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二价阳离子对单个小鼠胰腺β细胞胞吐作用和胞吞作用的影响。

Effects of divalent cations on exocytosis and endocytosis from single mouse pancreatic beta-cells.

作者信息

Proks P, Ashcroft F M

机构信息

University Laboratory of Physiology, Oxford, UK.

出版信息

J Physiol. 1995 Sep 1;487 ( Pt 2)(Pt 2):465-77. doi: 10.1113/jphysiol.1995.sp020893.

Abstract
  1. The effects of the divalent cations Ca2+, Ba2+ and Sr2+ on exocytosis and endocytosis from single isolated mouse pancreatic beta-cells were investigated by monitoring changes in cell capacitance. 2. The immediate increase in capacitance elicited by a single depolarization from -70 to +20 mV was dependent on the divalent cation species, with Ca2+ (8.2 +/- 1.1 fF pC-1) > Ba2+ (1.0 +/- 0.2 fF pC-1) > Sr2+ (0.7 +/- 0.2 fF pC-1) in perforated-patch recordings. 3. In Ba2+ solutions alone there was subsequently an additional slow increase in capacitance (to 4.3 +/- 1.1 fF pC-1). This second phase of exocytosis was unaffected by preincubation with colcemid (20 microM, 45 min) or cytochalasin D (10 microM, 15 min), suggesting that interaction of secretory granules with microtubules or microfilaments is not involved. 4. An increase in cell capacitance was elicited by depolarization in Ba2+ solutions when intracellular Ca2+ was buffered with 10 mM EGTA. Infusion of the beta-cell with Ba2+ also stimulated exocytosis although the rate was much slower (1.1 +/- 0.2 fF s-1; 8 microM free Ba2+) than for Ca2+ (39 +/- 5 fF s-1; 2 microM free Ca2+). These data indicate that Ba2+ does not evoke secretion by promoting Ca2+ release from internal stores. 5. The lower efficacy of Ba2+ in supporting exocytosis may be related to the fact that this cation does not activate calmodulin-dependent processes and the slow second phase of secretion may result from this ion being removed only slowly from the cytoplasm. 6. Endocytosis was faster in Sr2+ than in Ca2+ or Ba2+ solution, and the speed increased when the external concentration of all three divalent cation species was raised. The ability of Ba2+ to support endocytosis suggests calmodulin-dependent processes are not involved. These data suggest membrane retrieval is regulated differently from exocytosis in beta-cells.
摘要
  1. 通过监测细胞电容变化,研究了二价阳离子Ca2+、Ba2+和Sr2+对单个分离的小鼠胰腺β细胞胞吐作用和胞吞作用的影响。2. 从-70 mV到+20 mV的单次去极化引起的电容立即增加取决于二价阳离子种类,在穿孔膜片钳记录中,Ca2+(8.2±1.1 fF pC-1)>Ba2+(1.0±0.2 fF pC-1)>Sr2+(0.7±0.2 fF pC-1)。3. 仅在Ba2+溶液中,随后电容会有额外的缓慢增加(至4.3±1.1 fF pC-1)。胞吐作用的第二阶段不受秋水仙碱(20 μM,45分钟)或细胞松弛素D(10 μM,15分钟)预孵育的影响,这表明分泌颗粒与微管或微丝的相互作用未参与其中。4. 当用10 mM EGTA缓冲细胞内Ca2+时,在Ba2+溶液中去极化会引起细胞电容增加。向β细胞注入Ba2+也会刺激胞吐作用,尽管其速率比Ca2+(39±5 fF s-1;2 μM游离Ca2+)慢得多(1.1±0.2 fF s-1;8 μM游离Ba2+)。这些数据表明Ba2+不会通过促进内部储存的Ca2+释放来引发分泌。5. Ba2+支持胞吐作用的效率较低可能与该阳离子不激活钙调蛋白依赖性过程这一事实有关,分泌的缓慢第二阶段可能是由于该离子仅缓慢地从细胞质中去除。6. Sr2+溶液中的胞吞作用比Ca2+或Ba2+溶液中的更快,并且当所有三种二价阳离子的外部浓度升高时,速度会增加。Ba2+支持胞吞作用的能力表明钙调蛋白依赖性过程未参与其中。这些数据表明β细胞中膜回收的调节与胞吐作用不同。

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