第四代同步加速器微秒x射线脉冲测定大分子结构的进展。

IF 5.9 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Julien Orlans, Samuel L Rose, Gavin Ferguson, Marcus Oscarsson, Alejandro Homs Puron, Antonia Beteva, Samuel Debionne, Pascal Theveneau, Nicolas Coquelle, Jerome Kieffer, Paolo Busca, Jeremy Sinoir, Victor Armijo, Marcos Lopez Marrero, Franck Felisaz, Gergely Papp, Herve Gonzalez, Hugo Caserotto, Fabien Dobias, Jonathan Gigmes, Guillaume Lebon, Shibom Basu, Daniele de Sanctis
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引用次数: 0

摘要

序列大分子晶体学已成为揭示生物大分子室温结构和进行时间分辨研究的有力手段。ID29是ESRF第四代同步加速器的旗舰光束线,是世界上第一个能够在室温下以高重复率提供高亮度微秒x射线脉冲的同步加速器光束线,用于生物大分子的结构测定。微秒曝光时间,创新的光束特性和适应性强的样品环境的基本组合提供了高质量的完整数据,即使从极少量的晶体材料,使我们统称为串行微秒晶体学(SµX)。在各种模型系统验证了不同样品递送方法的使用后,我们将SµX应用于一个完整的膜受体,其中只有几千张衍射图像足以获得拮抗剂isstradefylin结合的A2A受体构象的完全可解释的电子密度图,从而提供了拮抗剂结合模式的访问。正如ID29所展示的那样,SµX将很快在全球范围内即将到来的第四代同步加速器源中找到其广泛的适用性,并在时间分辨SµX方面开辟了新的前沿。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advancing macromolecular structure determination with microsecond X-ray pulses at a 4th generation synchrotron.

Serial macromolecular crystallography has become a powerful method to reveal room temperature structures of biological macromolecules and perform time-resolved studies. ID29, a flagship beamline of the ESRF 4th generation synchrotron, is the first synchrotron beamline in the world capable of delivering high brilliance microsecond X-ray pulses at high repetition rate for the structure determination of biological macromolecules at room temperature. The cardinal combination of microsecond exposure times, innovative beam characteristics and adaptable sample environment provides high quality complete data, even from an exceptionally small amount of crystalline material, enabling what we collectively term serial microsecond crystallography (SµX). After validating the use of different sample delivery methods with various model systems, we applied SµX to an integral membrane receptor, where only a few thousands diffraction images were sufficient to obtain a fully interpretable electron density map for the antagonist istradefylline-bound A2A receptor conformation, providing access to the antagonist binding mode. SµX, as demonstrated at ID29, will quickly find its broad applicability at upcoming 4th generation synchrotron sources worldwide and opens a new frontier in time-resolved SµX.

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来源期刊
Communications Chemistry
Communications Chemistry Chemistry-General Chemistry
CiteScore
7.70
自引率
1.70%
发文量
146
审稿时长
13 weeks
期刊介绍: Communications Chemistry is an open access journal from Nature Research publishing high-quality research, reviews and commentary in all areas of the chemical sciences. Research papers published by the journal represent significant advances bringing new chemical insight to a specialized area of research. We also aim to provide a community forum for issues of importance to all chemists, regardless of sub-discipline.
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