Department of Clinical Sciences, Division of Experimental Vascular Research, Lund University, BMC A13, Sölvegatan 17, 22184, Lund, Sweden,
Cerebellum. 2013 Dec;12(6):937-49. doi: 10.1007/s12311-013-0509-4.
The cerebellum is classically considered to be mainly involved in motor processing, but studies have suggested several other functions, including pain processing. Calcitonin-gene-related peptide (CGRP) is a neuropeptide involved in migraine pathology, where there is elevated release of CGRP during migraine attacks and CGRP receptor antagonists have antimigraine efficacy. In the present study, we examined CGRP and CGRP receptor binding sites and protein expression in primate cerebellar cortex. Additionally, mRNA expression of the CGRP receptor components, calcitonin receptor-like receptor (CLR) and receptor activity modifying protein 1 (RAMP1), was examined. In addition, expression of procalcitonin was studied. We observed high [(3)H]MK-3207 (CGRP receptor antagonist) binding densities in the molecular layer of rhesus cerebellar cortex; however, due to the limit of resolution of the autoradiographic image the exact cellular localization could not be determined. Similarly, [(125)I]CGRP binding was observed in the molecular layer and Purkinje cell layer of human cerebellum. CLR and RAMP1 mRNA was expressed within the Purkinje cell layer and some expression was found in the molecular layer. Immunofluorescence revealed expression of CGRP, CLR, and RAMP1 in the Purkinje cells and in cells in the molecular layer. Procalcitonin was found in the same localization. Recent research in the biology of cerebellum indicates that it may have a role in nociception. For the first time we have identified CGRP and CGRP receptor binding sites together with CGRP receptor expression through protein and mRNA localization in primate cerebellar cortex. These results point toward a functional role of CGRP in cerebellum. Further efforts are needed to evaluate this.
小脑经典地被认为主要参与运动处理,但研究表明其还有其他几个功能,包括疼痛处理。降钙素基因相关肽(CGRP)是一种参与偏头痛发病机制的神经肽,在偏头痛发作期间 CGRP 释放增加,CGRP 受体拮抗剂具有抗偏头痛作用。在本研究中,我们检查了灵长类小脑皮质中的 CGRP 和 CGRP 受体结合位点和蛋白表达。此外,还检查了 CGRP 受体成分降钙素受体样受体(CLR)和受体活性修饰蛋白 1(RAMP1)的 mRNA 表达。此外,还研究了前降钙素的表达。我们观察到恒河猴小脑皮质分子层中高 [(3)H]MK-3207(CGRP 受体拮抗剂)结合密度;然而,由于放射自显影图像的分辨率限制,无法确定确切的细胞定位。同样,在人小脑的分子层和浦肯野细胞层中观察到 [(125)I]CGRP 结合。CLR 和 RAMP1 mRNA 在浦肯野细胞层内表达,在分子层中也有一些表达。免疫荧光显示 CGRP、CLR 和 RAMP1 在浦肯野细胞和分子层中的细胞中表达。降钙素原存在于相同的定位。小脑生物学的最新研究表明,它可能在伤害感受中发挥作用。我们首次通过灵长类小脑皮质中的蛋白质和 mRNA 定位鉴定了 CGRP 和 CGRP 受体结合位点以及 CGRP 受体表达。这些结果表明 CGRP 在小脑中有功能作用。需要进一步努力来评估这一点。