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新型大麻素受体 2(CB2)低脂溶性激动剂产生独特的 cAMP 和 arrestin 信号动力学,无偏倚。

Novel Cannabinoid Receptor 2 (CB2) Low Lipophilicity Agonists Produce Distinct cAMP and Arrestin Signalling Kinetics without Bias.

机构信息

Department of Pharmacology and Clinical Pharmacology, School of Medical Sciences, Faculty of Medical and Health Sciences, University of Auckland, Auckland 1023, New Zealand.

Centre for Brain Research, Faculty of Medical and Health Sciences, University of Auckland, Auckland 1023, New Zealand.

出版信息

Int J Mol Sci. 2023 Mar 29;24(7):6406. doi: 10.3390/ijms24076406.

Abstract

Cannabinoid Receptor 2 (CB2) is a promising target for treating inflammatory diseases. We designed derivatives of 3-carbamoyl-2-pyridone and 1,8-naphthyridin-2(1H)-one-3-carboxamide CB2-selective agonists with reduced lipophilicity. The new compounds were measured for their affinity (radioligand binding) and ability to elicit cyclic adenosine monophosphate (cAMP) signalling and β-arrestin-2 translocation with temporal resolution (BRET-based biosensors). For the 3-carbamoyl-2-pyridone derivatives, we found that modifying the previously reported compound UOSS77 (also known as S-777469) by appending a PEG2-alcohol via a 3-carbomylcyclohexyl carboxamide (UOSS75) lowered lipophilicity, and preserved binding affinity and signalling profile. The 1,8-naphthyridin-2(1H)-one-3-carboxamide UOMM18, containing a configuration at the 3-carboxamide cyclohexyl and with an alcohol on the 4-position of the cyclohexyl, had lower lipophilicity but similar CB2 affinity and biological activity to previously reported compounds of this class. Relative to CP55,940, the new compounds acted as partial agonists and did not exhibit signalling bias. Interestingly, while all compounds shared similar temporal trajectories for maximal efficacy, differing temporal trajectories for potency were observed. Consequently, when applied at sub-maximal concentrations, CP55,940 tended to elicit sustained (cAMP) or increasing (arrestin) responses, whereas responses to the new compounds tended to be transient (cAMP) or sustained (arrestin). In future studies, the compounds characterised here may be useful in elucidating the consequences of differential temporal signalling profiles on CB2-mediated physiological responses.

摘要

大麻素受体 2 (CB2) 是治疗炎症性疾病的有前途的靶点。我们设计了 3-氨甲酰基-2-吡啶酮和 1,8-萘啶-2(1H)-酮-3-甲酰胺 CB2 选择性激动剂的衍生物,降低了脂溶性。新化合物的亲和力(放射性配体结合)和引发环腺苷单磷酸(cAMP)信号和β-arrestin-2 易位的能力(具有时间分辨率的 BRET 生物传感器)进行了测量。对于 3-氨甲酰基-2-吡啶酮衍生物,我们发现通过在 3-氨甲酰环己基上附加 PEG2-醇来修饰先前报道的化合物 UOSS77(也称为 S-777469),降低了脂溶性,并且保留了结合亲和力和信号特征。1,8-萘啶-2(1H)-酮-3-甲酰胺 UOMM18,其 3-甲酰胺环己基呈 构型,环己基的 4-位上有一个醇,脂溶性较低,但与该类别的先前报道的化合物具有相似的 CB2 亲和力和生物活性。与 CP55,940 相比,新化合物作为部分激动剂起作用,并且不表现出信号偏倚。有趣的是,虽然所有化合物在最大功效方面具有相似的时间轨迹,但观察到效力的时间轨迹不同。因此,在应用于亚最大浓度时,CP55,940 倾向于引起持续(cAMP)或增加(arrestin)反应,而对新化合物的反应倾向于短暂(cAMP)或持续(arrestin)。在未来的研究中,这里表征的化合物可能有助于阐明不同的时间信号特征对 CB2 介导的生理反应的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45d2/10094510/1ff6bca984ff/ijms-24-06406-g001.jpg

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