Sadasivudu B, Rao T I, Murthy C R
J Neurosci Res. 1980;5(4):281-9. doi: 10.1002/jnr.490050404.
Adenosine monophosphate (AMP) deaminase and 5'-nucleotidase, the two enzymes involved in the disposal of AMP, have been detected in different regions of normal rat brain and in animals subjected to heightened neuronal activity (leptazol-induced convulsions) and to depression of the central nervous system (CNS) by the administration of barbiturates. They have also been estimated in the CNS of animals subjected to anoxia or treated with lithium and ammonium salts. The AMP deaminase activity was found to be highest in cerebellum and lowest in cerebral cortex, while the 5'-nucleotidase activity was found to be highest in brain stem and lowest in cerebellum. The AMP deaminase activity was elevated in all the regions of brain during the preconvulsive and convulsive periods. The activity returned to normal during recovery. The activity of 5'-nucleotidase was found to be depressed in the preconvulsive and post-convulsive periods. The enzyme was also found to be depressed in all the three regions after the administration of barbiturates. Administration of lithium or ammonium salts of induction of anoxic states resulted in an increase in the activity of AMP deaminase in all the three regions of brain. These results are discussed in relation to the probable production of cyclic AMP and cyclic guanosine monophosphate (GMP) which may have depressive and excitatory roles, respectively, in brain. It appears that increased AMP deaminase activity is associated with increased neuronal activity while depression of 5'-nucleotidase activity is associated with conditions of decreased CNS excitability.
腺苷一磷酸(AMP)脱氨酶和5'-核苷酸酶是参与AMP代谢的两种酶,已在正常大鼠脑的不同区域以及经历神经元活动增强(戊四氮诱发惊厥)和通过给予巴比妥类药物使中枢神经系统(CNS)受到抑制的动物中检测到。它们也已在经历缺氧或用锂盐和铵盐处理的动物的CNS中进行了评估。发现AMP脱氨酶活性在小脑中最高,在大脑皮层中最低,而5'-核苷酸酶活性在脑干中最高,在小脑中最低。在惊厥前期和惊厥期,大脑所有区域的AMP脱氨酶活性均升高。恢复期间活性恢复正常。发现5'-核苷酸酶活性在惊厥前期和惊厥后期受到抑制。在给予巴比妥类药物后,该酶在所有三个区域也受到抑制。给予锂盐或铵盐或诱导缺氧状态导致大脑所有三个区域的AMP脱氨酶活性增加。结合可能分别在脑中具有抑制和兴奋作用的环磷酸腺苷(cAMP)和环磷酸鸟苷(cGMP)的可能产生来讨论这些结果。似乎AMP脱氨酶活性增加与神经元活动增加相关,而5'-核苷酸酶活性受到抑制与CNS兴奋性降低的情况相关。