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Sample preparation of biological macromolecular assemblies for the determination of high-resolution structures by cryo-electron microscopy.

机译:生物大分子组件的样品制备,用于通过冷冻电子显微镜确定高分辨率结构。

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摘要

Single particle cryo-EM has recently developed into a powerful tool to determine the 3D structure of macromolecular complexes at near-atomic resolution, which allows structural biologists to build atomic models of proteins. All technical aspects of cryo-EM technology have been considerably improved over the last two decades, including electron microscopic hardware, image processing software and the ever growing speed of computers. This leads to a more widespread use of the technique, and it can be anticipated that further automation of electron microscopes and image processing tools will soon fully shift the focus away from the technological aspects, onto biological questions that can be answered. In single particle cryo-EM, no crystals of a macromolecule are required. In contrast to X-ray crystallography, this significantly facilitates structure determination by cryo-EM. Nevertheless, a relatively high level of biochemical control is still essential to obtain high-resolution structures by cryo-EM, and it can be anticipated that the success of the cryo-EM technology goes hand in hand with further developments of sample purification and preparation techniques. This will allow routine high-resolution structure determination of the many macromolecular complexes of the cell that until now represent evasive targets for X-ray crystallographers. Here we discuss the various biochemical tools that are currently available and the existing sample purification and preparation techniques for cryo-EM grid preparation that are needed to obtain high-resolution images for structure determination.
机译:单粒子冰冻EM最近发展成为一种功能强大的工具,可以在接近原子分辨率的情况下确定大分子复合物的3D结构,这使结构生物学家可以建立蛋白质的原子模型。在过去的二十年中,cryo-EM技术的所有技术方面都得到了很大的改进,包括电子显微镜硬件,图像处理软件以及计算机的日新月异的发展。这导致该技术的更广泛使用,可以预见,电子显微镜和图像处理工具的进一步自动化将很快将焦点完全从技术方面转移到可以回答的生物学问题上。在单颗粒冷冻EM中,不需要大分子晶体。与X射线晶体学相反,这显着促进了通过冷冻EM进行结构确定。然而,相对较高的生化控制水平对于通过冷冻-EM获得高分辨率结构仍然至关重要,并且可以预期,冷冻-EM技术的成功与样品纯化和制备技术的进一步发展息息相关。 。这将允许对细胞的许多大分子复合物进行常规的高分辨率结构测定,直到现在,这些复合物仍是X射线晶体学家的逃避靶标。在这里,我们讨论了当前可用的各种生化工具,以及为获得用于结构确定的高分辨率图像而需要的用于冷冻-EM网格制备的现有样品纯化和制备技术。

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