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Probing Orientational Behavior of MHC Class I Protein and Lipid Probes in Cell Membranes by Fluorescence Polarization-Resolved Imaging

机译:通过荧光偏振分辨成像探测细胞膜中MHC I类蛋白和脂质探针的取向行为

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摘要

Steady-state polarization-resolved fluorescence imaging is used to analyze the molecular orientational order behavior of rigidly labeled major histocompatibility complex class I (MHC I) proteins and lipid probes in cell membranes of living cells. These fluorescent probes report the orientational properties of proteins and their surrounding lipid environment. We present a statistical study of the molecular orientational order, modeled as the width of the angular distribution of the molecules, for the proteins in the cell endomembrane and plasma membrane, as well as for the lipid probes in the plasma membrane. We apply this methodology on cells after treatments affecting the actin and microtubule networks. We find in particular opposite orientational order changes of proteins and lipid probes in the plasma membrane as a response to the cytoskeleton disruption. This suggests that MHC I orientational order is governed by its interaction with the cytoskeleton, whereas the plasma membrane lipid order is governed by the local cell membrane morphology.
机译:稳态极化分辨荧光成像用于分析活细胞细胞膜中刚性标记的主要组织相容性复合体I类(MHC I)蛋白和脂质探针的分子取向顺序行为。这些荧光探针报告了蛋白质及其周围脂质环境的定向特性。我们目前对细胞内膜和质膜中的蛋白质,以及质膜中的脂质探针的分子取向顺序的统计研究,建模为分子的角分布的宽度。我们将这种方法应用于影响肌动蛋白和微管网络的细胞治疗后。我们特别发现质膜中蛋白质和脂质探针的相反方向的顺序变化是对细胞骨架破坏的反应。这表明MHC I的定向顺序受其与细胞骨架的相互作用控制,而质膜脂质的顺序受局部细胞膜形态控制。

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