Yi Fan, Jin Si, Li Pin-Lan
Department of Pharmacology & Toxicology, Medical College of Virginia Campus, Virginia Commonwealth University, Richmond, VA, USA.
Methods Mol Biol. 2009;580:93-107. doi: 10.1007/978-1-60761-325-1_5.
Membrane lipid rafts (LRs) have been demonstrated to be importantly involved in transmembrane signaling in a variety of mammalian cells. Many receptors can be aggregated within the LR clusters to form signaling platforms. Currently, LRs were reported to be clustered to aggregate, recruit, and assemble NADPH oxidase subunits and related proteins in various cells in response to various stimuli, forming redox signaling platforms. These LR signaling platforms may play important roles in the regulation of cellular activity and cell function, and also in the development of cell dysfunction or injury associated with various pathological stimuli. This LRs clustering-mediated mechanism is considered to take a center stage in redox signaling associated with death receptors. In this chapter, some basic methods and procedures for characterization of LR-redox signaling platforms formation and for determination of the function of these signaling platforms are described in detail, which include identification of LR-redox signaling platforms in cell membrane by using fluorescent or confocal microscopy of LR-redox signaling platforms and fluorescent resonance energy transfer analysis, isolation of LR-redox signaling platforms by flotation of detergent-resistant membranes, and function measurement of LR-redox signaling platforms by electron spin resonance spectroscopy. It is expected that information provided here will help readers to design necessary experiments in their studies on LR signaling platforms and redox regulation of cell function.
膜脂筏(LRs)已被证明在多种哺乳动物细胞的跨膜信号传导中发挥重要作用。许多受体可在脂筏簇内聚集形成信号平台。目前,据报道,在各种刺激下,脂筏会在不同细胞中聚集、募集并组装NADPH氧化酶亚基及相关蛋白,形成氧化还原信号平台。这些脂筏信号平台可能在细胞活性和细胞功能的调节中发挥重要作用,也在与各种病理刺激相关的细胞功能障碍或损伤的发展中起作用。这种脂筏聚集介导的机制被认为在与死亡受体相关的氧化还原信号传导中占据核心地位。在本章中,将详细描述一些用于表征脂筏 - 氧化还原信号平台形成及确定这些信号平台功能的基本方法和步骤,包括通过脂筏 - 氧化还原信号平台的荧光或共聚焦显微镜观察以及荧光共振能量转移分析来鉴定细胞膜中的脂筏 - 氧化还原信号平台,通过耐去污剂膜的浮选分离脂筏 - 氧化还原信号平台,以及通过电子自旋共振光谱法测量脂筏 - 氧化还原信号平台的功能。期望这里提供的信息能帮助读者在其关于脂筏信号平台及细胞功能氧化还原调节的研究中设计必要的实验。