Bauer CS, Plieth C, Bethmann B, Popescu O, Hansen UP, Simonis W, Schonknecht G
Plant Physiol. 1998 Jun;117(2):545-57. doi: 10.1104/pp.117.2.545.
The divalent cation Sr2+ induced repetitive transient spikes of the cytosolic Ca2+ activity [Ca2+]cy and parallel repetitive transient hyperpolarizations of the plasma membrane in the unicellular green alga Eremosphaera viridis. [Ca2+]cy measurements, membrane potential measurements, and cation analysis of the cells were used to elucidate the mechanism of Sr2+-induced [Ca2+]cy oscillations. Sr2+ was effectively and rapidly compartmentalized within the cell, probably into the vacuole. The [Ca2+]cy oscillations cause membrane potential oscillations, and not the reverse. The endoplasmic reticulum (ER) Ca2+-ATPase blockers 2,5-di-tert-butylhydroquinone and cyclopiazonic acid inhibited Sr2+-induced repetitive [Ca2+]cy spikes, whereas the compartmentalization of Sr2+ was not influenced. A repetitive Ca2+ release and Ca2+ re-uptake by the ER probably generated repetitive [Ca2+]cy spikes in E. viridis in the presence of Sr2+. The inhibitory effect of ruthenium red and ryanodine indicated that the Sr2+-induced Ca2+ release from the ER was mediated by a ryanodine/cyclic ADP-ribose type of Ca2+ channel. The blockage of Sr2+-induced repetitive [Ca2+]cy spikes by La3+ or Gd3+ indicated the necessity of a certain influx of divalent cations for sustained [Ca2+]cy oscillations. Based on these data we present a mathematical model that describes the baseline spiking [Ca2+]cy oscillations in E. viridis.
二价阳离子Sr2+可诱导单细胞绿藻绿裸藻胞质Ca2+活性[Ca2+]cy产生重复性瞬时尖峰,并使质膜产生平行的重复性瞬时超极化。通过[Ca2+]cy测量、膜电位测量以及细胞阳离子分析来阐明Sr2+诱导[Ca2+]cy振荡的机制。Sr2+在细胞内有效且快速地被分隔,可能进入液泡。[Ca2+]cy振荡引起膜电位振荡,而非相反。内质网(ER)Ca2+-ATP酶阻滞剂2,5-二叔丁基对苯二酚和环匹阿尼酸抑制了Sr2+诱导的重复性[Ca2+]cy尖峰,而Sr2+的分隔不受影响。在存在Sr2+的情况下,内质网对Ca2+的重复性释放和再摄取可能在绿裸藻中产生了重复性[Ca2+]cy尖峰。钌红和ryanodine的抑制作用表明,Sr2+诱导的内质网Ca2+释放是由ryanodine/环ADP-核糖型Ca2+通道介导的。La3+或Gd3+对Sr2+诱导的重复性[Ca2+]cy尖峰的阻断表明,持续的[Ca2+]cy振荡需要一定量的二价阳离子内流。基于这些数据,我们提出了一个数学模型来描述绿裸藻中基线尖峰[Ca2+]cy振荡。