首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Neurotensin and dopamine D2 activation oppositely regulate the same K+ conductance in rat midbrain dopaminergic neurons.
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Neurotensin and dopamine D2 activation oppositely regulate the same K+ conductance in rat midbrain dopaminergic neurons.

机译:神经降压素和多巴胺D2激活相反地调节大鼠中脑多巴胺能神经元中相同的K +电导。

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摘要

Midbrain dopaminergic neurons are excited by neurotensin (NT) and inhibited by dopamine. Interactions between these neurotransmitters have been reported, but no interaction has yet been identified at the level of ionic and signal transduction mechanisms. Using the whole-cell clamp technique, we examined the interaction of NT and quinpirole (QUIN) (a dopamine D2 agonist) on midbrain ventral tegmental area neurons cultured from the rat. We found that NT could inhibit the K+ conductance induced by QUIN. By interrupting normal signal transduction with the non-hydrolyzable GTP analogue GTPgammaS, we found that this interaction occurred downstream of the membrane neurotransmitter receptors. Similar interactions were observed between QUIN and tachykinin or metabotropic glutamate agonists.
机译:中脑多巴胺能神经元被神经降压素(NT)激发并被多巴胺抑制。这些神经递质之间的相互作用已有报道,但在离子和信号转导机制方面尚无相互作用。使用全细胞钳技术,我们研究了从大鼠培养的中脑腹侧被盖区神经元中NT和喹吡罗(QUIN)(多巴胺D2激动剂)的相互作用。我们发现NT可以抑制QUIN诱导的K +电导。通过用不可水解的GTP类似物GTPgammaS中断正常的信号转导,我们发现这种相互作用发生在膜神经递质受体的下游。在QUIN和速激肽或代谢型谷氨酸激动剂之间观察到类似的相互作用。

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