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豚鼠隔区神经元中促甲状腺激素释放激素(TRH)及其衍生物对钾离子电流和胞质钙离子的双重调节作用

Dual modulation of K+ currents and cytosolic Ca2+ by the peptide TRH and its derivatives in guinea-pig septal neurones.

作者信息

Toledo-Aral J, Castellano A, Ureña J, López-Barneo J

机构信息

Departamento de Fisiología y Biofísica, Facultad de Medicina, Universidad de Sevilla, Spain.

出版信息

J Physiol. 1993 Dec;472:327-40. doi: 10.1113/jphysiol.1993.sp019949.

Abstract
  1. We describe a dual effect of the peptide TRH (thyrotrophin-releasing hormone) and its derivatives at concentrations between 0.1 and 1 microM on the K+ currents and cytosolic Ca2+ concentration in enzymatically dispersed septal neurones. 2. In response to membrane depolarization, septal neurones recorded under whole-cell patch clamp can generate two major K+ currents: (i) a fast and transient K+ current (I(t)), that after a maximum at 2-5 ms inactivates completely at all membrane potentials in less than 50 ms; and (ii) a slowly activating current (I(s)), which reaches a maximum in 15-20 ms and does not exhibit appreciable inactivation during short-lasting voltage pulses. 3. In about 70% of the neurones tested (n = 48) TRH induced a reversible, and often transient, increase of I(t), I(s) or both K+ conductaNces. In approximately 10% of the cells the peptide had an opposite effect and caused a more protracted and partially reversible attenuation of the amplitude of I(t) and I(s). 4. The dual action of TRH on the K+ currents was mimicked by its derivatives but the effects varied depending on their structural relationship with the precursor neuropeptide. The physiological metabolite cyclo-His-Pro and the synthetic analogue methyl-TRH, in which the carboxyl terminus of the molecule is conserved, increased the K+ currents, whereas depression of the K+ conductances was predominantly observed in the presence of TRH-OH, in which the amino end of TRH is maintained intact. 5. In fura-2-loaded unclamped cells, TRH induced either release of Ca2+ from internal stores, Ca2+ entry, or both. With TRH-OH we never observed mobilization of internal Ca2+ but this peptide evoked a large Ca2+ influx. 6. The results demonstrate that the physiological metabolites of brain TRH (cyclo-His-Pro and TRH-OH) have biological activity. TRH and its derivatives exert two types of regulatory actions on the voltage-gated K+ channels and cytosolic Ca2+ concentration in central neurones, which can be explained assuming that TRH and TRH-derived products interact with different subtypes of brain receptors recognizing preferentially either the amino or the carboxyl termini of the TRH molecule.
摘要
  1. 我们描述了促甲状腺激素释放激素(TRH)及其衍生物在0.1至1微摩尔浓度范围内对酶分散的隔区神经元的钾离子电流和胞质钙离子浓度的双重作用。2. 响应膜去极化,在全细胞膜片钳记录下的隔区神经元可产生两种主要的钾离子电流:(i)快速瞬态钾离子电流(I(t)),在2至5毫秒达到最大值后,在所有膜电位下不到50毫秒内完全失活;(ii)缓慢激活电流(I(s)),在15至20毫秒达到最大值,在短持续时间的电压脉冲期间不表现出明显的失活。3. 在约70%的测试神经元(n = 48)中,TRH诱导I(t)、I(s)或两者的钾离子电导可逆且通常是短暂的增加。在约10%的细胞中,该肽具有相反的作用,导致I(t)和I(s)幅度更持久且部分可逆的衰减。4. TRH对钾离子电流的双重作用被其衍生物模拟,但效果因它们与前体神经肽的结构关系而异。生理代谢物环组氨酸 - 脯氨酸和合成类似物甲基 - TRH,其中分子的羧基末端保守,增加了钾离子电流,而在TRH - OH存在下主要观察到钾离子电导降低,其中TRH的氨基末端保持完整。5. 在加载fura - 2的未钳制细胞中,TRH诱导钙离子从内部储存释放、钙离子内流或两者兼有。对于TRH - OH,我们从未观察到内部钙离子的动员,但该肽引起大量钙离子内流。6. 结果表明,脑TRH的生理代谢物(环组氨酸 - 脯氨酸和TRH - OH)具有生物活性。TRH及其衍生物对中枢神经元的电压门控钾离子通道和胞质钙离子浓度发挥两种类型的调节作用,这可以通过假设TRH及其衍生产物与优先识别TRH分子氨基或羧基末端的不同亚型脑受体相互作用来解释。

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