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通过活细胞等离子体耦合显微镜监测 ErbB1 富集膜域的大小和横向动力学。

Monitoring the size and lateral dynamics of ErbB1 enriched membrane domains through live cell plasmon coupling microscopy.

机构信息

Department of Chemistry and The Photonics Center, Boston University, Boston, Massachusetts, United States of America.

出版信息

PLoS One. 2012;7(3):e34175. doi: 10.1371/journal.pone.0034175. Epub 2012 Mar 28.

Abstract

To illuminate the role of the spatial organization of the epidermal growth factor receptor (ErbB1) in signal transduction quantitative information about the receptor topography on the cell surface, ideally on living cells and in real time, are required. We demonstrate that plasmon coupling microscopy (PCM) enables to detect, size, and track individual membrane domains enriched in ErbB1 with high temporal resolution. We used a dendrimer enhanced labeling strategy to label ErbB1 receptors on epidermoid carcinoma cells (A431) with 60 nm Au nanoparticle (NP) immunolabels under physiological conditions at 37°C. The statistical analysis of the spatial NP distribution on the cell surface in the scanning electron microscope (SEM) confirmed a clustering of the NP labels consistent with a heterogeneous distribution of ErbB1 in the plasma membrane. Spectral shifts in the scattering response of clustered NPs facilitated the detection and sizing of individual NP clusters on living cells in solution in an optical microscope. We tracked the lateral diffusion of individual clusters at a frame rate of 200 frames/s while simultaneously monitoring the configurational dynamics of the clusters. Structural information about the NP clusters in their membrane confinements were obtained through analysis of the electromagnetic coupling of the co-confined NP labels through polarization resolved PCM. Our studies show that the ErbB1 receptor is enriched in membrane domains with typical diameters in the range between 60-250 nm. These membrane domains exhibit a slow lateral diffusion with a diffusion coefficient of D = |0.0054±0.0064| µm(2)/s, which is almost an order of magnitude slower than the mean diffusion coefficient of individual NP tagged ErbB1 receptors under identical conditions.

摘要

为了阐明表皮生长因子受体(ErbB1)的空间组织在信号转导中的作用,需要定量了解细胞表面受体的拓扑结构,理想情况下是在活细胞上并实时进行。我们证明等离子体耦合显微镜(PCM)能够以高时间分辨率检测、测量和跟踪富含 ErbB1 的单个膜域。我们使用树枝状大分子增强标记策略,在生理条件下(37°C)用 60nm Au 纳米颗粒(NP)免疫标记表皮癌细胞(A431)上的 ErbB1 受体。在扫描电子显微镜(SEM)中对细胞表面 NP 分布的统计分析证实了 NP 标记的聚类,这与质膜中 ErbB1 的不均匀分布一致。聚集 NP 的散射响应的光谱位移促进了在溶液中在光学显微镜下对活细胞上的单个 NP 簇的检测和定尺寸。我们以 200 帧/秒的帧率跟踪单个簇的横向扩散,同时监测簇的构象动力学。通过分析共限制的 NP 标记的电磁耦合,通过偏振分辨 PCM 获得 NP 簇在其膜限制内的结构信息。我们的研究表明,ErbB1 受体在直径在 60-250nm 之间的典型膜域中富集。这些膜域表现出缓慢的侧向扩散,扩散系数 D=|0.0054±0.0064| µm(2)/s,几乎比在相同条件下单个 NP 标记的 ErbB1 受体的平均扩散系数慢一个数量级。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bf4/3314600/bfe96929c6f7/pone.0034175.g001.jpg

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