首页> 美国卫生研究院文献>The Journal of Physiology >Modulation of potassium conductances by an endogenous neuropeptide in neurones of Aplysia californica.
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Modulation of potassium conductances by an endogenous neuropeptide in neurones of Aplysia californica.

机译:加州Ap神经元中内源性神经肽对钾电导的调节。

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摘要

1. Macroscopic and single-channel currents were recorded from voltage-clamped neurones in the abdominal and pleural ganglia of Aplysia californica in order to investigate conductance changes elicited by application of the endogenous peptide FMRFamide (Phe-Met-Arg-Phe-NH2) and related neuropeptides to the cell surface. 2. The Ca-dependent K current, IK(Ca), when elicited at a constant voltage by intracellular injection of Ca2+, was insensitive to FMRFamide or its derivative YGG-FMRFamide (Tyr-Gly-Gly-Phe-Met-Arg-Phe-NH2). 3. Under steady voltage clamp, certain cells responded to a brief puff of FMRFamide or YGG-FMRFamide with a transient outward current lasting about 1 min. Unclamped cells responded with a corresponding hyperpolarization. These responses reversed at about -75 mV. Ion substitution indicated that the current is carried by K+. 4. FMRFamide and YGG-FMRFamide were equally effective in activating the outward current, whereas FMRF, met-enkephalin and leu-enkephalin were ineffective. 5. At voltages negative to -30 mV and, in the absence of extracellular Ca2+, also at more positive potentials, the FMRFamide-sensitive current showed no voltage dependence beyond that predicted from constant-field considerations. 6. The response to FMRFamide was relatively insensitive to extracellular tetraethylammonium (TEA, KD approximately 75 mM) and 4-aminopyridine (4-AP, KD approximately 6 mM). It was suppressed in Ba-containing solutions, but was unaffected by injection of the Ca chelating agent EGTA. The response was blocked by serotonin and other agents known to elevate intracellular adenosine 3',5'-phosphate (cyclic AMP) levels, and by direct injection of cyclic AMP into the cell. 7. In its pharmacological properties and lack of voltage dependence, the FMRFamide-activated current resembles the 'S' current, IK(S), a K current suppressed by application of serotonin in Aplysia neurones. 8. The similarity between the FMRFamide-sensitive current and the 'S' current was confirmed in cell-attached patch-clamp studies, in which activity of 'S' channels was found to be reduced by serotonin, and enhanced by FMRFamide. 9. Thus, FMRFamide may function in Aplysia to counteract the serotonergic modulation of 'S' channels, which has been proposed as a mechanism of presynaptic plasticity in this mollusc.
机译:1.记录来自加州海ly腹部和胸膜神经节中电压钳制神经元的宏观和单通道电流,以研究内源性肽FMRFamide(Phe-Met-Arg-Phe-NH2)和相关的神经肽到细胞表面。 2.当通过细胞内注射Ca2 +在恒定电压下引起时,Ca依赖性K电流IK(Ca)对FMRFamide或其衍生物YGG-FMRFamide(Tyr-Gly-Gly-Phe-Met-Arg-Phe -NH2)。 3.在稳定的电压钳位下,某些细胞对短暂的FMRFamide或YGG-FMRFamide的抽吸反应持续约1分钟。未钳位的细胞以相应的超极化反应。这些响应在大约-75 mV处反向。离子取代表明电流由K +携带。 4. FMRFamide和YGG-FMRFamide在激活外向电流方面同样有效,而FMRF,甲脑啡肽和亮脑啡肽无效。 5.在负电压至-30 mV的电压下,并且在不存在细胞外Ca2 +的情况下,也在更高的正电势下,对FMRFamide敏感的电流没有显示出超出恒定场考虑的电压依赖性。 6.对FMRFamide的反应对细胞外四乙铵(TEA,KD约为75 mM)和4-氨基吡啶(4-AP,KD约6 mM)相对不敏感。它在含Ba的溶液中被抑制,但不受Ca螯合剂EGTA注入的影响。血清素和其他已知可提高细胞内3',5'-磷酸腺苷(环AMP)水平的药物以及将环AMP直接注射到细胞中可阻断反应。 7.由于其药理特性和对电压的依赖性,FMRFamide激活的电流类似于“ S”电流IK(S),这是通过在海兔神经元中应用5-羟色胺抑制的K电流。 8.在附着细胞的膜片钳研究中证实了FMRFamide敏感电流与“ S”电流之间的相似性,其中发现5-羟色胺降低了“ S”通道的活性,而FMRFamide增强了“ S”通道的活性。 9.因此,FMRFamide可能在海藻中起作用,以抵消“ S”通道的血清素调节,这已被认为是该软体动物突触前可塑性的机制。

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