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内源性和外源性多胺对大鼠GluR6谷氨酸受体通道的通透与阻断作用

Permeation and block of rat GluR6 glutamate receptor channels by internal and external polyamines.

作者信息

Bähring R, Bowie D, Benveniste M, Mayer M L

机构信息

Laboratory of Cellular and Molecular Neurophysiology, National Institute of Child Health and Human Development, NIH, Bethesda, MD 20892, USA.

出版信息

J Physiol. 1997 Aug 1;502 ( Pt 3)(Pt 3):575-89. doi: 10.1111/j.1469-7793.1997.575bj.x.

Abstract
  1. Polyamine block of rat GluR6(Q) glutamate receptor channels was studied in outside-out patches from transiently transfected HEK 293 cells. With symmetrical 150 mM Na+ and 30 microM internal spermine there was biphasic voltage dependence with 95% block at +40 mV but only 20% block at +140 mV. Dose-inhibition analysis for external spermine also revealed biphasic block; the Kd at +40 mV (54 microM) was lower than at +80 (167 microM) and -80 mV (78 microM). 2. For internal polyamines relief from block was most pronounced for spermine, weaker for N-(4-hydroxyphenylpropanoyl)-spermine (PPS), and virtually absent for philanthotoxin 343 (PhTX 343), suggesting that permeation of polyamines varies with cross-sectional width (spermine, 0.44 nm; PPS, 0.70 nm; PhTX 343, 0.75 nm). 3. With putrescine, spermidine, or spermine as sole external cations, inward currents at -120 mV confirmed permeation of polyamines. For bi-ionic conditions with 90 mM polyamine and 150 mM Na+i, reversal potentials were -12.4 mV for putrescine (permeability ratio relative to Na+, PPut/PNa = 0.42) and -32.7 mV for spermidine (PSpd/PNa = 0.07). Currents carried by spermine were too small to analyse accurately in the majority of patches. 4. Increasing [Na+]i from 44 to 330 mM had no effect on the potential for 50% block (V1/2) by 30 microM internal spermine; however, relief from block at positive membrane potentials increased with [Na+]i. In contrast, raising [Na+]o from 44 to 330 mM resulted in a depolarizing shift in V1/2, indicating a strong interaction between internal polyamines and external permeant ions. 5. The Woodhull infinite barrier model of ion channel block adequately described the action of spermine at membrane potentials insufficient to produce relief from block. For 30 microM internal spermine such analysis gave Kd(O) = 2.5 microM, z theta = 1.97; block by 30 microM external spermine was weaker and less voltage dependent (Kd(O) = 37.8 microM and z delta = 0.55); delta and theta are electrical distances measured from the outside and inside, respectively. 6. Fits of the Woodhull equation for a permeable blocker adequately described both onset and relief from block by spermine over a wide range of membrane potentials. However, the rate constants and z delta values estimated for block by internal spermine predicted much stronger external block than was measured experimentally, and vice versa. 7. An Eyring rate theory model with two energy wells and three barriers explained qualitatively many characteristic features of the action of polyamines on GluRs, including biphasic I-V relationships, weaker block by external than internal spermine and low permeability.
摘要
  1. 在瞬时转染的HEK 293细胞的外向膜片中研究了大鼠GluR6(Q)谷氨酸受体通道的多胺阻断作用。在150 mM Na⁺对称且内部有30 μM精胺的情况下,存在双相电压依赖性,在+40 mV时阻断率为95%,但在+140 mV时仅为20%。外部精胺的剂量抑制分析也显示出双相阻断;+40 mV时的Kd(54 μM)低于+80 mV(167 μM)和 -80 mV(78 μM)时的Kd。2. 对于内部多胺,精胺的阻断解除最为明显,N-(4-羟基苯丙酰基)-精胺(PPS)较弱,而毒蜘蛛毒素343(PhTX 343)几乎没有阻断解除,这表明多胺的通透随横截面宽度而变化(精胺,0.44 nm;PPS,0.70 nm;PhTX 343,0.75 nm)。3. 以腐胺、亚精胺或精胺作为唯一的外部阳离子时,-120 mV处的内向电流证实了多胺的通透。在90 mM多胺和150 mM Na⁺i的双离子条件下,腐胺的反转电位为 -12.4 mV(相对于Na⁺的渗透率比,PPut/PNa = 0.42),亚精胺的反转电位为 -32.7 mV(PSpd/PNa = 0.07)。在大多数膜片中,精胺携带的电流太小,无法准确分析。4. 将[Na⁺]i从44 mM增加到330 mM对30 μM内部精胺的50%阻断电位(V1/2)没有影响;然而,在正膜电位下的阻断解除随[Na⁺]i增加。相反,将[Na⁺]o从44 mM增加到330 mM导致V1/2发生去极化偏移,表明内部多胺与外部通透离子之间存在强烈相互作用。5. 离子通道阻断的伍德胡尔无限势垒模型充分描述了在不足以产生阻断解除的膜电位下精胺的作用。对于30 μM内部精胺,这种分析得出Kd(O) = 2.5 μM,z theta = 1.97;30 μM外部精胺的阻断较弱且电压依赖性较小(Kd(O) = 37.8 μM和z delta = 0.55);delta和theta分别是从外部和内部测量的电距离。6. 对于可通透阻断剂的伍德胡尔方程拟合在很宽的膜电位范围内充分描述了精胺的阻断起始和解除。然而,内部精胺阻断所估计的速率常数和z delta值预测的外部阻断比实验测量的要强得多,反之亦然。7. 具有两个能量阱和三个势垒的艾林速率理论模型定性地解释了多胺对谷氨酸受体作用的许多特征,包括双相电流-电压关系、外部精胺的阻断比内部精胺弱以及低渗透率。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e617/1159530/505c4931495d/jphysiol00274-0109-a.jpg

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