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用于磷脂酸的基因编码探针。

Genetically encoded probes for phosphatidic acid.

作者信息

Kassas Nawal, Tryoen-Tóth Petra, Corrotte Matthias, Thahouly Tamou, Bader Marie-France, Grant Nancy J, Vitale Nicolas

机构信息

Institut des Neurosciences Cellulaires et Intégratives, CNRS UPR3212, Strasbourg, France.

出版信息

Methods Cell Biol. 2012;108:445-59. doi: 10.1016/B978-0-12-386487-1.00020-1.

Abstract

In addition to forming bilayers to separate cellular compartments, lipids participate in vesicular trafficking and signal transduction. Among others, phosphatidic acid (PA) is emerging as an important signaling molecule. The spatiotemporal distribution of cellular PA appears to be tightly regulated by localized synthesis and a rapid metabolism. Although PA has been long proposed as a pleiotropic bioactive lipid, when and where PA is produced in the living cells have only recently been explored using biosensors that specifically bind to PA. The probes that we have generated are composed of the PA-binding domains of either Spo20p or Raf1 directly fused to GFP. In this chapter, we will describe the expression and purification of GST-fusion proteins of these probes, and the use of phospholipid strips to validate the specificity of their interaction with PA. We will then illustrate the use of GFP-tagged probes to visualize the synthesis of PA in the neurosecretory PC12 cells and RAW 267.4 macrophages. Interestingly, the two probes show a differential distribution in these cell types, indicating that they may have different affinities for PA or recognize different pools of PA. In conclusion, the development of a broader choice of probes may be required to adequately follow the complex dynamics of PA in different cell types, in order to determine the cellular distribution of PA and its role in various cellular processes.

摘要

除了形成双层膜以分隔细胞区室外,脂质还参与囊泡运输和信号转导。其中,磷脂酸(PA)正成为一种重要的信号分子。细胞内PA的时空分布似乎受到局部合成和快速代谢的严格调控。尽管长期以来人们一直认为PA是一种具有多种生物活性的脂质,但直到最近才利用特异性结合PA的生物传感器来探究活细胞中PA的产生时间和位置。我们构建的探针由Spo20p或Raf1的PA结合结构域直接与GFP融合而成。在本章中,我们将描述这些探针的GST融合蛋白的表达和纯化,以及使用磷脂条来验证它们与PA相互作用的特异性。然后,我们将说明使用GFP标记的探针来观察神经分泌性PC12细胞和RAW 267.4巨噬细胞中PA的合成情况。有趣的是,这两种探针在这些细胞类型中显示出不同的分布,表明它们对PA可能具有不同的亲和力或识别不同的PA池。总之,可能需要开发更多种类的探针,以便充分追踪不同细胞类型中PA的复杂动态变化,从而确定PA在细胞内的分布及其在各种细胞过程中的作用。

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