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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Activity- and age-dependent modulation of GABAergic neurotransmission by System A-mediated glutamine uptake.
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Activity- and age-dependent modulation of GABAergic neurotransmission by System A-mediated glutamine uptake.

机译:系统A介导的谷氨酰胺摄取对GABA能神经传递的活动和年龄依赖性调节。

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摘要

GABAergic neurotransmission adapts to maintain normal brain function in a wide range of activity states through multiple mechanisms; pre-synaptic control of quantal size has only recently gained recognition as one of those mechanisms. GABA synthesis from glutamate is coupled with vesicular packaging, and therefore the supply of glutamate can affect inhibitory synaptic strength. Because System A transporters supply glutamine to neurons, where it is converted to glutamate, we hypothesized that regulation of the activity of these transporters could alter glutamine uptake and provide a mechanism to link supply to demand for neurotransmitter GABA. In immature and mature rat hippocampus, after a period of hyperexcitability, we observed a System A-dependent enhancement of inhibitory synaptic strength along with an increase in System A activity in synaptosomes under the same conditions. Under resting conditions, System A's contribution of glutamine to synaptic GABA diminished with age, correlating with reduced SNAT1/SAT1 expression and, even more so, with its activity on synaptic membranes. We conclude that System A activity is highly regulated, by depolarization and developmental cues, to dynamically modulate GABAergic transmission. Our evidence suggests that SNAT1/SAT1 is the transporter that plays a critical role in dynamically modulating inhibition in response to metabolic demands.
机译:GABA能神经传递可以通过多种机制在各种活动状态下维持正常的大脑功能。突触前控制数量的大小直到最近才被认可为这些机制之一。由谷氨酸合成GABA与囊泡包装相结合,因此谷氨酸的供应可影响抑制性突触强度。因为系统A转运蛋白向神经元供应谷氨酰胺,然后将其转化为谷氨酸,所以我们假设调节这些转运蛋白的活性可以改变谷氨酰胺的吸收,并提供了一种将供应与神经递质GABA需求联系起来的机制。在未成熟和成熟的大鼠海马中,经过一段时间的过度兴奋后,我们观察到在相同条件下,系统A依赖性抑制突触强度的增强以及系统A突触小体活性的增加。在静止条件下,系统A的谷氨酰胺对突触GABA的贡献随着年龄的增长而降低,这与SNAT1 / SAT1表达降低有关,甚至与它对突触膜的活性有关。我们得出结论,系统A的活动受到去极化和发育线索的高度调节,以动态调节GABA能传递。我们的证据表明,SNAT1 / SAT1是转运蛋白,在动态调节抑制代谢的需求中起着关键作用。

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