首页> 外文期刊>BioSystems >Characterization of the norepinephrine-activation of adenylate cyclase suggests a role in memory affirmation pathways. Overexposure to epinephrine inactivates adenylate cyclase, a causal pathway for stress-pathologies
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Characterization of the norepinephrine-activation of adenylate cyclase suggests a role in memory affirmation pathways. Overexposure to epinephrine inactivates adenylate cyclase, a causal pathway for stress-pathologies

机译:腺苷酸环化酶去甲肾上腺素激活的特征表明在记忆肯定途径中的作用。过度暴露于肾上腺素会导致腺苷酸环化酶失活,这是压力病理的一种致病途径

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Incubation with noradrenaline (norepinephrine) of isolated membranes of rat's brain corpus striatum and cortex, showed that ionic-magnesium (Mg~(2+)) is required for the neurotransmitter activatory response of adenylate cyclase [ATP pyrophosphate-lyase (cyclizing) (EC 4.6.1.1)], AC.An Mg~(2+)-dependent response to the activatory effects of adrenaline, and subsequent inhibition by calcium, suggest capability for a turnover, associated with cyclic changes in membrane potential and participation in a short-term memory pathway.In the cell, the neurotransmitter by activating AC generates intracellular cyclic AMP. Calcium entrance in the cell inhibits the enzyme. The increment of cyclic AMP activates kinase A and their protein phosphorylating activity, allowing a long-term memory pathway. Hence, consolidating neuronal circuits, related to emotional learning and memory affirmation.The activatory effect relates to an enzyme-noradrenaline complex which may participate in the physiology of the fight or flight response, by prolonged exposure. However, the persistence of an unstable enzyme complex turns the enzyme inactive. Effect concordant, with the observation that prolonged exposure to adrenaline, participates in the etiology of stress triggered pathologies.At the cell physiological level AC responsiveness to hormones could be modulated by the concentration of chelating metabolites. These ones produce the release of free ATP~(4-), a negative modulator of AC and the Mg~(2+) activated insulin receptor tyrosine kinase (IRTK), thus, allowing an integration of the hormonal response of both enzymes by ionic controls. This effect could supersede the metabolic feedback control by energy charge. Accordingly, maximum hormonal response of both enzymes, to high Mg~(2+) and low free ATP~(4-), allows a correlation with the known effects of low caloric intake increasing average life expectancy.
机译:用去甲肾上腺素(去甲肾上腺素)孵育大鼠大脑纹状体和皮层分离膜,表明离子镁(Mg〜(2+))是腺苷酸环化酶[ATP焦磷酸裂解酶(环化)(EC)的神经递质激活反应所必需的。 4.6.1.1)],AC。对肾上腺素激活作用的Mg〜(2+)依赖性反应,以及随后的钙抑制,表明其具有周转能力,与膜电位的周期性变化和短时参与有关。在细胞中,神经递质通过激活AC产生细胞内环状AMP。钙进入细胞会抑制酶。环状AMP的增加会激活激酶A及其蛋白的磷酸化活性,从而允许长期的记忆途径。因此,巩固与情绪学习和记忆肯定有关的神经元回路。激活作用涉及酶-去甲肾上腺素复合物,其可以通过长时间暴露而参与战斗或逃避反应的生理学。但是,不稳定的酶复合物的持续存在会使酶失去活性。与长期暴露于肾上腺素的观察结果一致,其参与了应激触发病理的病因。在细胞生理水平,AC对激素的反应性可以通过螯合代谢物的浓度来调节。这些产生游离的ATP〜(4-),AC的负调节剂和Mg〜(2+)激活的胰岛素受体酪氨酸激酶(IRTK)的释放,从而使两种酶的激素反应通过离子整合控件。这种作用可以取代能量电荷对代谢反馈的控制。因此,两种酶对高Mg〜(2+)和低游离ATP〜(4-)的最大激素反应,与已知的低热量摄入增加平均预期寿命的影响相关。

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