Atchison W D, Joshi U, Thornburg J E
J Pharmacol Exp Ther. 1986 Aug;238(2):618-24.
Measurements of uptake of 45Ca into rat forebrain synaptosomes depolarized with high K+ and EPP amplitudes at the rat neuromuscular junction were used to assess the effects of methylmercury (MeHg) on voltage-dependent Ca++ uptake and subsequent transmitter release at model central and peripheral synapses. The objectives were to: determine whether MeHg altered uptake of 45Ca into purified synaptosomes depolarized by high K+; compare its effects with those produced by HgCl2; ascertain whether the "fast" or "slow" components of Ca++ uptake were affected preferentially by MeHg; and determine whether a functional correlate to the effects on 45Ca uptake could be observed electrophysiologically at the mammalian neuromuscular junction. HgCl2 (10-500 microM) produced a concentration-dependent decrease of total depolarization-induced 45Ca uptake. Peak inhibition occurred at 200 microM Hg++ which suppressed nerve terminal Ca++ uptake to approximately 5% of Hg-free control values, a result similar to that obtained previously by others. Similarly, MeHg also suppressed total 45Ca uptake although the maximal inhibition produced (70% at 200 microM MeHg) was less than that produced by HgCl2. The effect of MeHg was apparent both in nonpreviously depolarized synaptosomes after a 1-sec depolarization ("fast uptake") and after 10-sec incubation in synaptosomes predepolarized with 41 mM K+ in Ca-free solutions before addition of MeHg and 45Ca ("slow uptake"). A significant decrease in the slow phase of 45Ca uptake occurred with 200 and 500 microM MeHg.(ABSTRACT TRUNCATED AT 250 WORDS)
通过测量用高钾使大鼠前脑突触体去极化时45Ca的摄取量以及大鼠神经肌肉接头处的终板电位(EPP)幅度,来评估甲基汞(MeHg)对模型中枢和外周突触处电压依赖性Ca++摄取及随后递质释放的影响。目的是:确定MeHg是否改变高钾使纯化突触体去极化时45Ca的摄取;将其作用与HgCl2产生的作用进行比较;确定Ca++摄取的“快速”或“慢速”成分是否优先受MeHg影响;以及确定在哺乳动物神经肌肉接头处能否通过电生理观察到与对45Ca摄取影响相关的功能变化。HgCl2(10 - 500微摩尔)使去极化诱导的总45Ca摄取呈浓度依赖性降低。在200微摩尔Hg++时出现最大抑制,将神经末梢Ca++摄取抑制至无汞对照值的约5%,这一结果与其他人先前得到的结果相似。同样,MeHg也抑制总45Ca摄取,尽管产生的最大抑制(200微摩尔MeHg时为70%)小于HgCl2产生的抑制。MeHg的作用在未预先去极化的突触体经1秒去极化后(“快速摄取”)以及在加入MeHg和45Ca之前用无钙溶液中41毫摩尔钾预去极化的突触体中孵育10秒后(“慢速摄取”)均很明显。200和500微摩尔MeHg使45Ca摄取的慢相显著降低。(摘要截短于250词)