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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Optical measurement of receptor tyrosine kinase oligomerization on live cells
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Optical measurement of receptor tyrosine kinase oligomerization on live cells

机译:活细胞受体酪氨酸激酶寡聚化的光学测量

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摘要

Abstract Receptor tyrosine kinases (RTK) are important cell surface receptors that transduce extracellular signals across the plasma membrane. The traditional view of how these receptors function is that ligand binding to the extracellular domains acts as a master-switch that enables receptor monomers to dimerize and subsequently trans-phosphorylate each other on their intracellular domains. However, a growing body of evidence suggests that receptor oligomerization is not merely a consequence of ligand binding, but is instead part of a complex process responsible for regulation of receptor activation. Importantly, the oligomerization dynamics and subsequent activation of these receptors are affected by other cellular components, such as cytoskeletal machineries and cell membrane lipid characteristics. Thus receptor activation is not an isolated molecular event mediated by the ligand-receptor interaction, but instead involves orchestrated interactions between the receptors and other cellular components. Measuring receptor oligomerization dynamics on live cells can yield important insights into the characteristics of these interactions. Therefore, it is imperative to develop techniques that can probe receptor movements on the plasma membrane with optimal temporal and spatial resolutions. Various microscopic techniques have been used for this purpose. Optical techniques including single molecule tracking (SMT) and fluorescence correlation spectroscopy (FCS) measure receptor diffusion on live cells. Receptor-receptor interactions can also be assessed by detecting F?rster resonance energy transfer (FRET) between fluorescently-labeled receptors situated in close proximity or by counting the number of receptors within a diffraction limited fluorescence spot (stepwise bleaching). This review will describe recent developments of optical techniques that have been used to study receptor oligomerization on living cells. This article is part of a Special Issue entitled: Interactions between membrane receptors in cellular membranes edited by Kalina Hristova. Graphical abstract Display Omitted Highlights ? Characterization of the RTK oligomerization on live cells is important. ? Step-wise photobleaching, FRET, FCCS, and single molecule tracking are described. ? Mechanistic insights into RTK oligomerization and activation are discussed. ]]>
机译:摘要受体酪氨酸激酶(RTK)是重要的细胞表面受体,其在血浆膜上转换细胞外信号。这些受体如何功能的传统观点是与细胞外结构域的配体结合用作主开关,使得受体单体能够在其细胞内域中彼此二聚化并随后依赖于磷酸化。然而,越来越多的证据表明受体寡聚化不仅仅是配体结合的结果,而是代替负责受体激活调节的复杂过程的一部分。重要的是,寡聚动态和随后的这些受体的激活受其他细胞成分的影响,例如细胞骨骼机械和细胞膜脂质特性。因此,受体激活不是由配体受体相互作用介导的分离的分子事件,而是涉及受体与其他细胞组分之间的策划相互作用。测量活细胞上的受体低聚动力学可以对这些相互作用的特征产生重要的见解。因此,必须开发能够具有最佳的时间和空间分辨率在质膜上探测受体运动的技术。为此目的使用了各种微观技术。光学技术包括单分子跟踪(SMT)和荧光相关光谱(FCS)测量活细胞上的受体扩散。还可以通过检测位于靠近的荧光标记的受体之间的fα窦枢转的受体之间的F〜窦窦共振能量转移(FRET)来评估受体 - 受体相互作用。通过计算衍射有限荧光点(逐步漂白)的受体的数量。该审查将描述最近用于研究活细胞对受体寡聚化的光学技术的最新发展。本文是标题的特殊问题的一部分:Kalina Hristova编辑细胞膜中膜受体之间的相互作用。图形抽象显示省略了亮点? Live细胞上RTK寡聚化的表征是重要的。还描述了逐步光漂白,FRET,FCC和单分子跟踪。还讨论了RTK寡聚化和激活的机械洞察。 ]]>

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