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鉴定新型小鼠和大鼠 CB1R 同工型,并对人 CB1R 进行计算机建模以用于外周大麻素治疗。

Identification of novel mouse and rat CB1R isoforms and in silico modeling of human CB1R for peripheral cannabinoid therapeutics.

机构信息

Laboratory of Clinical Investigation, National Institute on Aging, NIH, Baltimore, MD, USA.

Center for Bioinformatics, State Key Laboratory of Protein and Plant Gene Research, College of Life Sciences, Peking University, Beijing, China.

出版信息

Acta Pharmacol Sin. 2019 Mar;40(3):387-397. doi: 10.1038/s41401-018-0152-1. Epub 2018 Sep 10.

Abstract

Targeting peripheral CB1R is desirable for the treatment of metabolic syndromes without adverse neuropsychiatric effects. We previously reported a human hCB1b isoform that is selectively enriched in pancreatic beta-cells and hepatocytes, providing a potential peripheral therapeutic hCB1R target. It is unknown whether there are peripherally enriched mouse and rat CB1R (mCB1 and rCB1, respectively) isoforms. In this study, we found no evidence of peripherally enriched rodent CB1 isoforms; however, some mCB1R isoforms are absent in peripheral tissues. We show that the mouse Cnr1 gene contains six exons that are transcribed from a single promoter. We found that mCB1A is a spliced variant of extended exon 1 and protein-coding exon 6; mCB1B is a novel spliced variant containing unspliced exon 1, intron 1, and exon 2, which is then spliced to exon 6; and mCB1C is a spliced variant including all 6 exons. Using RNAscope in situ hybridization, we show that the isoforms mCB1A and mCB1B are expressed at a cellular level and colocalized in GABAergic neurons in the hippocampus and cortex. RT-qPCR reveals that mCB1A and mCB1B are enriched in the brain, while mCB1B is not expressed in the pancreas or the liver. Rat rCB1R isoforms are differentially expressed in primary cultured neurons, astrocytes, and microglia. We also investigated modulation of Cnr1 expression by insulin in vivo and carried out in silico modeling of CB1R with JD5037, a peripherally restricted CB1R inverse agonist, using the published crystal structure of hCB1R. The results provide models for future CB1R peripheral targeting.

摘要

靶向外周 CB1R 是治疗代谢综合征而不产生不良神经精神作用的理想选择。我们之前报道了一种人源 hCB1b 异构体,它在外周组织中选择性地富集在胰岛β细胞和肝细胞中,为潜在的外周治疗性 hCB1R 靶点提供了依据。目前尚不清楚是否存在外周组织中富集的鼠和大鼠 CB1R(mCB1 和 rCB1)异构体。在这项研究中,我们没有发现外周组织中富集的啮齿动物 CB1 异构体的证据;然而,一些 mCB1R 异构体在周围组织中不存在。我们表明,小鼠 Cnr1 基因包含六个外显子,这些外显子由一个单一的启动子转录。我们发现 mCB1A 是外显子 1 延伸和蛋白编码外显子 6 的剪接变体;mCB1B 是一种新型的剪接变体,包含未剪接的外显子 1、内含子 1 和外显子 2,然后剪接到外显子 6;mCB1C 是一种包含所有 6 个外显子的剪接变体。通过 RNAscope 原位杂交,我们表明 mCB1A 和 mCB1B 异构体在海马和皮质的 GABA 能神经元中以细胞水平表达并共定位。RT-qPCR 显示 mCB1A 和 mCB1B 在大脑中富集,而 mCB1B 在外周组织如胰腺或肝脏中不表达。大鼠 rCB1R 异构体在外周原代培养神经元、星形胶质细胞和小胶质细胞中差异表达。我们还研究了胰岛素对体内 Cnr1 表达的调节,并使用已发表的 hCB1R 晶体结构,对 JD5037(一种外周受限的 CB1R 反向激动剂)与 CB1R 的计算机模拟。结果为未来的 CB1R 外周靶向提供了模型。

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