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Cell-Derived Vesicles for Single-Molecule Imaging of Membrane Proteins

机译:细胞衍生的囊泡,用于膜蛋白的单分子成像

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摘要

A new approach is presented for the application of single-molecule imaging to membrane receptors through the use of vesicles derived from cells expressing fluorescently labeled receptors. During the isolation of vesicles, receptors remain embedded in the membrane of the resultant vesicles, thus allowing these vesicles to serve as nanocontainers for single-molecule measurements. Cell-derived vesicles maintain the structural integrity of transmembrane receptors by keeping them in their physiological membrane. It was demonstrated that receptors isolated in these vesicles can be studied with solution-based fluorescence correlation spectroscopy (FCS) and can be isolated on a solid substrate for single-molecule studies. This technique was applied to determine the stoichiometry of 34 nicotinic receptors. The method provides the capability to extend single-molecule studies to previously inaccessible classes of receptors.
机译:通过使用衍生自表达荧光标记受体的细胞的囊泡,提出了一种将单分子成像应用于膜受体的新方法。在囊泡的分离过程中,受体保留包埋在所得囊泡的膜中,从而使这些囊泡可用作单分子测量的纳米容器。细胞来源的囊泡通过将跨膜受体保留在它们的生理膜中来维持它们的结构完整性。已证明可以使用基于溶液的荧光相关光谱(FCS)研究在这些囊泡中分离的受体,并且可以将其分离在固体基质上进行单分子研究。这项技术被用来确定34种烟碱受体的化学计量。该方法提供了将单分子研究扩展到以前难以接近的受体类别的能力。

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