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细胞内pH值变化影响胞质游离钙峰。

Cytosolic free calcium spiking affected by intracellular pH change.

作者信息

Tsunoda Y

机构信息

Department of Physiology, University of Michigan, Ann Arbor 48109.

出版信息

Exp Cell Res. 1990 Jun;188(2):294-301. doi: 10.1016/0014-4827(90)90173-8.

Abstract

The characteristics underlying cytosolic free calcium oscillation were evaluated by superfused dual wave-length microspectrofluorometry of fura-2-loaded single acinar cells from rat pancreas. Application of a physiological concentration of cholecystokinin octapeptide (CCK) (20 pM) induced a small basal increase in cytosolic free calcium concentration ([Ca2+]i) averaging 34 nM above the prestimulation level (69 nM) with superimposed repetitive Ca2+ spike oscillation. The oscillation amplitude averaged 121 nM above the basal increase in [Ca2+]i and occurred at a frequency of one pulse every 49 s. Although extracellular Ca2+ was required for maintenance of high frequency and amplitude of the spikes with increase in basal [Ca2+]i, the primary source utilized for oscillation was intracellular. The threshold of the peak [Ca2+]i amplitude for causing synchronized and same-sized oscillations was less than 300 nM. The [Ca2+]i oscillation was sensitive to intracellular pH (pHi) change. This is shown by the fact that the large pHi shift toward acidification (delta pHi decrease, 0.95) led to a basal increase in [Ca2+]i to the spike peak level with inhibiting Ca2+ oscillation. The pHi shift toward alkalinization (delta pHi increase, 0.33) led to a basal decrease in [Ca2+]i to the prestimulation level, possibly due to reuptake of Ca2+ into the Ca2+ stores, with inhibiting Ca2+ oscillation. Whereas extracellular pH (pHo) change had only minimal effects on Ca2+ oscillation (and/or Ca2+ release from intracellular stores), the extra-Ca2+ entry process, which was induced by higher concentrations of CCK, was totally inhibited by decreasing pHo from 7.4 to 6.5. Thus the major regulatory sites by which H+ affects Ca2+ oscillation are accessible from the intracellular space.

摘要

通过对用fura - 2负载的大鼠胰腺单个腺泡细胞进行双波长微光谱荧光测定,评估了胞质游离钙振荡的潜在特征。应用生理浓度的八肽胆囊收缩素(CCK)(20 pM)可引起胞质游离钙浓度([Ca2+]i)在基础水平上小幅增加,平均比刺激前水平(69 nM)高34 nM,并伴有叠加的重复性Ca2+尖峰振荡。振荡幅度平均比[Ca2+]i的基础增加高121 nM,频率为每49秒一个脉冲。尽管维持尖峰的高频和幅度以及基础[Ca2+]i的增加需要细胞外Ca2+,但振荡的主要来源是细胞内。引起同步且大小相同振荡的[Ca2+]i峰值幅度阈值小于300 nM。[Ca2+]i振荡对细胞内pH(pHi)变化敏感。这表现为pHi大幅向酸化方向移动(ΔpHi降低,0.95)导致[Ca2+]i基础增加至尖峰峰值水平并抑制Ca2+振荡。pHi向碱化方向移动(ΔpHi增加,0.33)导致[Ca2+]i基础降低至刺激前水平,这可能是由于Ca2+重新摄取到Ca2+储存中并抑制了Ca2+振荡。而细胞外pH(pHo)变化对Ca2+振荡(和/或细胞内储存中Ca2+释放)的影响极小,较高浓度CCK诱导的细胞外Ca2+内流过程在将pHo从7.4降至6.5时被完全抑制。因此,H+影响Ca2+振荡的主要调节位点可从细胞内空间接近。

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