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人源大麻素受体2配体相互作用基序:跨膜螺旋2半胱氨酸,C2.59(89),作为经典大麻素激动剂活性和结合构象的决定因素。

Human Cannabinoid Receptor 2 Ligand-Interaction Motif: Transmembrane Helix 2 Cysteine, C2.59(89), as Determinant of Classical Cannabinoid Agonist Activity and Binding Pose.

作者信息

Zhou Han, Peng Yan, Halikhedkar Aneetha, Fan Pusheng, Janero David R, Thakur Ganesh A, Mercier Richard W, Sun Xin, Ma Xiaoyu, Makriyannis Alexandros

机构信息

Center for Drug Discovery and Departments of Chemistry and Chemical Biology, Pharmaceutical Sciences, and Bioengineering; College of Science, Bouvé College of Health Sciences, and College of Engineering, Northeastern University , Boston, Massachusetts 02115-5000, United States.

出版信息

ACS Chem Neurosci. 2017 Jun 21;8(6):1338-1347. doi: 10.1021/acschemneuro.7b00003. Epub 2017 Mar 1.

Abstract

Cannabinoid receptor 2 (CB2R)-dependent signaling is implicated in neuronal physiology and immune surveillance by brain microglia. Selective CB2R agonists hold therapeutic promise for inflammatory and other neurological disorders. Information on human CB2R (hCB2R) ligand-binding and functional domains is needed to inform the rational design and optimization of candidate druglike hCB2R agonists. Prior demonstration that hCB2R transmembrane helix 2 (TMH2) cysteine C2.59(89) reacts with small-molecule methanethiosulfonates showed that this cysteine residue is accessible to sulfhydryl derivatization reagents. We now report the design and application of two novel, pharmacologically active, high-affinity molecular probes, AM4073 and AM4099, as chemical reporters to interrogate directly the interaction of classical cannabinoid agonists with hCB2R cysteine residues. AM4073 has one electrophilic isothiocyanate (NCS) functionality at the C9 position of its cyclohexenyl C-ring, whereas AM4099 has NCS groups at that position and at the terminus of its aromatic A-ring C3 side chain. Pretreatment of wild-type hCB2R with either probe reduced subsequent [H]CP55,940 specific binding by ∼60%. Conservative serine substitution of any hCB2R TMH cysteine residue except C2.59(89) did not affect the reduction of [H]CP55,940 specific binding by either probe, suggesting that AM4073 and AM4099 interact irreversibly with this TMH2 cysteine. In contrast, AM841, an exceptionally potent hCB2R megagonist and direct AM4073/4099 congener bearing a single electrophilic NCS group at the terminus of its C3 side chain, had been demonstrated to bind covalently to TMH6 cysteine C6.47(257) and not C2.59(89). Molecular modeling indicates that the AM4073-hCB2R* interaction at C2.59(89) orients this classical cannabinoid away from TMH6 and toward the TMH2-TMH3 interface in the receptor's hydrophobic binding pocket, whereas the AM841-hCB2R* interaction at C6.47(257) favors agonist orientation toward TMH6/7. These data constitute initial evidence that TMH2 cysteine C2.59(89) is a component of the hCB2R binding pocket for classical cannabinoids. The results further demonstrate how interactions between classical cannabinoids and specific amino acids within the hCB2R* ligand-binding domain act as determinants of agonist pharmacological properties and the architecture of the agonist-hCB2R* conformational ensemble, allowing the receptor to adopt distinct activity states, such that interaction of classical cannabinoids with TMH6 cysteine C6.47(257) favors a binding pose more advantageous for agonist potency than does their interaction with TMH2 cysteine C2.59(89).

摘要

大麻素受体2(CB2R)依赖性信号传导与神经元生理学以及脑小胶质细胞的免疫监视有关。选择性CB2R激动剂对炎症性和其他神经系统疾病具有治疗前景。需要有关人CB2R(hCB2R)配体结合和功能域的信息,以为候选类药物hCB2R激动剂的合理设计和优化提供依据。先前证明hCB2R跨膜螺旋2(TMH2)中的半胱氨酸C2.59(89)与小分子甲硫基磺酸盐反应,表明该半胱氨酸残基可被巯基衍生化试剂接近。我们现在报告两种新型的、具有药理活性的、高亲和力分子探针AM4073和AM4099的设计和应用,作为化学报告物直接研究经典大麻素激动剂与hCB2R半胱氨酸残基的相互作用。AM4073在其环己烯基C环的C9位置具有一个亲电异硫氰酸酯(NCS)官能团,而AM4099在该位置及其芳香族A环C3侧链的末端具有NCS基团。用任何一种探针预处理野生型hCB2R可使随后的[H]CP55,940特异性结合降低约60%。除C2.59(89)外,对任何hCB2R TMH半胱氨酸残基进行保守的丝氨酸取代均不影响任何一种探针导致的[H]CP55,940特异性结合的降低,这表明AM4073和AM4099与该TMH2半胱氨酸发生不可逆相互作用。相比之下,AM841是一种异常强效的hCB2R激动剂,是AM4073/4099的直接同系物,在其C3侧链末端带有一个亲电NCS基团,已证明其与TMH6半胱氨酸C6.47(257)而非C2.59(89)共价结合。分子建模表明,AM4073与C2.59(89)处的hCB2R相互作用使这种经典大麻素远离TMH6并朝向受体疏水结合口袋中的TMH2-TMH3界面,而AM841与C6.47(257)处的hCB2R相互作用有利于激动剂朝向TMH6/7的取向。这些数据构成了初步证据,表明TMH2半胱氨酸C2.59(89)是hCB2R中经典大麻素结合口袋的一个组成部分。结果进一步证明了经典大麻素与hCB2R配体结合域内特定氨基酸之间的相互作用如何作为激动剂药理特性和激动剂-hCB2R构象集合结构的决定因素,使受体能够采用不同的活性状态,从而经典大麻素与TMH6半胱氨酸C6.47(257)的相互作用比它们与TMH2半胱氨酸C2.59(89)的相互作用更有利于激动剂效力的结合姿势。

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