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锌离子对培养的大鼠神经元上单个N-甲基-D-天冬氨酸激活通道的抑制作用。

The inhibition of single N-methyl-D-aspartate-activated channels by zinc ions on cultured rat neurones.

作者信息

Legendre P, Westbrook G L

机构信息

Vollum Institute, Oregon Health Sciences University, Portland 97201.

出版信息

J Physiol. 1990 Oct;429:429-49. doi: 10.1113/jphysiol.1990.sp018266.

Abstract
  1. Single channels activated by N-methyl-D-aspartate (NMDA) were studied in outside-out patches of cultured hippocampal neurones in the presence of glycine and absence of magnesium. The effects of the transition metal ions zinc and cadmium on NMDA channels were tested by placing the membrane patch at the mouth of one of an array of large barrelled flow pipes. 2. Amplitude histograms revealed several conductance levels between 5 and 45 pS with the majority of NMDA-activated openings greater than 25 pS. Zinc (5-100 microM) and cadmium (30-100 microM) reduced the number of large conductance events in a voltage-independent manner. Zinc (30 microM) reduced the large conductance openings by approximately 70-80%. The small number of events under 20 pS precluded quantitative assessment of the effects of zinc and cadmium on these conductance levels. Zinc inhibition of the calculated macroscopic current due to NMDA-activated channels could be fitted with a single binding site isotherm with an IC50 of 12 microM. 3. Zinc and cadmium also reduced the mean open time of the two largest conductance events of 38 and 43 pS; this reduction was voltage independent. Open-time histograms were fitted with the sum of two exponentials. In the presence of 5 microM-NMDA at -60 mV, tau o2 = 10.49 ms and tau o1 = 1.47 ms; in 30 microM-zinc, tau o2 = 3.49 and tau o1 = 0.8 ms. The 'blocking' rate constant calculated at a membrane potential of +40 mV from the slope of 1/tau o2 vs. [zinc]o was 4 x 10(6) M-1 S-1. 4. Closed-time analysis revealed brief (tau c = 0.4-1.0 ms) zinc-insensitive gaps; longer closed-time intervals were not analysed since all patches contained more than one channel. Both burst duration and the number of bursts were reduced in the presence of zinc. 5. At holding potentials negative to -40 mV in magnesium-free solutions, zinc also induced high-frequency flickering of the open channel which included complete channel closures at 4 kHz filtering. No zinc-induced flickering was seen at positive membrane potentials. The flickering was dose dependent, becoming prominent at zinc concentrations above 30 microM. Cadmium did not induce flickering at concentrations up to 100 microM.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在甘氨酸存在且无镁的条件下,对培养的海马神经元外向型膜片上由N - 甲基 - D - 天冬氨酸(NMDA)激活的单通道进行了研究。通过将膜片置于一排大口径流管之一的管口处,测试了过渡金属离子锌和镉对NMDA通道的影响。2. 幅度直方图显示在5至45皮西门子之间有几个电导水平,大多数NMDA激活的开放大于25皮西门子。锌(5 - 100微摩尔)和镉(30 - 100微摩尔)以电压非依赖性方式减少了大电导事件的数量。锌(30微摩尔)使大电导开放减少了约70 - 80%。20皮西门子以下的少量事件妨碍了对锌和镉对这些电导水平影响的定量评估。锌对NMDA激活通道计算出的宏观电流的抑制作用可用一个单一结合位点等温线拟合,IC50为12微摩尔。3. 锌和镉还减少了38和43皮西门子这两个最大电导事件的平均开放时间;这种减少是电压非依赖性的。开放时间直方图用两个指数之和拟合。在 - 60毫伏下存在5微摩尔 - NMDA时,τo2 = 10.49毫秒,τo1 = 1.47毫秒;在30微摩尔 - 锌存在时,τo2 = 3.49毫秒,τo1 = 0.8毫秒。在 + 40毫伏膜电位下,根据1/τo2对[锌]o的斜率计算出的“阻断”速率常数为4×10⁶ M⁻¹ S⁻¹。4. 关闭时间分析显示存在短暂的(τc = 0.4 - 1.0毫秒)对锌不敏感的间隙;由于所有膜片都包含不止一个通道,所以未对更长的关闭时间间隔进行分析。在锌存在时,爆发持续时间和爆发次数都减少了。5. 在无镁溶液中,当保持电位负于 - 40毫伏时,锌还会诱导开放通道高频闪烁,其中包括在4千赫滤波时通道完全关闭。在正膜电位下未观察到锌诱导的闪烁。这种闪烁是剂量依赖性的,在锌浓度高于30微摩尔时变得明显。镉在浓度高达100微摩尔时不会诱导闪烁。(摘要截于400字)

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