D2R)上的原子分子动力学模拟阐明了它们的抑制机制。

Atomistic molecular dynamics simulations of typical and atypical antipsychotic drugs at the dopamine D2 receptor (D2R) elucidates their inhibition mechanism.

作者信息

Salmas Ramin Ekhteiari, Yurtsever Mine, Durdagi Serdar

机构信息

a Department of Biophysics , School of Medicine, Bahcesehir University , Istanbul , Turkey.

b Department of Chemistry , Istanbul Technical University , Istanbul , Turkey.

出版信息

J Biomol Struct Dyn. 2017 Mar;35(4):738-754. doi: 10.1080/07391102.2016.1159986. Epub 2016 Apr 6.

Abstract

Dopamine D2 receptor (D2R) plays a pivotal role in nervous systems. Its dysfunction leads to the schizophrenia, Parkinson's diseases and drug addiction. Since the crystal structure of the D2R was not solved yet, discovering of potent and highly selective anti-psychotic drugs carry challenges for different neurodegenerative diseases. In the current study, we modeled the three-dimensional (3D) structure of the D2R based on a recently crystallized structure of the dopamine D3 receptor. These two receptors share a high amino acid sequence homology (>70%). The interaction of the modeled receptor with well-known atypical and typical anti-psychotic drugs and the inhibition mechanisms of drugs at the catalytic domain were studied via atomistic molecular dynamics simulations. Our results revealed that, class-I and class-II forms of atypical and typical D2R antagonists follow different pathways in the inhibition of the D2Rs.

摘要

多巴胺D2受体(D2R)在神经系统中起关键作用。其功能障碍会导致精神分裂症、帕金森病和药物成瘾。由于D2R的晶体结构尚未解析出来,因此发现针对不同神经退行性疾病的强效且高选择性抗精神病药物面临挑战。在当前研究中,我们基于最近解析出晶体结构的多巴胺D3受体对D2R的三维(3D)结构进行了建模。这两种受体具有较高的氨基酸序列同源性(>70%)。通过原子分子动力学模拟研究了建模受体与知名非典型和典型抗精神病药物的相互作用以及药物在催化结构域的抑制机制。我们的结果表明,非典型和典型D2R拮抗剂的I类和II类形式在抑制D2R时遵循不同途径。

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