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在允许磷酸盐快速跨膜交换的培养基中孵育的人红细胞中磷酸肌醇和磷脂酸的多个代谢池。

Multiple metabolic pools of phosphoinositides and phosphatidate in human erythrocytes incubated in a medium that permits rapid transmembrane exchange of phosphate.

作者信息

King C E, Stephens L R, Hawkins P T, Guy G R, Michell R H

机构信息

Department of Biochemistry, University of Birmingham, U.K.

出版信息

Biochem J. 1987 May 15;244(1):209-17. doi: 10.1042/bj2440209.

Abstract
  1. A Hepes-based medium has been devised which allows rapid Pi exchange across the plasma membrane of the human erythrocyte. This allows the metabolically labile phosphate pools of human erythrocytes to come to equilibrium with [32P]Pi in the medium after only 5 h in vitro. 2. After 5-7 h incubation with [32P]Pi in this medium, only three phospholipids, phosphatidic acid (PtdOH), phosphatidylinositol 4-phosphate (PtdIns4P) and phosphatidylinositol 4,5-bisphosphate (PtdIns4,5P2) are radioactively labelled. The concentrations of PtdIns4P and PtdIns4,5P2 remain constant throughout the incubation, so this labelling process is a reflection of the steady-state turnover of their monoester phosphate groups. 3. During such incubations, the specific radioactivities of the monoesterified phosphates of PtdIns4, PtdIns4,5P2 and PtdOH come to a steady value after 5 h that is only 25-30% of the specific radioactivity of the gamma-phosphate of ATP at that time. We suggest that this is a consequence of metabolic heterogeneity. This heterogeneity is not a result of the heterogeneous age distribution of the erythrocytes in human blood. Thus it appears that there is metabolic compartmentation of these lipids within cells, such that within a time-scale of a few hours only 25-30% of these three lipids are actively metabolized. 4. The phosphoinositidase C of intact human erythrocytes, when activated by Ca2+-ionophore treatment, only hydrolyses 50% of the total PtdIns4,5P2 and 50% of 32P-labelled PtdIns4,5P2 present in the cells: this enzyme does not discriminate between the metabolically active and inactive compartments of lipids in the erythrocyte membrane. Hence at least four metabolic pools of PtdIns4P and PtdIns4,5P2 are distinguishable in the human erythrocyte plasma membrane. 5. The mechanisms by which multiple non-mixing metabolic pools of PtdOH, PtdIns4P and PtdIns4,5P2 are sustained over many hours in the plasma membranes of intact erythrocytes are unknown, although some possible explanations are considered.
摘要
  1. 已设计出一种基于羟乙基哌嗪乙磺酸(Hepes)的培养基,它能使无机磷酸盐(Pi)在人红细胞质膜上快速交换。这使得人红细胞中代谢不稳定的磷酸盐池在体外仅5小时后就能与培养基中的[32P]Pi达到平衡。2. 在该培养基中用[32P]Pi孵育5 - 7小时后,只有三种磷脂,即磷脂酸(PtdOH)、磷脂酰肌醇4 - 磷酸(PtdIns4P)和磷脂酰肌醇4,5 - 二磷酸(PtdIns4,5P2)被放射性标记。在整个孵育过程中,PtdIns4P和PtdIns4,5P2的浓度保持恒定,所以这种标记过程反映了它们单酯磷酸基团的稳态周转。3. 在这样的孵育过程中,PtdIns4、PtdIns4,5P2和PtdOH的单酯化磷酸的比放射性在5小时后达到一个稳定值,该值仅为此时ATPγ - 磷酸比放射性的25 - 30%。我们认为这是代谢异质性的结果。这种异质性不是人血中红细胞年龄分布不均一的结果。因此,似乎这些脂质在细胞内存在代谢区室化,以至于在几小时的时间尺度内,这三种脂质中只有25 - 30%被积极代谢。4. 完整人红细胞的磷脂酰肌醇特异性磷脂酶C在经钙离子载体处理激活后,仅水解细胞中存在的总PtdIns4,5P2的50%和32P标记的PtdIns4,5P2的50%:这种酶不会区分红细胞膜中脂质的代谢活跃和不活跃区室。因此,在人红细胞质膜中至少可区分出四个PtdIns4P和PtdIns4,5P2的代谢池。5. 尽管考虑了一些可能的解释,但完整红细胞质膜中PtdOH、PtdIns4P和PtdIns4,5P2多种不混合的代谢池在数小时内得以维持的机制尚不清楚。

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