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Imaging FCS delineates subtle heterogeneity in plasma membranes of resting mast cells

机译:成像FCS描绘了静息肥大细胞质膜的微妙异质性

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摘要

A myriad of transient, nanoscopic lipid- and protein-based interactions confer a steady-state organization of the plasma membrane in resting cells that is poised to orchestrate assembly of key signaling components upon reception of an extracellular stimulus. Although difficult to observe directly in live cells, these subtle interactions can be discerned by their impact on the diffusion of membrane constituents. Here, we quantified the diffusion properties of a panel of structurally distinct lipid, lipid-anchored, and transmembrane (TM) probes in RBL mast cells by imaging fluorescence correlation spectroscopy (ImFCS). We developed a statistical analysis of data combined from many pixels over multiple cells to characterize differences in diffusion coefficients as small as 10%, which reflect differences in underlying interactions. We found that the distinctive diffusion properties of lipid probes can be explained by their dynamic partitioning into Lo-like proteolipid nanodomains, which encompass a major fraction of the membrane and whose physical properties are influenced by actin polymerization. Effects on diffusion of functional protein modules in both lipid-­anchored and TM probes reflect additional complexity in steady state membrane organization. The contrast we observe between different probes diffusing through the same membrane milieu represents the dynamic resting steady state, which serves as a baseline for monitoring plasma membrane remodeling that occurs upon stimulation.
机译:无数种基于脂质和蛋白质的基于纳米级的短暂相互作用,在静止细胞中赋予质膜一个稳态组织,一旦接收到细胞外刺激,它就可以协调关键信号成分的组装。尽管很难直接在活细胞中观察到这些微妙的相互作用,但可以通过它们对膜成分扩散的影响来辨别。在这里,我们通过成像荧光相关光谱法(ImFCS)量化了RBL肥大细胞中一组结构独特的脂质,脂质锚定和跨膜(TM)探针的扩散特性。我们开发了对多个像素在多个像元上组合而成的数据进行统计分析,以表征扩散系数差异小至10%,这反映了基础相互作用的差异。我们发现,脂质探针的独特扩散特性可以通过将其动态分配到Lo状蛋白脂质纳米域来解释,所述Lo状蛋白脂质纳米域包含膜的主要部分,其物理性质受到肌动蛋白聚合的影响。脂质锚定探针和TM探针对功能蛋白模块扩散的影响反映了稳态膜组织的额外复杂性。我们在扩散穿过同一膜环境的不同探针之间观察到的对比代表了动态静止稳态,它是监测刺激后发生的质膜重塑的基线。

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