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鸡松果体的环鸟苷酸激活通道:二价阳离子、pH值和环磷酸腺苷的影响。

Cyclic GMP-activated channels of the chick pineal gland: effects of divalent cations, pH, and cyclic AMP.

作者信息

Dryer S E, Henderson D

机构信息

Department of Biological Science, Florida State University, Tallahassee 32306.

出版信息

J Comp Physiol A. 1993 Apr;172(3):271-9. doi: 10.1007/BF00216609.

Abstract

Chick pineal cells maintained in dissociated cell culture express an intrinsic photosensitive circadian oscillator, but the mechanisms of phototransduction in avian pinealocytes are not fully understood. In this study, we have used inside-out patches to examine the characteristics of cyclic GMP-activated channels of chick pinealocytes in more detail, concentrating on the effects of factors known to modulate the secretion of melatonin and/or the function of circadian pacemakers. In most patches, the predominant conductance state was 19 pS in symmetrical 145 mM NaCl. But in some patches, a second cyclic GMP-activated channel with a unitary conductance of 29 pS was also present. The current flowing through cyclic GMP-activated channels was not affected by application of salines containing 1 microM Ca2+ to the cytoplasmic face of the patch membrane. By contrast, application of 1 mM Ca2+ caused a partial reduction in cyclic GMP-activated current at all membrane potentials. Application of 1-5 mM Mg2+ ions caused a virtually complete blockade of current at positive membrane potentials, but caused only a small decrease in current at negative membrane potentials. No obvious differences in the gating of cyclic GMP-activated channels were observed in pH 8.2, 7.4 or 6.2 salines. Application of salines containing 100 microM, 500 microM, or 1 mM cyclic AMP did not cause activation of the channels, but 5 mM cyclic AMP evoked a low level of channel activity. Application of 5 mM but not 100 microM cyclic AMP decreased the probability of channel activation caused by 20-100 microM cyclic GMP and also increased the percentage of openings to an 11 pS subconductance state. Thus, cyclic AMP acts as a weak partial agonist. Nevertheless, the gating of these channels does not seem to be controlled directly by physiologically relevant changes in intracellular Ca2+, pH, or cyclic AMP.

摘要

在解离细胞培养中维持的鸡松果体细胞表达一种内在的光敏昼夜节律振荡器,但禽类松果体细胞中的光转导机制尚未完全了解。在本研究中,我们使用内面向外的膜片来更详细地研究鸡松果体细胞中环鸟苷酸激活通道的特性,重点关注已知调节褪黑素分泌和/或昼夜节律起搏器功能的因素的影响。在大多数膜片中,在对称的145 mM NaCl中,主要的电导状态为19 pS。但在一些膜片中,还存在第二个单位电导为29 pS的环鸟苷酸激活通道。流经环鸟苷酸激活通道的电流不受向膜片膜细胞质面施加含1 microM Ca2+的盐溶液的影响。相比之下,施加1 mM Ca2+会导致在所有膜电位下环鸟苷酸激活电流部分降低。施加1-5 mM Mg2+离子会在正膜电位下几乎完全阻断电流,但在负膜电位下仅导致电流小幅下降。在pH 8.2、7.4或6.2的盐溶液中,未观察到环鸟苷酸激活通道门控的明显差异。施加含100 microM、500 microM或1 mM环磷酸腺苷的盐溶液不会导致通道激活,但5 mM环磷酸腺苷会引发低水平的通道活性。施加5 mM而非100 microM环磷酸腺苷会降低由20-100 microM环鸟苷酸引起的通道激活概率,并且还会增加通向11 pS亚电导状态的开放百分比。因此,环磷酸腺苷作为一种弱部分激动剂。然而,这些通道的门控似乎并不直接受细胞内Ca2+、pH或环磷酸腺苷的生理相关变化的控制。

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