Hayashi M, Yamashita A, Shimizu K, Oshima K
Department of Physiology, Kyoto University, Aichi, Japan.
Exp Brain Res. 1989;74(2):249-55. doi: 10.1007/BF00248857.
Concentration of cholecystokinin-8 and the activity of glutamic acid decarboxylase were determined in the various cerebral cortical subdivisions of Japanese monkey (Macaca fuscata fuscata) at three different ages (embryonic 4 months, full-term and adult). The CCK-8 immunoreactive material extracted with 90% methanol from the cerebral cortex of the adult and foetal monkey were shown to be identical with synthetic cholecystokinin-8 by the criterion of co-elution on gel filtration chromatography (Sephadex G-50). The peptide concentration increased dramatically by about 30-80 fold (in terms of protein) and 17-28 fold (in terms of wet weight) between embryonic 4-month-old and full-term monkeys, while the level decreased 1/6-1/16 (protein) and 1/4-1/10 (wet weight) between full-term and adult monkeys. In adults, the highest levels of the peptide was observed in the association cortex, orbital prefrontal cortex and posterior parietal cortex. Glutamic acid decarboxylase activity, on the other hand, gradually increased about 4-10 fold (protein) between embryonic 4-month-old and adult animals and there was little variation in the increase rate among the cerebral subdivisions. In contrast to cholecystokinin-8, no reduction in the enzyme activity occurred between full-term and adult animals. The high level of cholecystokinin-8 in the embryonic period suggests that the peptide may participate in the regulation of the development of primate cerebral cortex.
在三个不同年龄阶段(胚胎4个月、足月和成年)的日本猕猴(食蟹猴指名亚种)的各个大脑皮质分区中,测定了胆囊收缩素-8的浓度和谷氨酸脱羧酶的活性。通过凝胶过滤色谱法(Sephadex G - 50)上的共洗脱标准,显示用90%甲醇从成年和胎儿猕猴大脑皮质中提取的CCK - 8免疫反应物质与合成胆囊收缩素-8相同。在胚胎4个月大的猕猴和足月猕猴之间,肽浓度急剧增加了约30 - 80倍(以蛋白质计)和17 - 28倍(以湿重计),而在足月猕猴和成年猕猴之间,该水平下降了1/6 - 1/16(蛋白质)和1/4 - 1/10(湿重)。在成年猕猴中,在联合皮质、眶额前皮质和顶叶后皮质中观察到该肽的最高水平。另一方面,谷氨酸脱羧酶活性在胚胎4个月大的动物和成年动物之间逐渐增加了约4 - 10倍(以蛋白质计),并且在各个脑区之间增加速率几乎没有变化。与胆囊收缩素-8相反,在足月和成年动物之间酶活性没有降低。胚胎期胆囊收缩素-8的高水平表明该肽可能参与灵长类大脑皮质发育的调节。