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解决时间分辨 X 射线衍射实验中的高激发条件和生物相关性问题。

Addressing high excitation conditions in time-resolved X-ray diffraction experiments and issues of biological relevance.

机构信息

Department of Biochemistry, University of Toronto, 1 King's College Circle, Toronto, ON, M5S 1A8, Canada.

Departments of Chemistry and Physics, University of Toronto, 80 St. George Street, Toronto, Ontario, M5S 3H6, Canada.

出版信息

Curr Opin Struct Biol. 2023 Aug;81:102624. doi: 10.1016/j.sbi.2023.102624. Epub 2023 Jun 16.

Abstract

One of the most important fundamental questions connecting chemistry to biology is how chemistry scales in complexity up to biological systems where there are innumerable possible pathways and competing processes. With the development of ultrabright electron and x-ray sources, it has been possible to literally light up atomic motions to directly observe the reduction in dimensionality in the barrier crossing region to a few key reaction modes. How do these chemical processes further couple to the surrounding protein or macromolecular assembly to drive biological functions? Optical methods to trigger photoactive biological processes are needed to probe this issue on the relevant timescales. However, the excitation conditions have been in the highly nonlinear regime, which questions the biological relevance of the observed structural dynamics.

摘要

连接化学和生物学的最重要的基本问题之一是,化学如何在复杂性上扩展到生物系统,在生物系统中存在无数可能的途径和竞争过程。随着超亮电子和 X 射线源的发展,已经有可能照亮原子运动,直接观察到势垒穿越区域的维度降低到几个关键的反应模式。这些化学过程如何进一步与周围的蛋白质或大分子组装体耦合,以驱动生物功能?需要光学方法来触发光活性生物过程,以在相关时间尺度上探究这个问题。然而,激发条件一直处于高度非线性状态,这使得所观察到的结构动力学的生物学相关性受到质疑。

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