Jang Jea Hwa, Kim Ha Kyeong, Seo Dong Woo, Ki Su Young, Park Soonhong, Choi Sang-Hyun, Kim Dong-Hoon, Moon Seok Jun, Jeong Yong Taek
BK21 Graduate Program, Department of Biomedical Sciences, Korea University College of Medicine, Seoul, South Korea.
Department of Pharmacology, Korea University College of Medicine, Seoul, South Korea.
Front Neuroanat. 2021 Oct 28;15:751839. doi: 10.3389/fnana.2021.751839. eCollection 2021.
Chemosensory receptors are expressed primarily in sensory organs, but their expression elsewhere can permit ligand detection in other contexts that contribute to survival. The ability of sweet taste receptors to detect natural sugars, sugar alcohols, and artificial sweeteners suggests sweet taste receptors are involved in metabolic regulation in both peripheral organs and in the central nervous system. Our limited knowledge of sweet taste receptor expression in the brain, however, has made it difficult to assess their contribution to metabolic regulation. We, therefore, decided to profile the expression pattern of T1R2, a subunit specific to the sweet taste receptor complex, at the whole-brain level. Using knock-in mice, we visualized the overall distribution of -labeled cells in the brain. is expressed not only in various populations of neurons, but also in glial populations in the circumventricular organs and in vascular structures in the cortex, thalamus, and striatum. Using immunohistochemistry, we found that is expressed in hypothalamic neurons expressing neuropeptide Y and proopiomelanocortin in arcuate nucleus. It is also co-expressed with a canonical taste signaling molecule in perivascular cells of the median eminence. Our findings indicate that sweet taste receptors have unidentified functions in the brain and suggest that they may be a novel therapeutic target in the central nervous system.
化学感应受体主要在感觉器官中表达,但其在其他部位的表达能够使机体在有助于生存的其他情况下检测配体。甜味受体能够检测天然糖类、糖醇类和人工甜味剂,这表明甜味受体在外周器官和中枢神经系统的代谢调节中均发挥作用。然而,我们对甜味受体在大脑中表达的了解有限,这使得评估它们对代谢调节的作用变得困难。因此,我们决定在全脑水平上分析甜味受体复合物特异性亚基T1R2的表达模式。利用基因敲入小鼠,我们观察到大脑中标记细胞的整体分布。T1R2不仅在各种神经元群体中表达,还在室周器官的神经胶质细胞群体以及皮质、丘脑和纹状体的血管结构中表达。通过免疫组织化学方法,我们发现T1R2在弓状核中表达神经肽Y和阿黑皮素原的下丘脑神经元中表达。它还在正中隆起的血管周围细胞中与一种典型的味觉信号分子共表达。我们的研究结果表明,甜味受体在大脑中具有尚未明确的功能,并提示它们可能是中枢神经系统中的一个新型治疗靶点。