Fink L A, Connor J A, Kaczmarek L K
Department of Pharmacology, Yale University School of Medicine, New Haven, Connecticut 06510.
J Neurosci. 1988 Jul;8(7):2544-55. doi: 10.1523/JNEUROSCI.08-07-02544.1988.
Stimulation of the bag cell neurons of Aplysia triggers a long-lasting afterdischarge in these cells. In vivo, such a discharge causes the onset of a sequence of reproductive behaviors. We have found that treatments that trigger discharges in vitro stimulate the hydrolysis of phosphoinositides in the bag cell neurons, as measured by increased incorporation of 3H-inositol into fractions containing membrane lipids and water-soluble inositol phosphates. The electrophysiological effects of inositol trisphosphate, one of the products of phosphoinositide turnover that has been shown to mobilize intracellular calcium in non-neuronal cells, were investigated using isolated bag cell neurons in cell culture. Microinjection of inositol trisphosphate into cultured bag cell neurons caused a transient hyperpolarization of the membrane (approximately 35 sec), together with an increase in conductance. This effect of inositol trisphosphate was abolished by 50 mM tetraethylammonium ions. Inositol trisphosphate also reduced the amplitude of action potentials. Injection of calcium ions directly into bag cell neurons mimicked these responses seen after inositol trisphosphate injection. Using the cell-attached patch-clamp technique in conjunction with inositol trisphosphate microinjection, we observed that inositol trisphosphate evoked increases in the activity of a channel carrying outward current at the resting potential and more positive potentials. The estimated slope conductance of the channel modulated by inositol trisphosphate was approximately 40 pS, and its reversal potential was close to that predicted for potassium ions. The increased opening of this channel in response to inositol trisphosphate injection appeared to result from a transient shift of its voltage-dependence to more negative potentials. In a few cases, inositol trisphosphate injection also elicited an increase in the activity of a channel passing inward current at rest. Direct measurements of changes in intracellular calcium in response to inositol trisphosphate were made using digital imaging of isolated neurons loaded with the fluorescent calcium indicator fura-2. These revealed that injection of inositol trisphosphate significantly elevated intracellular calcium levels, and that this inositol trisphosphate-induced rise in cytosolic calcium was not affected by removal of extracellular calcium. In contrast to the effects of trains of action potentials in calcium-containing media, which produced increases in calcium primarily in neurites, the inositol trisphosphate-induced elevation of calcium appeared more localized to the somata of these neurons.(ABSTRACT TRUNCATED AT 400 WORDS)
刺激海兔的袋状细胞神经元会引发这些细胞的持久放电后效应。在体内,这种放电会引发一系列生殖行为。我们发现,在体外引发放电的处理会刺激袋状细胞神经元中磷酸肌醇的水解,这可通过增加3H-肌醇掺入含膜脂和水溶性肌醇磷酸的组分中来衡量。肌醇三磷酸是磷酸肌醇代谢的产物之一,已被证明可在非神经元细胞中动员细胞内钙,我们使用细胞培养中的分离袋状细胞神经元研究了其电生理效应。将肌醇三磷酸显微注射到培养的袋状细胞神经元中会导致膜的短暂超极化(约35秒),同时电导增加。50 mM四乙铵离子可消除肌醇三磷酸的这种效应。肌醇三磷酸还会降低动作电位的幅度。将钙离子直接注射到袋状细胞神经元中可模拟肌醇三磷酸注射后观察到的这些反应。使用细胞贴附式膜片钳技术结合肌醇三磷酸显微注射,我们观察到肌醇三磷酸在静息电位和更正电位下会引起携带外向电流的通道活性增加。由肌醇三磷酸调节的通道的估计斜率电导约为40 pS,其反转电位接近钾离子预测值。响应肌醇三磷酸注射,该通道开放增加似乎是由于其电压依赖性短暂向更负电位偏移所致。在少数情况下,肌醇三磷酸注射还会引起静息时通过内向电流的通道活性增加。使用加载有荧光钙指示剂fura-2的分离神经元的数字成像直接测量了响应肌醇三磷酸时细胞内钙的变化。这些结果表明,注射肌醇三磷酸会显著提高细胞内钙水平,并且这种由肌醇三磷酸诱导的胞质钙升高不受细胞外钙去除的影响。与在含钙培养基中一系列动作电位产生的效应相反,动作电位主要使神经突中的钙增加,而肌醇三磷酸诱导的钙升高似乎更局限于这些神经元的胞体。(摘要截短至400字)