Protti D A, Llano I
Arbeitsgruppe Zelluläre Neurobiologie, Max-Planck-Institut für biophysikalische Chemie, 37070 Göttingen, Germany.
J Neurosci. 1998 May 15;18(10):3715-24. doi: 10.1523/JNEUROSCI.18-10-03715.1998.
Combined electrophysiological and imaging techniques were used to study calcium currents (ICa) and their sites of origin at rod bipolar cells in rat retinal slices. We report here for the first time the successful whole-cell patch-clamp recording from presynaptic boutons that were compared with somatic recordings. TTX-resistant inward currents were elicited in response to depolarization. The kinetic and pharmacological properties of ICa were very similar for recordings obtained from the soma and the presynaptic terminals. ICa activated maximally between -30 and -20 mV was enhanced by Bay K 8644 and was blocked by isradipine and nifedipine. Peak amplitude and time to peak were -31.3 +/- 1.2 pA and 3.2 +/- 0.2 msec with somatic recordings (n = 54), whereas the corresponding values were -31.6 +/- 6.1 pA and 3.2 +/- 0.7 msec in recordings obtained directly from terminals (n = 6). ICa showed little inactivation during sustained depolarizations. No T-type ICa was observed with depolarizations from -90 mV. Concomitant with Ca2+ entry, depolarization induced the appearance of transient outward currents that resembled IPSCs and were blocked by GABA and glycine receptor antagonists, suggesting that they arise from activation of amacrine feedback synapses. Upon depolarization, intracellular Ca2+ ([Ca2+]i) rises were restricted to the presynaptic terminals with no somatic or axonal changes and were linearly dependent on pulse duration when using a low-affinity Ca2+ indicator. In cone bipolar cells, ICa inactivated markedly, and [Ca2+]i rises occurred in the axon, as well as in the presynaptic terminals.
联合使用电生理和成像技术研究大鼠视网膜切片中视杆双极细胞的钙电流(ICa)及其起源部位。我们首次在此报告成功从突触前终扣进行全细胞膜片钳记录,并与体细胞记录进行比较。去极化可诱发对河豚毒素(TTX)不敏感的内向电流。从体细胞和突触前终末获得的记录中,ICa的动力学和药理学特性非常相似。在-30至-20 mV之间最大激活的ICa被Bay K 8644增强,并被伊拉地平和平尼地平阻断。体细胞记录时(n = 54),峰值幅度和峰值时间分别为-31.3±1.2 pA和3.2±0.2毫秒,而直接从终末获得的记录中相应值为-31.6±6.1 pA和3.2±0.7毫秒(n = 6)。在持续去极化期间,ICa几乎没有失活。从-90 mV去极化未观察到T型ICa。伴随Ca2+内流,去极化诱导出现类似于抑制性突触后电流(IPSCs)的瞬时外向电流,并被GABA和甘氨酸受体拮抗剂阻断,这表明它们源于无长突细胞反馈突触的激活。去极化时,细胞内Ca2+([Ca2+]i)升高仅限于突触前终末,体细胞或轴突无变化,当使用低亲和力Ca2+指示剂时,其升高与脉冲持续时间呈线性相关。在视锥双极细胞中,ICa明显失活,[Ca2+]i升高发生在轴突以及突触前终末。