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分泌细胞中的钙-磷脂相互作用:刺激-分泌偶联的新视角。

Calcium-phospholipid interactions in secretory cells: a new perspective on stimulus-secretion coupling.

作者信息

Rubin R P

出版信息

Fed Proc. 1982 Apr;41(6):2181-7.

PMID:6281077
Abstract

Recent evidence suggests that stimuli delivered to the cell surface may alter Ca availability by promotion membrane phospholipid turnover. Due to the importance of Ca in stimulus-secretion coupling, the study of membrane phospholipid turnover could provide valuable information on the cellular mechanisms of evoked secretion. In the adrenal cortex, Ca is an obligatory requirement for adrenocorticotropin (ACTH)-induced steroid production and release, and recent findings revealed the presence of a Ca-dependent phospholipase A2 localized to the surface of isolated feline adrenocortical cells. This phospholipase is activated by ACTH to promote the release of arachidonic acid from phospholipids and thereby stimulate prostaglandin formation. Further investigations into the fate of radiolabeled arachidonic acid described a rapid and specific turnover of arachidonic acid within a phosphatidylinositol (PI) pool that is independent of changes in de novo synthesis and is characterized as a Ca-dependent hydrolysis of PI, followed by a rapid, selective reacylation of lysoPI. A similar deacylation-reacylation reaction involving arachidonyl PI is also found in the rabbit neutrophil when challenged with the formyl-methionyl peptide, F-Met-Leu-Phe, or the Ca-selective ionophore A23187. The relevance of this reaction to secretory phenomena is indicated by its requirement for Ca, its rapid onset, and dose-response curves that paralleled those of the secretory response. The Ca-dependent activation of arachidonyl PI turnover triggered by the activation of membranous phospholipase A2 occupies a critical position in the train of events associated with the activation of the secretory process, and one or another of the products of this reaction-prostaglandins, arachidonic acid, and/or lysophospholipids-may participate in the cellular processes that accompany the discharge of secretory product.

摘要

最近的证据表明,传递到细胞表面的刺激可能通过促进膜磷脂周转来改变钙的可用性。由于钙在刺激-分泌偶联中的重要性,对膜磷脂周转的研究可以为诱发分泌的细胞机制提供有价值的信息。在肾上腺皮质中,钙是促肾上腺皮质激素(ACTH)诱导的类固醇产生和释放的必要条件,最近的研究发现,在分离的猫肾上腺皮质细胞表面存在一种钙依赖性磷脂酶A2。这种磷脂酶被ACTH激活,促进花生四烯酸从磷脂中释放,从而刺激前列腺素的形成。对放射性标记花生四烯酸命运的进一步研究描述了花生四烯酸在磷脂酰肌醇(PI)池中的快速和特异性周转,这与从头合成的变化无关,其特征是PI的钙依赖性水解,随后是溶血PI的快速、选择性再酰化。当用甲酰甲硫氨酰肽F-Met-Leu-Phe或钙选择性离子载体A23187刺激时,在兔中性粒细胞中也发现了涉及花生四烯酰PI的类似去酰化-再酰化反应。该反应对分泌现象的相关性体现在其对钙的需求、快速起效以及与分泌反应平行的剂量反应曲线。由膜磷脂酶A2激活引发的花生四烯酰PI周转的钙依赖性激活在与分泌过程激活相关的一系列事件中占据关键位置,并且该反应的一种或另一种产物——前列腺素、花生四烯酸和/或溶血磷脂——可能参与伴随分泌产物释放的细胞过程。

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