Chang-Ileto Belle, Frere Samuel G, Di Paolo Gilbert
Department of Pathology and Cell Biology, Taub Institute for Research on Alzheimer's Disease and the Aging Brain, Columbia University Medical Center, New York, USA.
Methods Cell Biol. 2012;108:187-207. doi: 10.1016/B978-0-12-386487-1.00010-9.
Phosphoinositides are membrane-bound signaling phospholipids that function in a myriad of cellular processes, including membrane trafficking, cytoskeletal dynamics, ion channel and transporter function, and signal transduction. In order to better understand the role of phosphoinositides in cellular processes, different approaches to study the effects of the presence or absence of these lipids must be devised. Conventional approaches of manipulating phosphoinositide levels such as over-expression or genetic ablation of lipid enzymes cause prolonged exposure of the cells to changes in lipid levels that could result in compensatory actions by the cell or downstream alterations in cell physiology. In this chapter we present an approach used recently by various laboratories, including our own, to acutely manipulate phosphoinositide levels at target locations using chemically induced dimerization (CID) that can be spatially and temporally controlled. We discuss considerations when designing expression constructs for targeting specific cellular compartment membranes and present examples from the literature on different ways of perturbing phosphoinositide levels at particular organelle membranes using CID. In addition, we provide details on image acquisition, data collection, and data interpretation. CID technology can be applied to many lipid enzymes to broaden the understanding of the role lipid signaling plays in cell physiology.
磷酸肌醇是膜结合信号磷脂,在众多细胞过程中发挥作用,包括膜运输、细胞骨架动力学、离子通道和转运蛋白功能以及信号转导。为了更好地理解磷酸肌醇在细胞过程中的作用,必须设计不同的方法来研究这些脂质存在或缺失的影响。操纵磷酸肌醇水平的传统方法,如脂质酶的过表达或基因敲除,会使细胞长时间暴露于脂质水平的变化中,这可能导致细胞的补偿作用或细胞生理学的下游改变。在本章中,我们介绍了包括我们自己实验室在内的各个实验室最近使用的一种方法,即利用化学诱导二聚化(CID)在目标位置急性操纵磷酸肌醇水平,这种方法可以在空间和时间上进行控制。我们讨论了设计用于靶向特定细胞内膜的表达构建体时的注意事项,并给出文献中使用CID在特定细胞器膜上扰动磷酸肌醇水平的不同方法的示例。此外,我们还提供了图像采集、数据收集和数据解释的详细信息。CID技术可应用于许多脂质酶,以拓宽对脂质信号在细胞生理学中作用的理解。