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无机磷酸盐的生理浓度会影响非肝细胞微粒体囊泡中MgATP依赖的Ca2+储存以及肌醇三磷酸诱导的Ca2+外流。

Physiological concentrations of inorganic phosphate affect MgATP-dependent Ca2+ storage and inositol trisphosphate-induced Ca2+ efflux in microsomal vesicles from non-hepatic cells.

作者信息

Fulceri R, Bellomo G, Gamberucci A, Romani A, Benedetti A

机构信息

Istituto di Patologia Generale, University of Siena, Italy.

出版信息

Biochem J. 1993 Jan 1;289 ( Pt 1)(Pt 1):299-306. doi: 10.1042/bj2890299.

Abstract
  1. MgATP-dependent 45Ca2+ uptake by microsomes obtained from various non-hepatic tissues, namely rat brain, rat solid Morris hepatoma 3924A and human platelets, was measured in the presence of P(i) at low, cytosol-like, concentrations. 2. Increasing P(i) concentrations (0.5-3 mM) caused a progressive enlargement of the 45Ca(2+)-storage capacity of all the microsomal fractions. 3. As a result of P(i) stimulation of Ca2+ uptake, 45Ca2+ and [32P]P(i) were co-accumulated by the three microsomal fractions. 4. The time course for 45Ca2+ and [32P]P(i) accumulation in brain microsomes revealed a biphasic 45Ca2+ uptake: a rapid phase was followed by a second, slower, phase, which depended on the presence of P(i). During the P(i)-dependent phase, the uptake of 45Ca2+ was paralleled by the uptake of [32P]Pi. 5. The passive efflux of Ca2+ was paralleled by the efflux of P(i) and vice versa. In fact, the inhibition of active Ca2+ uptake by excess EGTA, or lowering the P(i) concentration of the incubation system by dilution, caused the release of 45Ca2+ and [32P]P(i) from 45Ca2+ or [32P]P(i) pre-loaded brain microsomes. The Ca2+ ionophore A23187 also released 45Ca2+ and [32P]P(i). 6. Ca2+ efflux by A23187 was rapid (t 1/2 approx. 2 s) and independent of the extent of intravesicular Ca2+ loading, which indicates that Ca2+ and P(i) do not form intravesicular insoluble complexes. 7. The progressive increase in Ca2+ accumulation, depending on P(i) stimulation, resulted in a proportional increase in the amount of Ca2+ releasable by InsP3 in the three non-hepatic microsomal fractions and in digitonin-permeabilized platelets. 8. Concomitantly to Ca2+, microsomal P(i) was also released by InsP3.
摘要
  1. 在低浓度、类似胞质溶胶的无机磷酸盐(P(i))存在的情况下,测定了从各种非肝组织(即大鼠脑、大鼠实体莫里斯肝癌3924A和人血小板)获得的微粒体对MgATP依赖性的45Ca2+摄取。2. 增加P(i)浓度(0.5 - 3 mM)导致所有微粒体组分的45Ca(2+)储存能力逐渐增大。3. 由于P(i)刺激Ca2+摄取,45Ca2+和[32P]P(i)被三种微粒体组分共同积累。4. 脑微粒体中45Ca2+和[32P]P(i)积累的时间进程显示出双相的45Ca2+摄取:快速相之后是第二个较慢的相,这一较慢相依赖于P(i)的存在。在依赖P(i)的相中,45Ca2+的摄取与[32P]Pi的摄取平行。5. Ca2+的被动外流与P(i)的外流平行,反之亦然。事实上,过量EGTA抑制主动Ca2+摄取,或通过稀释降低孵育系统的P(i)浓度,会导致45Ca2+和[32P]P(i)从预先加载了45Ca2+或[32P]P(i)的脑微粒体中释放出来。Ca2+离子载体A23187也会释放45Ca2+和[32P]P(i)。6. A23187介导的Ca2+外流很快(半衰期约2秒),且与囊泡内Ca2+加载程度无关,这表明Ca2+和P(i)不会形成囊泡内不溶性复合物。7. 依赖P(i)刺激的Ca2+积累的逐渐增加,导致三种非肝微粒体组分和洋地黄皂苷通透化血小板中可被肌醇三磷酸(InsP3)释放 的Ca2+量成比例增加。8. 与Ca2+同时,微粒体中的P(i)也被InsP3释放出来。

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