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胞质钙、钙通量与肺泡巨噬细胞超氧阴离子生成的调节

Cytosolic calcium, calcium fluxes, and regulation of alveolar macrophage superoxide anion production.

作者信息

Stickle D F, Daniele R P, Holian A

出版信息

J Cell Physiol. 1984 Dec;121(3):458-66. doi: 10.1002/jcp.1041210303.

Abstract

The recently available compound quin-2, which acts as a high affinity fluorescent indicator for calcium in the cytosol, was used to examine the role of calcium mobilization in the alveolar macrophage during the stimulation of 0-2 production by the tripeptide N-formyl norleucyl leucyl phenylalanine (FNLLP). After preloading with quin-2, the production of 0-2 was measured in conjunction with the transfer of 45Ca+2 and changes in quin-2 fluorescence upon stimulation with FNLLP. When cells were maintained in low (10 microM) extracellular calcium medium the presence of 1.5 mM quin-2 in the cytosolic space partially inhibited the rate of 0-2 production upon stimulation by FNLLP. Addition of 1 mM Ca+2 to the medium prior to stimulation rapidly restored the cell's capability to produce 0-2 upon stimulation at rates equal to control and extended the duration of stimulated 0-2 production as well. Quin-2 fluorescence measurements indicated an increase in cytosolic Ca+2 upon stimulation with FNLLP. This increase was lowest under conditions in which 0-2 production was inhibited. The addition of 1 mM Ca+2 to the medium caused by itself a rapid but transient increase in cytosolic Ca+2 as measured with quin-2 without stimulating 0-2 production. This intracellularly redistributed calcium was determined to be the source of the greater increase in cytosolic calcium during stimulation in the presence of high extracellular calcium. Measurements of 45Ca+2 transfer demonstrated a buffering of cytosolic Ca+2 changes by quin-2, which in low calcium medium could deplete calcium stores. It is suggested that this effect, prior to stimulation, was responsible for the mitigated 0-2 response for those cells maintained in low calcium medium, wherein calcium stores could not be replenished. These results suggested that the cell's mechanism for regulating cytosolic and bound calcium concentrations may also play an integral role in its normal mechanism for stimulated 0-2 production. They further support the postulate that the commonly observed rise in the concentration of calcium in the cytosol upon formyl peptide stimulation is a concomitant but nonregulatory event only.

摘要

最近可用的化合物喹啉-2可作为胞质溶胶中钙的高亲和力荧光指示剂,用于研究在三肽N-甲酰基-去甲亮氨酰-亮氨酰-苯丙氨酸(FNLLP)刺激肺泡巨噬细胞产生超氧阴离子(O₂⁻)过程中钙动员的作用。在用喹啉-2预加载后,结合⁴⁵Ca²⁺的转运以及用FNLLP刺激后喹啉-2荧光的变化来测量O₂⁻的产生。当细胞维持在低(10微摩尔)细胞外钙培养基中时,胞质溶胶中存在1.5毫摩尔喹啉-2会部分抑制FNLLP刺激后O₂⁻的产生速率。在刺激前向培养基中添加1毫摩尔Ca²⁺可迅速恢复细胞在刺激时产生O₂⁻的能力,使其速率与对照相等,并延长刺激后O₂⁻产生的持续时间。喹啉-2荧光测量表明,用FNLLP刺激后胞质溶胶中Ca²⁺增加。在O₂⁻产生受到抑制的条件下,这种增加最低。向培养基中添加1毫摩尔Ca²⁺本身会导致用喹啉-2测量的胞质溶胶中Ca²⁺迅速但短暂增加,而不刺激O₂⁻产生。这种细胞内重新分布的钙被确定为在高细胞外钙存在下刺激期间胞质溶胶中钙增加幅度更大的来源。⁴⁵Ca²⁺转运的测量表明喹啉-2对胞质溶胶中Ca²⁺变化有缓冲作用,在低钙培养基中它会耗尽钙储存。有人认为,在刺激之前,这种效应是导致那些维持在低钙培养基中的细胞O₂⁻反应减弱的原因,因为在低钙培养基中钙储存无法补充。这些结果表明,细胞调节胞质溶胶和结合钙浓度的机制可能在其刺激后产生O₂⁻的正常机制中也起着不可或缺的作用。它们进一步支持了这样一种假设,即甲酰肽刺激后胞质溶胶中钙浓度普遍升高只是一个伴随但无调节作用的事件。

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