Haynes L W
Department of Medical Physiology, University of Calgary, Alberta, Canada.
J Gen Physiol. 1995 Sep;106(3):507-23. doi: 10.1085/jgp.106.3.507.
The ability of the divalent cations calcium, magnesium, and barium to permeate through the cGMP-gated channel of catfish cone outer segments was examined by measuring permeability and conductance ratios under biionic conditions and by measuring their ability to block current carried by sodium when presented on the cytoplasmic or extracellular side of the channel. Current carried by divalent cations in the absence of monovalent cations showed the typical rectification pattern observed from these channels under physiological conditions (an exponential increase in current at both positive and negative voltages). With calcium as the reference ion, the relative permeabilities were Ca > Ba > Mg, and the chord conductance ratios at +50 mV were in the order of Ca approximately Mg > Ba. With external sodium as the reference ion, the relative permeabilities were Ca > Mg > Ba > Na with chord conductance ratios at +30 mV in the order of Na >> Ca = Mg > Ba. The ability of divalent cations presented on the intracellular side to block the sodium current was in the order Ca > Mg > Ba at +30 mV and Ca > Ba > Mg at -30 mV. Block by external divalent cations was also investigated. The current-voltage relations showed block by internal divalent cations reveal no anomalous mole fraction behavior, suggesting little ion-ion interaction within the pore. An Eyring rate theory model with two barriers and a single binding site is sufficient to explain both these observations and those for monovalent cations, predicting a single-channel conductance under physiological conditions of 2 pS and an inward current at -30 mV carried by 82% Na, 5% Mg, and 13% Ca.
通过在双离子条件下测量渗透率和电导率比,以及测量二价阳离子在通道胞质侧或胞外侧存在时阻断钠离子携带电流的能力,研究了二价阳离子钙、镁和钡透过鲶鱼视锥细胞外段cGMP门控通道的能力。在无单价阳离子存在的情况下,二价阳离子携带的电流呈现出这些通道在生理条件下观察到的典型整流模式(在正电压和负电压下电流呈指数增加)。以钙为参考离子时,相对渗透率为Ca > Ba > Mg,在+50 mV时的弦电导比顺序为Ca≈Mg > Ba。以外部钠为参考离子时,相对渗透率为Ca > Mg > Ba > Na,在+30 mV时的弦电导比顺序为Na >> Ca = Mg > Ba。在+30 mV时,胞内侧存在的二价阳离子阻断钠电流的能力顺序为Ca > Mg > Ba,在 -30 mV时为Ca > Ba > Mg。还研究了外部二价阳离子的阻断作用。电流-电压关系表明,内部二价阳离子的阻断没有显示出异常摩尔分数行为,这表明孔内离子-离子相互作用很小。具有两个势垒和一个结合位点的艾林速率理论模型足以解释这些观察结果以及单价阳离子的观察结果,预测在生理条件下单通道电导为2 pS,在 -30 mV时内向电流由82%的Na、5%的Mg和13%的Ca携带。