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用于透射电子显微镜的小型化样品制备

Miniaturized Sample Preparation for Transmission Electron Microscopy.

作者信息

Schmidli Claudio, Rima Luca, Arnold Stefan A, Stohler Thomas, Syntychaki Anastasia, Bieri Andrej, Albiez Stefan, Goldie Kenneth N, Chami Mohamed, Stahlberg Henning, Braun Thomas

机构信息

Center for Cellular Imaging and NanoAnalytics (C-CINA), Biozentrum, University of Basel; Swiss Nanoscience Institute, University of Basel.

Center for Cellular Imaging and NanoAnalytics (C-CINA), Biozentrum, University of Basel.

出版信息

J Vis Exp. 2018 Jul 27(137):57310. doi: 10.3791/57310.

Abstract

Due to recent technological progress, cryo-electron microscopy (cryo-EM) is rapidly becoming a standard method for the structural analysis of protein complexes to atomic resolution. However, protein isolation techniques and sample preparation methods for EM remain a bottleneck. A relatively small number (100,000 to a few million) of individual protein particles need to be imaged for the high-resolution analysis of proteins by the single particle EM approach, making miniaturized sample handling techniques and microfluidic principles feasible. A miniaturized, paper-blotting-free EM grid preparation method for sample pre-conditioning, EM grid priming and post processing that only consumes nanoliter-volumes of sample is presented. The method uses a dispensing system with sub-nanoliter precision to control liquid uptake and EM grid priming, a platform to control the grid temperature thereby determining the relative humidity above the EM grid, and a pick-and-plunge-mechanism for sample vitrification. For cryo-EM, an EM grid is placed on the temperature-controlled stage and the sample is aspirated into a capillary. The capillary tip is positioned in proximity to the grid surface, the grid is loaded with the sample and excess is re-aspirated into the microcapillary. Subsequently, the sample film is stabilized and slightly thinned by controlled water evaporation regulated by the offset of the platform temperature relative to the dew-point. At a given point the pick-and-plunge mechanism is triggered, rapidly transferring the primed EM grid into liquid ethane for sample vitrification. Alternatively, sample-conditioning methods are available to prepare nanoliter-sized sample volumes for negative stain (NS) EM. The methodologies greatly reduce sample consumption and avoid approaches potentially harmful to proteins, such as the filter paper blotting used in conventional methods. Furthermore, the minuscule amount of sample required allows novel experimental strategies, such as fast sample conditioning, combination with single-cell lysis for "visual proteomics," or "lossless" total sample preparation for quantitative analysis of complex samples.

摘要

由于近期的技术进步,冷冻电子显微镜(cryo-EM)正迅速成为一种将蛋白质复合物结构分析至原子分辨率的标准方法。然而,用于电子显微镜的蛋白质分离技术和样品制备方法仍然是一个瓶颈。通过单颗粒电子显微镜方法对蛋白质进行高分辨率分析,需要对相对少量(100,000至数百万个)的单个蛋白质颗粒进行成像,这使得小型化样品处理技术和微流控原理变得可行。本文介绍了一种用于样品预处理、电子显微镜网格预处理和后处理的小型化、无滤纸电子显微镜网格制备方法,该方法仅消耗纳升体积的样品。该方法使用具有亚纳升精度的分配系统来控制液体吸取和电子显微镜网格预处理,一个控制网格温度从而确定电子显微镜网格上方相对湿度的平台,以及一个用于样品玻璃化的拾取和投入机制。对于冷冻电子显微镜,将电子显微镜网格放置在温度控制台上,然后将样品吸入毛细管中。将毛细管尖端定位在靠近网格表面的位置,将样品加载到网格上,多余的样品再吸回到微毛细管中。随后,通过平台温度相对于露点的偏移来调节水的蒸发,从而稳定并略微变薄样品膜。在给定的时间点触发拾取和投入机制,迅速将预处理的电子显微镜网格转移到液态乙烷中进行样品玻璃化。另外,也有用于负染色(NS)电子显微镜的样品调节方法来制备纳升大小的样品体积。这些方法大大减少了样品消耗,避免了可能对蛋白质有害的方法,如传统方法中使用的滤纸印迹法。此外,所需的极少量样品允许采用新颖的实验策略,如快速样品调节、与单细胞裂解相结合用于“可视化蛋白质组学”,或用于复杂样品定量分析的“无损”全样品制备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2cc/6126565/df5a110484c7/jove-137-57310-0.jpg

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