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首页> 外文期刊>Journal of Neurophysiology >Properties of a slow nonselective cation conductance modulated by neurotensin and other neurotransmitters in midbrain dopaminergic neurons.
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Properties of a slow nonselective cation conductance modulated by neurotensin and other neurotransmitters in midbrain dopaminergic neurons.

机译:中脑多巴胺能神经元中神经降压素和其他神经递质调节慢非选择性阳离子电导的特性。

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摘要

1. A widespread mechanism of slow excitation throughout the nervous system involves overlapping changes in nonselective ion conductance and K+ conductance. We used whole cell patch-clamp recording to characterize such a nonselective conductance induced by neurotensin (NT) and other neurotransmitters in immunocytochemically identified dopaminergic neurons cultured from the rat ventral tegmental area (VTA). 2. The NT-induced inward current consisted of an initial peak and later "hump." The response was blocked reversibly by the nonpeptide NT-receptor antagonist SR48692, suggesting that it resulted from activation of NT receptors. 3. The channel was almost equally permeable to Na+ and K+, as determined from the reversal potential shift upon switching from Na+- to K(+)-containing external solution. The permeability of Cs+ was similar to that of Na+, as determined from the zero-current equation and average reversal potential in the 75 mM Na+ solution. Cl- was not significantly permeable. 4. In Ca(2+)-free external solution, the NT-induced current showed a fourfold increase in amplitude, and in high Mg2+ (20 mM) external solution, the NT-induced current showed an 80% decrease in amplitude, suggesting that external Ca2+ and Mg2+ could block the nonselective conductance. 5. The NT response was unaffected by loading the neurons with either the Ca2+ chelator 1,2-bis(2-aminophenoxy)ethane-N,N,N',N'-tetraacetic acid or with 1 mM ca2+. The nonselective conductance was therefore not Ca2+ activated. 6. Loading the neurons with cyclic GMP or cyclic AMP (each with the phosphodiesterase inhibitor isobutyl-methylxanthine) did not affect the NT response. The NT-induced nonselective conductance was therefore not cyclic nucleotide-activated. 7. The latency of the NT response was long (> or = 185 ms, average 406 ms, 30 degrees C), indicating that NT did not induce the conductance through ligand-gated channels. Thus, NT activated a slow nonselective cation conductance. 8. Neurokinin B, a metabotropic glutamate agonist, and muscarine elicited responses similar to the NT response. The NT response could be elicited after desensitizing the responses to these other neurotransmitters, indicating receptor specificity in the activation of the nonselective conductance.
机译:1.整个神经系统缓慢激发的广泛机制涉及非选择性离子电导和K +电导的重叠变化。我们使用全细胞膜片钳记录来表征由大鼠腹侧被盖区(VTA)培养的免疫细胞化学鉴定的多巴胺能神经元中的神经降压素(NT)和其他神经递质诱导的非选择性电导。 2. NT感应的内向电流包括一个初始峰值和后来的“驼峰”。该反应被非肽NT受体拮抗剂SR48692可逆地阻断,表明它是由NT受体的激活引起的。 3.根据从含Na +-到含K(+)的外部溶液转换时的反向电位偏移确定,该通道几乎对Na +和K +具有相同的渗透性。由零电流方程和75 mM Na +溶液中的平均反转电位确定,Cs +的磁导率类似于Na +的磁导率。 Cl-没有明显的渗透性。 4.在不含Ca(2+)的外部溶液中,NT诱导的电流显示出振幅增加四倍,而在高Mg2 +(20 mM)外部溶液中,NT诱导的电流显示出振幅下降80%,表明外部Ca2 +和Mg2 +可以阻止非选择性电导。 5.通过用Ca2 +螯合剂1,2-双(2-氨基苯氧基)乙烷-N,N,N',N'-N'-四乙酸或1 mM Ca2 +加载神经元,NT反应不会受到影响。因此,非选择性电导未被Ca2 +激活。 6.用环状GMP或环状AMP(每个都用磷酸二酯酶抑制剂异丁基-甲基黄嘌呤)加载神经元不会影响NT反应。 NT诱导的非选择性电导因此不是环状核苷酸激活的。 7. NT响应的潜伏期较长(>或= 185 ms,平均406 ms,30摄氏度),表明NT没有通过配体门控通道诱导电导。因此,NT激活了缓慢的非选择性阳离子电导。 8.神经激肽B,一种代谢型谷氨酸激动剂,和毒蕈碱引起的响应类似于NT响应。在对其他神经递质降低反应敏感性后,可引起NT反应,这表明非选择性电导激活的受体特异性。

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