Department of Pharmacology and Toxicology, College of Medicine, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.
Int J Mol Sci. 2022 Mar 11;23(6):3049. doi: 10.3390/ijms23063049.
Cannabinoids exert anti-cancer actions; however, the underlying cytotoxic mechanisms and the cannabinoid receptors (CBRs) involved remain unclear. In this study, CBRs were characterized in several cancer cell lines. Radioligand binding screens surprisingly revealed specific binding only for the non-selective cannabinoid [H]WIN-55,212-2, and not [H]CP-55,940, indicating that the expressed CBRs exhibit atypical binding properties. Furthermore, [H]WIN-55,212-2 bound to a single site in all cancer cells with high affinity and varying densities. CBR characteristics were next compared between human prostate cancer cell lines expressing low (PC-3) and high (DU-145) CBR density. Although mRNA for canonical CBRs was detected in both cell lines, only 5 out of 15 compounds with known high affinity for canonical CBRs displaced [H]WIN-55,212-2 binding. Functional assays further established that CBRs in prostate cancer cells exhibit distinct signaling properties relative to canonical G/G-coupled CBRs. Prostate cancer cells chronically exposed to both CBR agonists and antagonists/inverse agonists produced receptor downregulation, inconsistent with actions at canonical CBRs. Treatment of DU-145 cells with CBR ligands increased LDH-release, decreased ATP-dependent cell viability, and produced mitochondrial membrane potential depolarization. In summary, several cancer cell lines express CBRs with binding and signaling profiles dissimilar to canonical CBRs. Drugs selectively targeting these atypical CBRs might exhibit improved anti-cancer properties.
大麻素发挥抗癌作用;然而,潜在的细胞毒性机制和涉及的大麻素受体(CBRs)仍不清楚。在这项研究中,在几种癌细胞系中表征了 CBRs。令人惊讶的是,放射性配体结合筛选仅显示出非选择性大麻素 [H]WIN-55,212-2 的特异性结合,而不是 [H]CP-55,940,表明表达的 CBRs 表现出非典型的结合特性。此外,[H]WIN-55,212-2 以高亲和力和不同的密度与所有癌细胞中的单个位点结合。接下来,在表达低(PC-3)和高(DU-145)CBR 密度的人前列腺癌细胞系之间比较 CBR 特征。尽管在两种细胞系中都检测到了经典 CBR 的 mRNA,但只有 15 种已知对经典 CBR 具有高亲和力的化合物中的 5 种能够置换 [H]WIN-55,212-2 的结合。功能测定进一步证实,前列腺癌细胞中的 CBRs 表现出与经典 G/G 偶联 CBRs 不同的信号转导特性。慢性暴露于 CBR 激动剂和拮抗剂/反向激动剂的前列腺癌细胞产生受体下调,与经典 CBR 作用不一致。用 CBR 配体处理 DU-145 细胞会增加 LDH 释放,降低 ATP 依赖性细胞活力,并导致线粒体膜电位去极化。总之,几种癌细胞系表达的 CBRs 具有与经典 CBRs 不同的结合和信号转导特征。选择性靶向这些非典型 CBRs 的药物可能具有更好的抗癌特性。