首页> 美国卫生研究院文献>The Journal of Physiology >Cation interactions within the cyclic GMP-activated channel of retinal rods from the tiger salamander.
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Cation interactions within the cyclic GMP-activated channel of retinal rods from the tiger salamander.

机译:老虎sal视网膜棒的循环GMP激活通道内的阳离子相互作用。

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摘要

1. The ionic dependence of current through the 3',5'-cyclic guanosine monophosphate (cyclic GMP)-activated channels of salamander rods was studied in excised inside-out membrane patches from isolated outer segments. Voltage-clamp experiments on transducing rods were performed so that the channels in intact cells could be compared with those in excised patches. 2. The reversal potential of the cyclic GMP-induced patch current was close to the Na+ equilibrium potential when the concentration of NaCl on the cytoplasmic surface of a patch was varied at constant external NaCl concentration. Fitting the Goldman-Hodgkin-Katz equation indicated that the apparent ratio of permeabilities for Na+ and Cl- was at least 50. This confirms a previous report that the channel's Na+ permeability is much larger than its Cl- permeability. 3. Na+ currents through the channel did not obey the independence principle. The outward patch current at large positive potential began to saturate with increasing concentrations of internal Na+, as if permeation required Na+ to bind to a site with an apparent dissociation constant around 180 mM. 4. In symmetrical NaCl solutions containing very low concentrations of divalent cations the current-voltage relation measured from excised patches 50 microseconds after switching the voltage showed mild outward rectification. By 1 ms the rectification was more pronounced. The rectification at 50 microseconds is attributed to voltage dependence of Na+ permeation. The additional rectification at later times is attributed to voltage dependence of the channel's probability of being open, depolarization favouring the open state. 5. In symmetrical Mg2+ solutions the cyclic GMP-induced patch currents were smaller and the outward rectification was more pronounced. 6. Addition of Mg2+ or Ca2+ to an internal Na+ solution blocked the cyclic GMP-induced Na+ current through the channels, as if by occupying a single binding site with an affinity in the 0.1-2 mM range. Block by Mg2+ was voltage dependent, suggesting that the binding site was within the channel's transmembrane electric field. Raising the Mg2+ concentration on the external surface of the patch increased the apparent dissociation constant of block by internal Mg2+, as expected if external and internal Mg2+ compete for the same binding site. 7. Block by internal Ca2+ had an opposite and weaker voltage dependence than block by internal Mg2+. 8. In symmetrical solutions containing both Na+ and Mg2+ the outward rectification was more pronounced than in solutions containing Na+ alone. In solutions thought to be close to physiological the outward patch current increased e-fold for a depolarization of 24-30 mV.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.在从孤立的外部片段中切出的由内而外的膜片中研究了通过through棒的3',5'-环鸟苷一磷酸(环状GMP)激活通道的电流对离子的依赖性。在换能棒上进行了钳位电压实验,以便可以将完整细胞中的通道与切下的贴片中的通道进行比较。 2.当在固定的外部NaCl浓度下改变贴片细胞质表面上的NaCl浓度时,循环GMP诱导的贴片电流的反向电位接近Na +平衡电位。拟合Goldman-Hodgkin-Katz方程表明,Na +和Cl-的表观渗透率至少为50。这证实了先前的报道,该通道的Na +渗透率远大于其Cl-渗透率。 3.通过通道的Na +电流不遵守独立性原则。随着内部Na +浓度的增加,大正电位下的向外贴片电流开始饱和,就好像渗透需要Na +结合到一个表观解离常数约为180 mM的位点一样。 4.在含有非常低浓度的二价阳离子的对称NaCl溶液中,切换电压后50微秒从切下的小片测得的电流-电压关系显示出适度的向外整流。到1 ms时,整流效果更加明显。 50微秒的整流归因于Na +渗透的电压依赖性。稍后的额外整流归因于通道打开概率的电压依赖性,去极化有利于打开状态。 5.在对称的Mg2 +溶液中,循环GMP诱导的贴片电流更小,向外整流更明显。 6.向内部Na +溶液中添加Mg2 +或Ca2 +可以阻断循环GMP诱导的Na +通过通道的电流,就好像占据了一个亲和力在0.1-2 mM范围内的单个结合位点一样。被Mg2 +阻断是电压依赖性的,表明结合位点在通道的跨膜电场内。如果外部和内部Mg2 +竞争相同的结合位点,则可以预期,提高贴片外表面上的Mg2 +浓度会增加内部Mg2 +阻断的表观解离常数。 7.内部Ca2 +的阻挡与内部Mg2 +的阻挡具有相反且较弱的电压依赖性。 8.在同时含有Na +和Mg2 +的对称溶液中,向外的整流作用比仅含有Na +的溶液更明显。在被认为与生理学接近的解决方案中,向外的贴片电流会增加e倍,从而使去极化的24-30 mV。(抽象截短为400字)

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