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A freeze substitution fixation-based gold enlarging technique for EM studies of endocytosed nanogold-labeled molecules

机译:基于冷冻替代固定的金放大技术,用于内吞纳米金标记分子的EM研究

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摘要

We have developed methods to locate individual ligands that can be used for electron microscopy studies of dynamic events during endocytosis and subsequent intracellular trafficking. The methods are based on enlargement of 1.4 nm Nanogold attached to an endocytosed ligand. Nanogold, a small label that does not induce misdirection of ligand–receptor complexes, is ideal for labeling ligands endocytosed by live cells, but is too small to be routinely located in cells by electron microscopy. Traditional pre-embedding enhancement protocols to enlarge Nanogold are not compatible with high pressure freezing/freeze substitution fixation (HPF/FSF), the most accurate method to preserve ultrastructure and dynamic events during trafficking. We have developed an improved enhancement procedure for chemically fixed samples that reduced auto-nucleation, and a new pre-embedding gold enlarging technique for HPF/FSF samples that preserved contrast and ultrastructure and can be used for high-resolution tomography. We evaluated our methods using labeled Fc as a ligand for the neonatal Fc receptor. Attachment of Nanogold to Fc did not interfere with receptor binding or uptake, and gold-labeled Fc could be specifically enlarged to allow identification in 2D projections and in tomograms. These methods should be broadly applicable to many endocytosis and transcytosis studies.
机译:我们已经开发了定位单个配体的方法,这些方法可用于电子显微镜研究内吞和随后的细胞内运输过程中的动态事件。该方法基于与内吞配体结合的1.4 nm纳米金的扩大。纳米金是一种不会引起配体-受体复合物误导的小标记,是标记被活细胞内吞的配体的理想选择,但是它很小,无法通过电子显微镜常规地定位在细胞中。传统的预嵌入增强协议以扩大Nanogold与高压冷冻/冻结替代固定(HPF / FSF)不兼容,后者是在运输过程中保留超微结构和动态事件的最准确方法。我们为化学固定的样品开发了改进的增强程序,以减少自动成核,并为HPF / FSF样品提供了一种新的预嵌入金放大技术,该技术保留了对比度和超微结构,可用于高分辨率层析成像。我们使用标记的Fc作为新生儿Fc受体的配体评估了我们的方法。纳米金与Fc的结合不会干扰受体的结合或摄取,金标记的Fc可以进行特异性扩增,以允许在2D投影和断层图中识别。这些方法应广泛适用于许多内吞作用和转胞吞作用研究。

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