Hartmann Jana, Scepek Susanne, Hafez Ismail, Lindau Manfred
Institut für Physiologie, Ludwig-Maximilians-Universität München, Pettenkoferstrasse 12, D-80336 München, Germany.
J Biol Chem. 2003 Nov 7;278(45):44929-34. doi: 10.1074/jbc.M306014200. Epub 2003 Jul 9.
Dynamics of degranulation was studied in horse eosinophils by patch clamp capacitance measurements. Degranulation was stimulated by intracellular application of calcium, and GTPgammaS or guanosine 5'-(beta,gamma-imido)triphosphate at different concentrations via the patch pipette. Degranulation was quantified by measuring the delay time between the beginning of intracellular perfusion and the first exocytotic event, determining the distribution of time intervals between fusion events and the capacitance step size distributions under the different conditions. The degranulation dynamics could be well reproduced using a computer model assuming three independent rate constants for granule-plasma membrane fusion, granule fusion with already exocytosed granules, and intracellular granule-granule fusion. The rate of granule-plasma membrane fusion is sensitive to both, the GTP analog and [Ca2+]i. The rate of granule-exocytosed granule fusion is sensitive to [Ca2+]i but insensitive to the GTP analogs, and the rate of granule-to-granule fusion is sensitive to the GTP analog but insensitive to [Ca2+]i. Granule fusions with the three different target compartments thus involve different regulatory mechanisms.
通过膜片钳电容测量研究了马嗜酸性粒细胞的脱颗粒动力学。通过膜片移液管向细胞内施加不同浓度的钙、GTPγS或鸟苷5'-(β,γ-亚氨基)三磷酸来刺激脱颗粒。通过测量细胞内灌注开始与首次胞吐事件之间的延迟时间、确定融合事件之间的时间间隔分布以及不同条件下的电容步长分布来对脱颗粒进行定量。使用一个计算机模型可以很好地再现脱颗粒动力学,该模型假设颗粒-质膜融合、颗粒与已胞吐颗粒的融合以及细胞内颗粒-颗粒融合有三个独立的速率常数。颗粒-质膜融合速率对GTP类似物和[Ca2+]i均敏感。颗粒-已胞吐颗粒融合速率对[Ca2+]i敏感,但对GTP类似物不敏感,而颗粒-颗粒融合速率对GTP类似物敏感,但对[Ca2+]i不敏感。因此,颗粒与三个不同靶区室的融合涉及不同的调节机制。