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透射电子显微镜作为一种用于表征注射器前后纳米晶体的工具。

Transmission electron microscopy as a tool for nanocrystal characterization pre- and post-injector.

作者信息

Stevenson H P, DePonte D P, Makhov A M, Conway James F, Zeldin O B, Boutet S, Calero G, Cohen A E

机构信息

Department of Structural Biology, University of Pittsburgh School of Medicine, 1040 Biomedical Science Tower 3, Pittsburgh, PA 15260, USA.

Linac Coherent Light Source, SLAC National Accelerator Laboratory, Stanford University, 2575 Sand Hill Road, Menlo Park, CA 94025, USA.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2014 Jul 17;369(1647):20130322. doi: 10.1098/rstb.2013.0322.

Abstract

Recent advancements at the Linac Coherent Light Source X-ray free-electron laser (XFEL) enabling successful serial femtosecond diffraction experiments using nanometre-sized crystals (NCs) have opened up the possibility of X-ray structure determination of proteins that produce only submicrometre crystals such as many membrane proteins. Careful crystal pre-characterization including compatibility testing of the sample delivery method is essential to ensure efficient use of the limited beamtime available at XFEL sources. This work demonstrates the utility of transmission electron microscopy for detecting and evaluating NCs within the carrier solutions of liquid injectors. The diffraction quality of these crystals may be assessed by examining the crystal lattice and by calculating the fast Fourier transform of the image. Injector reservoir solutions, as well as solutions collected post-injection, were evaluated for three types of protein NCs (i) the membrane protein PTHR1, (ii) the multi-protein complex Pol II-GFP and (iii) the soluble protein lysozyme. Our results indicate that the concentration and diffraction quality of NCs, particularly those with high solvent content and sensitivity to mechanical manipulation may be affected by the delivery process.

摘要

直线加速器相干光源X射线自由电子激光(XFEL)的最新进展使得利用纳米级晶体(NCs)成功进行连续飞秒衍射实验成为可能,这为确定仅产生亚微米级晶体的蛋白质(如许多膜蛋白)的X射线结构开辟了道路。仔细的晶体预表征,包括样品输送方法的兼容性测试,对于确保有效利用XFEL光源有限的束流时间至关重要。这项工作展示了透射电子显微镜在检测和评估液体注射器载体溶液中的NCs方面的实用性。这些晶体的衍射质量可以通过检查晶格和计算图像的快速傅里叶变换来评估。对三种类型的蛋白质NCs(i)膜蛋白PTHR1、(ii)多蛋白复合物Pol II-GFP和(iii)可溶性蛋白溶菌酶的注射器储液器溶液以及注射后收集的溶液进行了评估。我们的结果表明,NCs的浓度和衍射质量,特别是那些溶剂含量高且对机械操作敏感的NCs,可能会受到输送过程的影响。

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