[Inductive synthesis of acetylcholinesterase in the brain during learning and training of rats].

Voprosy biokhimii mozga Pub Date : 1975-01-01
N G Aleksidze, M V Balavadze
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Abstract

In rats learning to use nonpreferred paw is accompanied by an increase of acetylcholinesterase (AChE) of specific areas of rat cerebral cortex and pyramidal neurones of CA3 and CA4 of the hippocampus. Following achievement of new behavioural reactions high AChE activity is preserved longer in the neacortex, the enzyme activity in the pyramidal neurones of the hippocampal cortex coming to normal. Following preliminary intracranial administration of puromycin the increase of AChE activity during learning is no more observed. This indicates the activation of the genetic apparatus during learning and training as a result of which synthesis of membrane proteins including AChE is enhanced. A close correlation between learning and the inductive synthesis of AChE is observed. Lateralization of the chemical traces of learning in specific areas of rat cerebral cortex are observed as increased activity of AChE. Changes in AChE activity in various hemispheres of rat brain during learning are thought to be due to assymetric changes in the excitatory level of cortical sites during the formation of new behavioural reactions. The specific localization of biochemical changes in the brain is certainly more favorable from an energetic aspect and may by regarded as an evolutionary compensatory process. The interrelationship of the activation of the synthetic apparatus of the cell with the reception of external informations is one of the expressions of adaptation during codations of functions of the organism more advantageous from an evolutionary point of view.

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[大鼠学习训练过程中脑内乙酰胆碱酯酶的诱导合成]。
在大鼠学习使用非首选爪时,伴随着大鼠大脑皮层特定区域和海马CA3和CA4锥体神经元乙酰胆碱酯酶(AChE)的增加。在新的行为反应完成后,高乙酰胆碱酯酶活性在新皮层中保存的时间更长,海马皮层锥体神经元中的酶活性恢复正常。初步颅内给予嘌呤霉素后,学习过程中乙酰胆碱酯酶活性未见增加。这表明在学习和训练过程中,遗传装置被激活,从而增强了包括乙酰胆碱酯酶在内的膜蛋白的合成。学习与AChE的归纳合成密切相关。大鼠大脑皮层特定区域学习化学痕迹的偏侧化是由于乙酰胆碱酯酶活性的增加而观察到的。学习过程中大鼠大脑各半球乙酰胆碱酯酶活性的变化被认为是由于新行为反应形成过程中皮层兴奋水平的不对称变化。从能量的角度来看,大脑中生化变化的特定定位当然更有利,可以被视为一种进化补偿过程。细胞合成装置的激活与外部信息的接收之间的相互关系是从进化的角度来看更有利的有机体功能协调过程中的适应性表达之一。
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