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Toward high-resolution in situ structural biology with cryo-electron tomography and subtomogram averaging

机译:通过Croudo-Colleco-Coldencography和Subtomograph平均实现高分辨率原位结构生物学

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摘要

Cryo-electron tomography (cryo-ET) provides unprecedented insights into the molecular constituents of biological environments. In combination with an image processing method called subtomogram averaging (STA), detailed 3D structures of biological molecules can be obtained in large, irregular macromolecular assemblies or in situ, without the need for purification. The contextual meta-information these methods also provide, such as a protein's location within its native environment, can then be combined with functional data. This allows the derivation of a detailed view on the physiological or pathological roles of proteins from the molecular to cellular level. Despite their tremendous potential in in situ structural biology, cryo-ET and STA have been restricted by methodological limitations, such as the low obtainable resolution. Exciting progress now allows one to reach unprecedented resolutions in situ, ranging in optimal cases beyond the nanometer barrier. Here, I review current frontiers and future challenges in routinely determining high-resolution structures in in situ environments using cryo-ET and STA.
机译:冷冻电子断层扫描(Cryo-et)向生物环境的分子成分提供前所未有的见解。与称为Subtomograph平均(STA)的图像处理方法组合,可以在大型,不规则的大分子组件或原位中获得生物分子的详细3D结构,而不需要纯化。这些方法的上下文元信息还可以在其本地环境中提供,例如蛋白质的位置,然后可以与功能数据组合。这允许衍生关于蛋白质从分子到细胞水平的生理或病理作用的详细视图。尽管其原位结构生物学巨大潜力,但是Cryo-et和STA受到任何方法的限制,例如低可获得的分辨率。令人兴奋的进步现在允许人们达到前所未有的决议,在纳米屏障之外的最佳情况范围内。在这里,我通过Cryo-et和STA常规确定原位环境中的高分辨率结构来审查当前的边界和未来挑战。

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