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Preferred Supramolecular Organization and Dimer Interfaces of Opioid Receptors from Simulated Self-Association

机译:模拟自缔合的阿片受体的优选超分子组织和二聚体界面

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摘要

Substantial evidence in support of the formation of opioid receptor (OR) di-/oligomers suggests previously unknown mechanisms used by these proteins to exert their biological functions. In an attempt to guide experimental assessment of the identity of the minimal signaling unit for ORs, we conducted extensive coarse-grained (CG) molecular dynamics (MD) simulations of different combinations of the three major OR subtypes, i.e., μ-OR, δ-OR, and κ-OR, in an explicit lipid bilayer. Specifically, we ran multiple, independent MD simulations of each homomeric μ-OR/μ-OR, δ-OR/δ-OR, and κ-OR/κ-OR complex, as well as two of the most studied heteromeric complexes, i.e., δ-OR/μ-OR and δ-OR/κ-OR, to derive the preferred supramolecular organization and dimer interfaces of ORs in a cell membrane model. These simulations yielded over 250 microseconds of accumulated data, which correspond to approximately 1 millisecond of effective simulated dynamics according to established scaling factors of the CG model we employed. Analysis of these data indicates similar preferred supramolecular organization and dimer interfaces of ORs across the different receptor subtypes, but also important differences in the kinetics of receptor association at specific dimer interfaces. We also investigated the kinetic properties of interfacial lipids, and explored their possible role in modulating the rate of receptor association and in promoting the formation of filiform aggregates, thus supporting a distinctive role of the membrane in OR oligomerization and, possibly, signaling.
机译:支持阿片受体(OR)二聚/寡聚体形成的大量证据表明,这些蛋白质先前发挥未知功能发挥其生物学功能。为了指导对OR最小信号单元的身份进行实验评估,我们对三种主要OR亚型(即μ-OR,δ)的不同组合进行了广泛的粗粒度(CG)分子动力学(MD)模拟-OR和κ-OR,位于一个明确的脂质双层中。具体而言,我们对每个同系的μ-OR/μ-OR,δ-OR/δ-OR和κ-OR/κ-OR配合物,以及研究最多的两种异聚体配合物进行了多个独立的MD模拟,δ-OR/μ-OR和δ-OR/κ-OR,以推导细胞膜模型中OR的首选超分子组织和二聚体界面。这些模拟产生了超过250微秒的累积数据,根据我们采用的CG模型的已定比例因子,相当于大约1毫秒的有效模拟动力学。对这些数据的分析表明,跨不同受体亚型的OR具有相似的优选超分子组织和二聚体界面,但在特定二聚体界面的受体缔合动力学上也存在重要差异。我们还研究了界面脂质的动力学特性,并探讨了它们在调节受体缔合速率和促进丝状聚集体形成中的可能作用,从而支持了膜在OR寡聚化和可能的信号传导中的独特作用。

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