迈向综合结构生物学方法:结合冷冻透射电镜,x射线晶体学和核磁共振。

Jeffrey Lengyel, Eric Hnath, Marc Storms, Thomas Wohlfarth
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引用次数: 18

摘要

低温透射电子显微镜(Cryo-TEM),特别是单颗粒分析,正迅速成为确定蛋白质复合物和病毒三维结构的首要方法。在过去的几年里,冷冻透射电镜有了巨大的技术进步,例如自动化和使用改进的探测器的进步,以及改进的图像处理技术。虽然低温透射电镜曾经被认为是一种低分辨率的结构技术,但该方法目前能够在常规基础上产生接近原子分辨率的结构。此外,冷冻透射电镜与其他方法如x射线晶体学、核磁共振波谱学和分子动力学建模相结合,使研究人员能够解决以前认为难以解决的科学问题。人们普遍认为,未来的技术发展将进一步加强该方法,并不是不可想象的,冷冻透射电镜可能成为常规的x射线晶体学用于蛋白质结构测定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Towards an integrative structural biology approach: combining Cryo-TEM, X-ray crystallography, and NMR.

Towards an integrative structural biology approach: combining Cryo-TEM, X-ray crystallography, and NMR.

Towards an integrative structural biology approach: combining Cryo-TEM, X-ray crystallography, and NMR.

Towards an integrative structural biology approach: combining Cryo-TEM, X-ray crystallography, and NMR.

Cryo-transmission electron microscopy (Cryo-TEM) and particularly single particle analysis is rapidly becoming the premier method for determining the three-dimensional structure of protein complexes, and viruses. In the last several years there have been dramatic technological improvements in Cryo-TEM, such as advancements in automation and use of improved detectors, as well as improved image processing techniques. While Cryo-TEM was once thought of as a low resolution structural technique, the method is currently capable of generating nearly atomic resolution structures on a routine basis. Moreover, the combination of Cryo-TEM and other methods such as X-ray crystallography, nuclear magnetic resonance spectroscopy, and molecular dynamics modeling are allowing researchers to address scientific questions previously thought intractable. Future technological developments are widely believed to further enhance the method and it is not inconceivable that Cryo-TEM could become as routine as X-ray crystallography for protein structure determination.

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