首页> 美国卫生研究院文献>The Journal of General Physiology >Kinetic Analysis of Block of Open Sodium Channels by a Peptide Containing the Isoleucine Phenylalanine and Methionine (IFM) Motif from the Inactivation Gate
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Kinetic Analysis of Block of Open Sodium Channels by a Peptide Containing the Isoleucine Phenylalanine and Methionine (IFM) Motif from the Inactivation Gate

机译:从灭活门包含异亮氨酸苯丙氨酸和蛋氨酸(IFM)母体的肽对开放式钠通道阻滞的动力学分析

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摘要

We analyzed the kinetics of interaction between the peptide KIFMK, containing the isoleucine, phen-ylalanine, and methionine (IFM) motif from the inactivation gate, and the brain type IIA sodium channels with a mutation that disrupts inactivation (F1489Q). The on-rate constant was concentration dependent, consistent with a bimolecular reaction with open sodium channels, while the off rates were unaffected by changes in the KIFMK concentration. The apparent K d was ∼33 μM at 0 mV. The on rates were voltage dependent, supporting the hypothesis that one or both of the charges in KIFMK enter the membrane electric field. The voltage dependence of block was consistent with the equivalent movement of ∼0.6 electronic charges across the membrane. In contrast, the off rates were voltage independent. The results are consistent with the hypothesis that the KIFMK peptide enters the pore of the open sodium channel from the intracellular side and blocks it.
机译:我们分析了来自灭活门的包含异亮氨酸,苯丙氨酸和蛋氨酸(IFM)模体的肽KIFMK与具有破坏灭活作用的突变的大脑IIA型钠通道之间的相互作用动力学(F1489Q)。接通速率常数是浓度依赖性的,与具有开放钠通道的双分子反应一致,而断开速率不受KIFMK浓度变化的影响。在0 mV时,表观K d为〜33μM。接通速率与电压有关,从而支持了KIFMK中的一个或两个电荷进入膜电场的假设。块的电压依赖性与整个膜上约0.6个电子电荷的等效运动一致。相反,截止速率与电压无关。结果与以下假设一致:KIFMK肽从细胞内侧进入开放钠通道的孔并对其进行封闭。

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