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蜗牛神经元膜中的内向钙电流及相关电荷移动

Calcium inward current and related charge movements in the membrane of snail neurones.

作者信息

Kostyuk P G, Krishtal O A, Pidoplichko V I

出版信息

J Physiol. 1981 Jan;310:403-21. doi: 10.1113/jphysiol.1981.sp013557.

Abstract
  1. Isolated and intracellularly perfused neurones from the snail Helix pomatia have been investigated under voltage-clamp conditions. Calcium inward current and asymmetric displacement current were examined. 2. Two components of the asymmetric displacement current have been distinguished. One of them was irreversibly blocked by intracellular fluoride together with the calcium inward current. Another component (about 20%) was not affected. The relation of the fluoride-sensitive asymmetric displacement current to the activity of calcium channels was investigated. 3. The amounts of charge displaced by the on- and off-responses of the asymmetric current were similar. The maximum charge displacement was between 1500 and 2000 electron charges/micrometers 2. 4. The normalized steady-state voltage distribution curve of the displaced charge coincided with the square root of the normalized calcium conductance. The slope was 4 mV per e-fold change for the calcium conductance and 8 mV for te charge distribution. Thus, the effective valencies were close to 6 (for the calcium conductance) and 3 (for the charge distribution), suggesting two gating particles per calcium channel. 5. The on-process of the calcium inward current fitted m2 kinetics. The time constant tau m corresponded to the time constant tau ason of the asymmetric current in a wide range of tested voltages. This correspondence failed only at small depolarizations where tau m exceeded tau ason. 6. The 'off' time constants of the calcium inward current (tau Caoff) and the asymmetric current (tau asoff) examined at -40 mV did not depend significantly on the test pulse height. The ratio tau asoff/tau Caoff varied between 1.7 and 2.5. 7. Calcium inward-current relaxation kinetics were measured for small shifts of membrane potential (Vtest = -2 mV) applied at the peaks of the current. The time constants were smaller than tau m and depended only weakly on voltage. 8. It is concluded that the fluoride-sensitive asymmetric displacement current is related to the activation of calcium channels.
摘要
  1. 对来自罗马蜗牛的分离且经细胞内灌注的神经元进行了电压钳条件下的研究。检测了钙内向电流和不对称位移电流。2. 已区分出不对称位移电流的两个成分。其中一个成分与钙内向电流一起被细胞内氟化物不可逆地阻断。另一个成分(约20%)不受影响。研究了氟化物敏感的不对称位移电流与钙通道活性的关系。3. 不对称电流的开启和关闭响应所位移的电荷量相似。最大电荷位移在1500至2000电子电荷/微米²之间。4. 位移电荷的归一化稳态电压分布曲线与归一化钙电导的平方根相符。钙电导每增加e倍变化时斜率为4 mV,电荷分布为8 mV。因此,有效价数接近6(对于钙电导)和3(对于电荷分布),表明每个钙通道有两个门控粒子。5. 钙内向电流的开启过程符合m2动力学。在广泛的测试电压范围内,时间常数τm与不对称电流的时间常数τason相对应。这种对应关系仅在小去极化时失效,此时τm超过τason。6. 在 -40 mV下检测的钙内向电流的“关闭”时间常数(τCaoff)和不对称电流的“关闭”时间常数(τasoff)对测试脉冲幅度的依赖性不显著。τasoff/τCaoff的比值在1.7至2.5之间变化。7. 测量了在电流峰值处施加的小膜电位变化(Vtest = -2 mV)时钙内向电流的松弛动力学。时间常数小于τm,且仅对电压有微弱依赖性。8. 得出结论:氟化物敏感的不对称位移电流与钙通道的激活有关。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04dd/1274748/576a48796207/jphysiol00709-0414-a.jpg

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