Richmond J E, Sher E, Keller R, Haylett B, Reichwein B, Cooke I M
Department of Biology, College of Science, Utah State University, Logan 84322-5305, USA.
Invert Neurosci. 1995 Dec;1(3):215-21. doi: 10.1007/BF02211023.
The effect of varying the external Mg2+ concentration on Ca2+ currents through voltage-operated Ca2+ channels has been examined with the patch-clamp technique in acutely isolated neuronal somata from the X-organ-sinus gland (XOSG) of the crab, Cardisoma carnifex. Neurons from this neurosecretory system were selected for morphology associated with crustacean hyperglycemic hormone (CHH) content. In parallel, the effects of Mg2+ concentration on K(+)-evoked secretion of CHH from isolated, intact XOSGs have been assayed by ELISA. At physiological Ca2+ levels the high-voltage-activated Ca2+ currents were attenuated with increasing Mg2+ concentration, with 50% inhibition at approximately 75 mM. Mg2+ block was voltage-dependent, relief from block occurring with increasing depolarization. Thus, in 24 mM Mg2+ inhibition of the Ca2+ current was approximately 55% at -10 mV. Secretion of CHH varied almost linearly with the log of Mg2+ concentration; in 2.4 mM Mg2+ it was double that in 24 mM Mg2+ and almost completely inhibited in 100 mM. Thus, Mg2+ produces a parallel inhibition of Ca2+ currents and CHH secretion and may play a role as a physiological modulator of neuronal activity and secretion in the XOSG of these crabs.
运用膜片钳技术,在从食蟹硬壳蟹的X器官-窦腺(XOSG)急性分离出的神经元胞体中,研究了改变外部Mg2+浓度对通过电压门控Ca2+通道的Ca2+电流的影响。选择来自该神经分泌系统的神经元,是因为其形态与甲壳类高血糖激素(CHH)含量相关。同时,通过酶联免疫吸附测定法(ELISA)检测了Mg2+浓度对从分离的完整XOSG中K(+)诱发的CHH分泌的影响。在生理Ca2+水平下,随着Mg2+浓度增加,高压激活的Ca2+电流减弱,在约75 mM时抑制率达50%。Mg2+阻断具有电压依赖性,随着去极化增加,阻断解除。因此,在24 mM Mg2+中,-10 mV时Ca2+电流的抑制率约为55%。CHH的分泌几乎随Mg2+浓度的对数呈线性变化;在2.4 mM Mg2+中,其分泌量是24 mM Mg2+中的两倍,在100 mM时几乎完全被抑制。因此,Mg2+对Ca2+电流和CHH分泌产生平行抑制作用,可能在这些螃蟹的XOSG中作为神经元活动和分泌的生理调节因子发挥作用。