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The Atypical MAP Kinase SWIP-13/ERK8 Regulates Dopamine Transporters through a Rho-Dependent Mechanism

机译:非典型MAP激酶SWIP-13 / ERK8通过Rho依赖性机制调节多巴胺转运蛋白。

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摘要

The neurotransmitter dopamine (DA) regulates multiple behaviors across phylogeny, with disrupted DA signaling in humans associated with addiction, attention-deficit/ hyperactivity disorder, schizophrenia, and Parkinson's disease. The DA transporter (DAT) imposes spatial and temporal limits on DA action, and provides for presynaptic DA recycling to replenish neurotransmitter pools. Molecular mechanisms that regulate DAT expression, trafficking, and function, particularly in vivo, remain poorly understood, though recent studies have implicated rho-linked pathways in psychostimulant action. To identify genes that dictate the ability of DAT to sustain normal levels of DA clearance, we pursued a forward genetic screen in Caenorhabditis elegans based on the phenotype swimming-induced paralysis (Swip), a paralytic behavior observed in hermaphrodite worms with loss-of-function dat-1 mutations. Here, we report the identity of swip-13, which encodes a highly conserved ortholog of the human atypical MAP kinase ERK8. We present evidence that SWIP-13 acts presynaptically to insure adequate levels of surface DAT expression and DA clearance. Moreover, we provide in vitro and in vivo evidence supporting a conserved pathway involving SWIP-13/ERK8 activation of Rho GTPases that dictates DAT surface expression and function.>SIGNIFICANCE STATEMENT Signaling by the neurotransmitter dopamine (DA) is tightly regulated by the DA transporter (DAT), insuring efficient DA clearance after release. Molecular networks that regulate DAT are poorly understood, particularly in vivo. Using a forward genetic screen in the nematode Caenorhabditis elegans, we implicate the atypical mitogen activated protein kinase, SWIP-13, in DAT regulation. Moreover, we provide in vitro and in vivo evidence that SWIP-13, as well as its human counterpart ERK8, regulate DAT surface availability via the activation of Rho proteins. Our findings implicate a novel pathway that regulates DA synaptic availability and that may contribute to risk for disorders linked to perturbed DA signaling. Targeting this pathway may be of value in the development of therapeutics in such disorders.
机译:神经递质多巴胺(DA)调节着整个系统发育的多种行为,与成瘾,注意力缺陷/多动症,精神分裂症和帕金森氏病相关的人类DA信号被破坏。 DA转运蛋白(DAT)对DA作用施加了空间和时间限制,并提供了突触前DA循环以补充神经递质池。调节DAT表达,运输和功能(尤其是在体内)的分子机制仍然知之甚少,尽管最近的研究已将Rho关联的途径牵涉到心理刺激作用中。为了鉴定决定DAT维持DA清除水平正常的能力的基因,我们基于表型游泳诱发的麻痹(Swip)对秀丽隐杆线虫进行了正向遗传筛选,这是在雌雄同体蠕虫中观察到的麻痹行为,其丧失了功能dat-1突变。在这里,我们报告swip-13的身份,该身份编码人类非典型MAP激酶ERK8的高度保守的直系同源基因。我们提供证据表明SWIP-13可以突触地起作用,以确保表面DAT表达和DA清除水平足够。此外,我们提供了体外和体内证据,这些证据支持涉及Rho GTPases的SWIP-13 / ERK8激活的保守途径,该途径决定DAT表面的表达和功能。>意义声明,神经递质多巴胺(DA)发出的信号是由DA运输车(DAT)严格监管,以确保释放后有效的DA清除。调节DAT的分子网络知之甚少,尤其是在体内。在线虫秀丽隐杆线虫中使用正向遗传筛选,我们将非典型的有丝分裂原激活的蛋白激酶SWIP-13包含在DAT调节中。此外,我们提供了体外和体内证据,SWIP-13及其人类对应物ERK8通过激活Rho蛋白来调节DAT表面的可用性。我们的发现暗示了一种调节DA突触可用性的新途径,并且可能导致与扰动DA信号有关的疾病风险。靶向这种途径可能在此类疾病的治疗方法开发中具有价值。

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