Hill D R, Campbell N J, Shaw T M, Woodruff G N
J Neurosci. 1987 Sep;7(9):2967-76. doi: 10.1523/JNEUROSCI.07-09-02967.1987.
Two potent and highly selective nonpeptide antagonists, L-365,031 [1-methyl-3-(4-bromobenzoyl)amino-5-phenyl-3H-1,4 benzodiazepin-2-one] and 3H-L-364,718 [1-methyl-3-(2-indoloyl)amino-5-phenyl-3H-1,4 benzodiazepin-2-one] were used to localize "peripheral" CCK receptors in rat brain. In autoradiographic experiments, L-365,031 displaced 125I-Bolton Hunter CCK-8 binding from the interpeduncular nucleus (IPN) (IC50 = 7 X 10(-8) M), the area postrema (AP), and the nucleus tractus solitarius (NTS) without influencing specific binding to other areas, such as the cerebral cortex or the spinal tract of the trigeminal nerve. Desulfated CCK preferentially inhibited 125I-CCK binding to cerebral cortex (IC50 = 7 X 10(-8) M) rather than IPN (IC50 greater than 1 X 10(-6) M) or AP-NTS. In the medulla the localization of 3H-L-364,718 binding was similar to L-365,031-sensitive 125I-CCK-8 binding and was found in the AP and medial, but not lateral, aspects of the NTS. In membranes prepared from IPN, NTS, and AP, 3H-364,718 binding was of high affinity (Kd = 0.14 nM), saturable (Bmax = 20 fmol/mg protein), and inhibited by compounds previously shown to act at pancreatic CCK receptors. The receptors labeled by 3H-364,718 were modulated by guanyl nucleotide, which reduced agonist affinity 10-fold without affecting antagonist binding. The localization and high density of CCK receptors in AP and NTS suggest that these receptors may play an important role in processing sensory afferent information.
两种强效且高度选择性的非肽拮抗剂,L-365,031 [1-甲基-3-(4-溴苯甲酰基)氨基-5-苯基-3H-1,4-苯并二氮杂卓-2-酮] 和3H-L-364,718 [1-甲基-3-(2-吲哚基)氨基-5-苯基-3H-1,4-苯并二氮杂卓-2-酮] 被用于在大鼠脑中定位 “外周” CCK受体。在放射自显影实验中,L-365,031使来自脚间核 (IPN)(IC50 = 7×10(-8) M)、最后区 (AP) 和孤束核 (NTS) 的125I-博尔顿·亨特CCK-8结合发生位移,而不影响与其他区域(如大脑皮层或三叉神经脊髓束)的特异性结合。去硫酸化CCK优先抑制125I-CCK与大脑皮层的结合(IC50 = 7×10(-8) M),而不是IPN(IC50大于1×10(-6) M)或AP-NTS。在延髓中,3H-L-364,718结合的定位与对L-365,031敏感的125I-CCK-8结合相似,并且在AP以及NTS的内侧(而非外侧)区域被发现。在由IPN、NTS和AP制备的膜中,3H-364,718结合具有高亲和力(Kd = 0.14 nM)、可饱和(Bmax = 20 fmol/mg蛋白质),并且被先前显示作用于胰腺CCK受体的化合物所抑制。被3H-364,718标记的受体受鸟苷酸调节,其使激动剂亲和力降低10倍而不影响拮抗剂结合。AP和NTS中CCK受体的定位和高密度表明这些受体可能在处理感觉传入信息中起重要作用。