首页> 美国卫生研究院文献>The Journal of Physiology >The asymmetrical effects of some ionized n-octyl derivatives on the sodium current of the giant axon of Loligo forbesi.
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The asymmetrical effects of some ionized n-octyl derivatives on the sodium current of the giant axon of Loligo forbesi.

机译:一些电离的正辛基衍生物对福寿螺巨轴突钠电流的不对称作用。

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摘要

The effects of octyltrimethylammonium ions (OTMA+), octyl sulphate ions (OS-) and octanoic acid (OA) on the sodium current of the voltage-clamped squid giant axon have been investigated using intracellular and extracellular application of the test substances. OTMA+ applied externally at concentrations of 0.8-5.0 mM produces a small reversible increase in the peak inward sodium current in both intact and CsF-perfused axons. Intracellular application of OTMA+ at 0.8 mM to CsF-perfused axons causes a reversible 50% suppression of peak inward sodium current. The inhibition of peak inward current by internal OTMA+ arises largely from a shift of the steady-state activation parameter (m infinity) in the depolarizing direction along the voltage axis. There is little use dependence of the current suppression by OTMA+ OA applied either internally or externally is more effective at suppressing peak inward sodium current at pH 6.0 than at pH 7.4. At pH 6.0 external application of 5 mM-OA to perfused axons causes approximately 60% suppression. This is associated with a depolarizing shift of m infinity of about 13 mV and a hyperpolarizing shift of the steady-state inactivation (h infinity) curve of about 4 mV. The effects of internal and external OA are broadly similar except that the h infinity shift is not seen with internal application. OS- at concentrations above 2.0 mM produces complete irreversible loss of sodium current. At 2.0 mM, OS- produces 10% current suppression and a small depolarizing shift of the m infinity curve. Internal and external applications of OS- differ little except that external OS- causes a 25% increase in the time constant of activation (tau m). The possible origins of these effects are discussed. It is proposed that the shift of m infinity caused by internal OTMA+ is due to a diminution of the lipid dipole potential at the internal surface of the membrane caused by OTMA+ adsorption. This effect could also account for the m infinity shift caused by OA. The results showing that OA produces shifts of opposite sign in the voltage dependence of m infinity and h infinity are discussed with respect to their implications for models of sodium channel gating.
机译:使用细胞内和细胞外应用测试物质,研究了辛基三甲基铵离子(OTMA +),硫酸辛基离子(OS-)和辛酸(OA)对电压固定的鱿鱼巨轴突钠电流的影响。在完整和CsF灌注的轴突中,以0.8-5.0 mM的浓度外用OTMA +时,钠内向峰电流的可逆增加很小。在CsF灌注的轴突中以0.8 mM的OTMA +的胞内应用引起峰值内向钠电流可逆地抑制50%。内部OTMA +对峰值内向电流的抑制主要是由于稳态激活参数(m无穷大)沿去极化方向沿着电压轴的移动。通过内部或外部施加的OTMA + OA抑制电流几乎没有使用依赖性,在pH 6.0时比在pH 7.4时抑制钠内向峰值电流更有效。在pH 6.0时,将5 mM-OA外部应用到灌注的轴突会引起大约60%的抑制。这与约13 mV的m无穷大的去极化偏移和约4 mV的稳态失活(h无穷大)曲线的超极化偏移相关。内部和外部OA的效果大致相似,但内部应用看不到h无穷大移位。浓度高于2.0 mM的OS-会产生不可逆的钠电流完全损失。在2.0 mM时,OS-产生10%的电流抑制和m无穷大曲线的小的去极化偏移。 OS-的内部和外部应用程序几乎没有区别,除了外部OS-导致激活时间常数(tau m)增长了25%。讨论了这些影响的可能来源。有人提出,由内部OTMA +引起的m无穷大位移是由于OTMA +吸附引起的膜内表面脂质偶极势的减小。该效应也可以解释由OA引起的m无限移。结果表明,OA对m无限和h无限的电压依赖性产生相反的符号偏移,并讨论了它们对钠通道门控模型的影响。

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