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通过膜片钳电容和Fura-2测量研究人中性粒细胞中的钙信号及其与胞吐作用的关系。

The calcium signal in human neutrophils and its relation to exocytosis investigated by patch-clamp capacitance and Fura-2 measurements.

作者信息

Nüsse O, Lindau M

机构信息

Biophysics Group, Freie Universität Berlin, Germany.

出版信息

Cell Calcium. 1993 Apr;14(4):255-69. doi: 10.1016/0143-4160(93)90047-a.

Abstract

Intracellular calcium ([Ca2+]i) and exocytosis of human neutrophils were investigated with patch-clamp capacitance and Fura-2 fluorescence measurements. Intracellular application of GTP gamma S induces a calcium transient and exocytosis. The onset of degranulation occurs at the time where the maximal [Ca2+]i is reached. Despite the close correlation in time, buffering [Ca2+]i at the resting level or at approximately 2 microM leaves the extent and the time course of degranulation unchanged. The decay of the calcium transient is due to diffusional equilibration between the cytosol and the pipette volume. GTP gamma S activates no cellular mechanisms for Ca2+ reuptake or extrusion. The endogenous calcium buffer capacity can be estimated to be as low as that of approximately 90 microM Fura-2. Stimulation with fMLP also induces degranulation and a calcium transient. The decay of fMLP-induced calcium transients is much faster than that of GTP gamma S-induced transients and is independent of diffusion indicating that fMLP also induces rapid reuptake or extrusion of Ca2+. Degranulation but not the calcium transient requires the presence of intracellular GTP. Different signalling pathways appear to be involved in GTP gamma S- and fMLP-stimulated calcium signals. The intracellular calcium release is not an essential signal to initiate exocytosis in neutrophils.

摘要

采用膜片钳电容和Fura-2荧光测量技术研究了人中性粒细胞的细胞内钙浓度([Ca2+]i)和胞吐作用。细胞内应用GTPγS可诱导钙瞬变和胞吐作用。脱颗粒的起始发生在达到最大[Ca2+]i的时刻。尽管在时间上密切相关,但将[Ca2+]i缓冲至静息水平或约2 microM时,脱颗粒的程度和时间进程不变。钙瞬变的衰减是由于细胞质和移液管体积之间的扩散平衡。GTPγS未激活任何细胞钙再摄取或外排机制。内源性钙缓冲能力估计低至约90 microM Fura-2的水平。用fMLP刺激也可诱导脱颗粒和钙瞬变。fMLP诱导的钙瞬变的衰减比GTPγS诱导的瞬变更快,且与扩散无关,表明fMLP也诱导Ca2+的快速再摄取或外排。脱颗粒而非钙瞬变需要细胞内GTP的存在。不同的信号通路似乎参与了GTPγS和fMLP刺激的钙信号。细胞内钙释放不是启动中性粒细胞胞吐作用的必要信号。

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