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小龙虾分隔轴突电突触传递的pH依赖性

pH dependence of transmission at electrotonic synapses of the crayfish septate axon.

作者信息

Campos de Carvalho A, Spray D C, Bennett M V

出版信息

Brain Res. 1984 Nov 12;321(2):279-86. doi: 10.1016/0006-8993(84)90180-x.

Abstract

Gap junctions between segments of the crayfish septate axon mediate electrotonic transmission of impulses propagating along the length of the nerve cord. We simultaneously measured intracellular pH (pHi) and gap junctional conductance (gj) while axons were exposed to saline equilibrated with CO2, weak acids, and the weak base ammonium chloride. Normal pHi is about 7.1. When pHi is elevated, gj is unaffected. When pHi is reduced, gj declines with an apparent pK of about 6.7 and a Hill coefficient of about 2.7. We also measured effects of pHi on non-junctional conductance (gnj) and on the coupling coefficient, k. Over the pHi range 6.2-8, gnj increases approximately linearly with pHi. Since k is a function of gj and gnj, it reached a maximum at about pHi 7.1, decreasing at higher and lower pHi. The pHi dependence of gj in crayfish septate axon is less steep and has a lower apparent pK than the gj-pHi relation in two vertebrate embryos previously examined. This finding illustrates a difference in gating among analogous and possibly homologous membrane channels.

摘要

小龙虾分隔轴突各节段之间的缝隙连接介导了沿神经索长度方向传播的冲动的电紧张性传递。我们在轴突暴露于用二氧化碳、弱酸和弱碱氯化铵平衡的盐溶液时,同时测量了细胞内pH值(pHi)和缝隙连接电导(gj)。正常的pHi约为7.1。当pHi升高时,gj不受影响。当pHi降低时,gj下降,其表观pK约为6.7,希尔系数约为2.7。我们还测量了pHi对非连接电导(gnj)和耦合系数k的影响。在pHi范围6.2 - 8内,gnj随pHi大致呈线性增加。由于k是gj和gnj的函数,它在pHi约为7.1时达到最大值,在更高和更低的pHi时降低。小龙虾分隔轴突中gj对pHi的依赖性不如之前研究的两种脊椎动物胚胎中gj - pHi关系那样陡峭,且表观pK更低。这一发现说明了类似且可能同源的膜通道在门控方面的差异。

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