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Kinase-dependent Regulation of Monoamine Neurotransmitter Transporters

机译:单胺类神经递质转运蛋白的激酶依赖性调节

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摘要

Modulation of neurotransmission by the monoamines dopamine (DA), norepinephrine (NE), and serotonin (5-HT) is critical for normal nervous system function. Precise temporal and spatial control of this signaling in mediated in large part by the actions of monoamine transporters (DAT, NET, and SERT, respectively). These transporters act to recapture their respective neurotransmitters after release, and disruption of clearance and reuptake has significant effects on physiology and behavior and has been linked to a number of neuropsychiatric disorders. To ensure adequate and dynamic control of these transporters, multiple modes of control have evolved to regulate their activity and trafficking. Central to many of these modes of control are the actions of protein kinases, whose actions can be direct or indirectly mediated by kinase-modulated protein interactions. Here, we summarize the current state of our understanding of how protein kinases regulate monoamine transporters through changes in activity, trafficking, phosphorylation state, and interacting partners. We highlight genetic, biochemical, and pharmacological evidence for kinase-linked control of DAT, NET, and SERT and, where applicable, provide evidence for endogenous activators of these pathways. We hope our discussion can lead to a more nuanced and integrated understanding of how neurotransmitter transporters are controlled and may contribute to disorders that feature perturbed monoamine signaling, with an ultimate goal of developing better therapeutic strategies.
机译:单胺多巴胺(DA),去甲肾上腺素(NE)和5-羟色胺(5-HT)对神经传递的调节对于正常神经系统功能至关重要。这种信号的精确时空控制主要由单胺转运蛋白(分别为DAT,NET和SERT)的作用介导。这些转运蛋白的作用是在释放后重新捕获各自的神经递质,清除和重新摄取的破坏对生理和行为产生重大影响,并与许多神经精神疾病有关。为了确保对这些运输者进行充分和动态的控制,已经形成了多种控制方式来规范其活动和贩运。这些控制方式中许多的核心是蛋白激酶的作用,其作用可以由激酶调节的蛋白相互作用直接或间接介导。在这里,我们总结了我们对蛋白激酶如何通过活性,运输,磷酸化状态和相互作用伙伴的变化调节单胺转运蛋白的理解的当前状态。我们重点介绍了DAT,NET和SERT激酶相关控制的遗传,生化和药理学证据,并在适用时提供了这些途径的内源性激活剂的证据。我们希望我们的讨论可以对神经递质转运蛋白的控制方式产生更细致和全面的理解,并可能导致以单胺信号传导为特征的疾病,最终目标是开发更好的治疗策略。

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