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Two promising future developments of cryo-EM: capturing short-lived states and mapping a continuum of states of a macromolecule

机译:cryo-EM的两个有前途的未来发展:捕获短寿命状态并映射大分子状态的连续体

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摘要

The capabilities and application range of cryogenic electron microscopy (cryo-EM) method have expanded vastly in the last two years, thanks to the advances provided by direct detection devices and computational classification tools. We take this review as an opportunity to sketch out promising developments of cryo-EM in two important directions: (i) imaging of short-lived states (10–1000 ms) of biological molecules by using time-resolved cryo-EM, particularly the mixing-spraying method and (ii) recovering an entire continuum of coexisting states from the same sample by employing a computational technique called manifold embedding. It is tempting to think of combining these two methods, to elucidate the way the states of a molecular machine such as the ribosome branch and unfold. This idea awaits further developments of both methods, particularly by increasing the data yield of the time-resolved cryo-EM method and by developing the manifold embedding technique into a user-friendly workbench.
机译:得益于直接检测设备和计算分类工具的发展,低温电子显微镜(cryo-EM)方法的功能和应用范围在过去两年中得到了极大的扩展。我们以这次回顾为契机,从两个重要方向勾勒出冷冻EM的发展前景:(i)使用时间分辨的冷冻EM对生物分子的短寿命状态(10–1000 ms)成像,特别是混合喷涂方法;(ii)通过使用称为流形嵌入的计算技术从同一样本中恢复共存状态的整个连续体。试图将这两种方法结合起来以阐明分子机器的状态(如核糖体分支和展开)的方式很诱人。这个想法正在等待这两种方法的进一步发展,特别是通过提高时间分辨的cryo-EM方法的数据产量以及将多方嵌入技术开发到用户友好的工作台中。

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