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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Dopamine Evokes a Trace Amine Receptor-dependent Inward Current that is Regulated by AMP Kinase in Substantia Nigra Dopamine Neurons
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Dopamine Evokes a Trace Amine Receptor-dependent Inward Current that is Regulated by AMP Kinase in Substantia Nigra Dopamine Neurons

机译:多巴胺唤起痕量胺受体依赖性的向内电流,其在体积NIGRA多巴胺神经元中由AMP激酶调节

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We reported recently that activators of AMP-activated protein kinase (AMPK) slow the rundown of current evoked by the D2 autoreceptor agonist quinpirole in rat substantia nigra compacta (SNC) dopamine neurons. The present study examined the effect of AMPK on current generated by dopamine, which unlike quinpirole, is a substrate for the dopamine transporter (DAT). Using whole-cell patch-clamp, we constructed current-voltage (I- V) plots while superfusing brain slices with dopamine (100 mu M) for 25 min. Two minutes after starting superfusion, dopamine evoked a peak current with an average slope conductance of 0.97 nS and an estimated reversal potential (E-rev) of -113 mV, which is near that expected for K+. But after 10 min of superfusion, dopamine-evoked currents had shifted to more depolarized values with a slope conductance of 0.64 nS and an E-rev of -83 mV. This inward shift in current was completely blocked by the DAT inhibitor GBR12935. However, an AMPK blocking agent (dorsomorphin) permitted the emergence of inward current despite the continued presence of the DAT inhibitor. When D2 autoreceptors were blocked by sulpiride, I-V plots showed that dopamine evoked an inward current with an estimated slope conductance of 0.45 nS with an E-rev of -57 mV. Moreover, this inward current was completely blocked by the trace amine-associated receptor 1 (TAAR1) antagonist EPPTB. These results suggest that dopamine activates a TAAR1-dependent non-selective cation current that is regulated by AMPK. (C) 2019 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:我们最近报道了AMP活化蛋白激酶(AMPK)的激活剂减缓了D2吸入膜激动剂喹罗LOT诱导的大鼠大鼠NIGRA COMPACTA(SNC)多巴胺神经元诱捕的电流的降次。本研究检测了AMPK对多巴胺产生的电流的影响,该多巴胺与喹喔啉不同,是多巴胺转运蛋白(DAT)的基材。使用全池贴片夹,我们构造了电流电压(I-V)块,同时用多巴胺(100μm)的超级脑切片25分钟。起始过料后两分钟,多巴胺诱发峰值电流,平均斜坡电导为0.97ns,估计的逆转电位(e-ref)为-113 mV,靠近K +的预期。但在10分钟内造成后,多巴胺诱发的电流已经移位到更多的去极化值,其斜率导电0.64ns和-83mV的E-Rev。 DAT抑制剂GBR12935完全阻断电流内的内向偏移。然而,尽管DAT抑制剂持续存在,但AMPK阻断剂(Dorsomorphin)允许出现内向电流。当D2吸收剂被硫化物阻断时,I-V图表明,多巴胺诱使向内电流引起估计的斜坡电导0.45ns,E-Rev为-57mV。此外,该向内电流被痕量胺相关的受体1(淘)拮抗剂EPPTB完全阻塞。这些结果表明,多巴胺激活了由AMPK调节的Taar1依赖性非选择性阳离子电流。 (c)2019年IBRO。 elsevier有限公司出版。保留所有权利。

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