Neuroscience Drug Discovery Unit, Research, Takeda Pharmaceutical Company Limited, 26-1, Muraoka-Higashi 2-Chome, Fujisawa, Kanagawa, 251-8555, Japan.
Sci Rep. 2022 May 19;12(1):8473. doi: 10.1038/s41598-022-12601-x.
Orexin, a neuropeptide, performs various physiological functions, including the regulation of emotion, feeding, metabolism, respiration, and sleep/wakefulness, by activating the orexin 1 receptor and orexin 2 receptor (OX2R). Owing to the pivotal role of OX2R in wakefulness and other biological functions, OX2R agonists are being developed. A detailed understanding of OX2R protein distribution is essential for determining the mechanisms of action of OX2R agonists; however, this has been hindered by the lack of selective antibodies. In this study, we first confirmed the OX2R-selective binding of [H]-EMPA in in vitro autoradiography studies, using brain slices from OX2R knockout mice and their wild-type littermates. Subsequently, OX2R protein distribution in rats was comprehensively assessed in 51 brain regions and 10 peripheral tissues using in vitro autoradiography with [H]-EMPA. The widespread distribution of OX2R protein, including that in previously unrecognized regions of the retrosplenial cortex, was identified. In contrast, OX2R protein expression was negligible/very low in peripheral tissues, suggesting that orexin exerts OX2R-dependent physiological functions primarily through activation of the central nervous system. These findings will be useful for understanding the wide range of biological functions of OX2R and the application of OX2R agonists in various disorders.
食欲素是一种神经肽,通过激活食欲素 1 受体和食欲素 2 受体(OX2R),发挥调节情绪、摄食、代谢、呼吸和睡眠/觉醒等多种生理功能。由于 OX2R 在觉醒和其他生物功能中的关键作用,正在开发 OX2R 激动剂。详细了解 OX2R 蛋白的分布对于确定 OX2R 激动剂的作用机制至关重要;然而,由于缺乏选择性抗体,这一直受到阻碍。在这项研究中,我们首先使用 OX2R 敲除小鼠及其野生型同窝仔鼠的脑片在体外放射自显影研究中证实了 [H]-EMPA 对 OX2R 的选择性结合。随后,使用 [H]-EMPA 进行体外放射自显影术,全面评估了 OX2R 蛋白在大鼠 51 个脑区和 10 个外周组织中的分布。确定了 OX2R 蛋白的广泛分布,包括在先前未被识别的后穹窿皮质区域。相比之下,外周组织中 OX2R 蛋白表达可忽略/非常低,这表明食欲素主要通过激活中枢神经系统发挥 OX2R 依赖性生理功能。这些发现将有助于理解 OX2R 的广泛生物学功能以及 OX2R 激动剂在各种疾病中的应用。