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笼形肌醇多磷酸盐的膜通透乙酰氧甲基酯的合成与应用实用指南。

A practical guide to the synthesis and use of membrane-permeant acetoxymethyl esters of caged inositol polyphosphates.

机构信息

Department of Neuroscience, Mount Sinai School of Medicine, New York, New York, USA.

出版信息

Nat Protoc. 2011 Mar;6(3):327-37. doi: 10.1038/nprot.2010.194. Epub 2011 Feb 17.

Abstract

This protocol describes a method for efficient chemical synthesis of an analog of inositol-1,4,5-trisphosphate (IP(3)) hexakis acetoxymethyl ester having an ortho-nitroveratryl photochemical caging group on the 6-hydroxyl position. The six esters render the probe membrane permeant, such that it can be loaded into intact living cells in vitro or in vivo. Inside cells, the caged IP(3) is inert until activated by two-photon excitation at 720 nm. The photoliberated signaling molecule can mobilize release of Ca(2+) from intracellular stores on the endoplasmic reticulum. When co-loaded with the fluorescent Ca(2+) indicator rhod-2, one laser can be used for stimulating and monitoring intracellular Ca(2+) signaling with single-cell resolution. This protocol has chemistry and biology sections; the former describes the organic synthesis of the caged IP(3), which requires 12 d, and the latter an application to a day-long study of astrocyte-regulated neuronal function in living brain slices acutely isolated from rats. As Ca(2+) is the single most important intracellular second messenger and the IP(3)-Ca(2+) signaling cascade is used by many cells to produce increases in Ca(2+) concentration, this method should be widely applicable for the study of a variety of physiological processes in intact biological systems.

摘要

本方案描述了一种高效合成具有邻硝基藜芦酰基光化学封闭基团的肌醇-1,4,5-三磷酸(IP(3))六乙酸甲酯类似物的化学方法。这六个酯基使探针具有膜通透性,使其能够在体外或体内的完整活细胞中进行负载。在细胞内,被封闭的 IP(3)在 720nm 的双光子激发下被激活之前是惰性的。光解的信号分子可以动员内质网细胞内储存的 Ca(2+)释放。当与荧光 Ca(2+)指示剂 rhod-2 共同负载时,一个激光就可以用于以单细胞分辨率刺激和监测细胞内 Ca(2+)信号。本方案有化学和生物学两部分;前者描述了封闭 IP(3)的有机合成,需要 12 天,后者则介绍了其在大鼠急性分离的活体脑片中研究星形胶质细胞调节神经元功能的为期一天的应用。由于 Ca(2+)是最重要的细胞内第二信使,而 IP(3)-Ca(2+)信号级联反应被许多细胞用于产生 Ca(2+)浓度的增加,因此该方法应该广泛适用于完整生物系统中各种生理过程的研究。

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