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酶分泌的分子基础。

The molecular basis of enzyme secretion.

作者信息

Bruzzone R

机构信息

Department of Anatomy and Cellular Biology, Harvard Medical School, Boston, Massachusetts.

出版信息

Gastroenterology. 1990 Oct;99(4):1157-76. doi: 10.1016/0016-5085(90)90640-m.

Abstract

Acinar cells are one of the best studied models of exocytotic secretion. A number of different hormones and neurotransmitters interact with specific membrane receptors, and it is commonly held that pancreatic secretagogues stimulate enzyme release via the elevation of either cytosolic free Ca2+ or cellular cyclic adenosine monophosphate. The discovery of the pivotal role played by phospholipid metabolism in the chain of events leading to secretion, together with the introduction of sensitive techniques to monitor cytosolic free Ca2+, has generated a series of studies that have challenged this classical model. Thus, several observations in pancreatic acini as well as other cell types have argued against the notion that a generalized increase in cytosolic free Ca2+ represents a sufficient and necessary stimulus for exocytosis in nonexcitable cells. Furthermore, the demonstration that a single agonist activates multiple transduction pathways has served to refute the schematic view that receptor agonists activate only one second messenger system. The aim of this article is to review the recent advances in understanding the molecular and cellular mechanisms of signal transduction, with particular emphasis on the inositol lipid pathway, and to integrate this information into a new working model of enzyme secretion from acinar cells.

摘要

腺泡细胞是胞吐分泌研究得最为透彻的模型之一。许多不同的激素和神经递质与特定的膜受体相互作用,人们普遍认为胰腺促分泌剂通过提高胞质游离钙离子或细胞环磷酸腺苷来刺激酶的释放。磷脂代谢在导致分泌的一系列事件中所起的关键作用的发现,以及用于监测胞质游离钙离子的灵敏技术的引入,引发了一系列对这一经典模型提出挑战的研究。因此,在胰腺腺泡以及其他细胞类型中的一些观察结果对胞质游离钙离子普遍增加代表非兴奋性细胞胞吐作用的充分必要刺激这一观点提出了质疑。此外,单一激动剂激活多种转导途径的证明也反驳了受体激动剂仅激活一种第二信使系统的示意图观点。本文的目的是综述在理解信号转导的分子和细胞机制方面的最新进展,特别强调肌醇脂质途径,并将这些信息整合到腺泡细胞酶分泌的新工作模型中。

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