首页> 美国卫生研究院文献>The Journal of Physiology >Exocytosis elicited by action potentials and voltage-clamp calcium currents in individual mouse pancreatic B-cells.
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Exocytosis elicited by action potentials and voltage-clamp calcium currents in individual mouse pancreatic B-cells.

机译:单个小鼠胰腺B细胞中的动作电位和电压钳制钙电流引起胞吐作用。

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摘要

1. Measurements of membrane capacitance, as an indicator of exocytosis, and intracellular Ca2+ concentration ([Ca2+]i) were used to determine the Ca2+ dependence of secretion in single pancreatic B-cells. 2. Exocytosis was dependent on a rise in [Ca2+]i and could be evoked by activation of voltage-dependent Ca2+ currents. The threshold for depolarization-induced release was 0.5 microM [Ca2+]i. Once the [Ca2+]i threshold was exceeded, exocytosis was rapidly (< 50 ms) initiated. When individual pulses were applied, exocytosis stopped immediately upon repolarization and the Ca2+ channels closed, although [Ca2+]i remained elevated for several seconds. 3. During repetitive stimulation (1 Hz), when [Ca2+]i attained micromolar levels, exocytosis also took place during the interpulse intervals albeit at a slower rate than during the depolarizations. 4. Exocytosis could be initiated by simulated action potentials. Whereas a single action potential only produced a small capacitance increase, and in some cells even failed to stimulate release, larger and more consistent responses were obtained with > or = four action potentials. 5. Comparison of the rates of exocytosis measured in response to depolarization, mobilization of Ca2+ from intracellular stores or infusion of Ca2+ through the patch pipette suggests that [Ca2+]i at the secretory sites attains a concentration of several micromolar. This is much higher than the average [Ca2+]i detected by microfluorimetry suggesting the existence of steep spatial gradients of [Ca2+]i within the B-cell. 6. Inclusion of inhibitors of Ca2+/calmodulin-dependent protein kinase II in the intracellular solution reduced the depolarization-induced exocytotic responses suggesting this enzyme may be involved in the coupling between elevation of [Ca2+]i to stimulation of the secretory machinery. 7. The size of the unitary exocytotic event was 2 fF, corresponding to a secretory granule diameter of 250 nm. 8. Over short periods, exocytosis may be extremely fast (1 pF/s or 500 granules/s), which is much higher than the rate of endocytosis (18 fF/s or 9 granules/s). Since the latter is in better agreement with the maximum rate of insulin secretion from islets (approximately 2 granules/s), we suggest that membrane retrieval may set an upper limit on the rate of exocytosis during extended periods of secretion.
机译:1.膜电容的测量(作为胞吐作用的指标)和细胞内Ca2 +浓度([Ca2 +] i)用于确定单个胰腺B细胞分泌的Ca2 +依赖性。 2.胞吐作用取决于[Ca 2+] i的升高,并且可以通过激活电压依赖性Ca 2+电流来引起。去极化诱导释放的阈值为0.5 microM [Ca2 +] i。一旦超过[Ca2 +] i阈值,胞吐作用就会迅速(<50 ms)开始。当施加单个脉冲时,尽管[Ca2 +] i保持升高数秒钟,但胞外复胞在复极后立即停止,Ca2 +通道关闭。 3.在重复刺激(1 Hz)期间,当[Ca2 +] i达到微摩尔水平时,在脉冲间期也发生胞吐作用,尽管其速度比去极化时慢。 4.胞吐作用可以通过模拟动作电位来引发。尽管单个动作电位只会产生很小的电容增加,甚至在某些细胞中甚至无法刺激释放,但在大于或等于四个动作电位的情况下,可以获得更大,更一致的响应。 5.比较因去极化,细胞内储存的Ca2 +动员或通过补片吸管注入Ca2 +而测得的胞吐速率的比较表明,分泌部位的[Ca2 +] i浓度为几微摩尔。这比通过微荧光法检测到的平均[Ca2 +] i高得多,这表明B细胞内存在[Ca2 +] i陡峭的空间梯度。 6.在细胞内溶液中加入Ca2 + /钙调蛋白依赖性蛋白激酶II抑制剂可减少去极化诱导的胞吐反应,表明该酶可能与[Ca2 +] i升高与刺激分泌机制之间的偶联有关。 7.单个胞吐事件的大小为2 fF,对应于250 nm的分泌颗粒直径。 8.在短期内,胞吐作用可能会非常快(1 pF / s或500颗粒/ s),远高于内吞作用的速率(18 fF / s或9颗粒/ s)。由于后者与来自胰岛的最大胰岛素分泌速率(约2粒/ s)更好地吻合,因此我们建议在较长的分泌时间内,膜取回可能对胞吐速率设置上限。

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