Suppr超能文献

估算同步加速器和X射线自由电子激光装置中时间分辨X射线溶液散射数据的信号与噪声

Estimating signal and noise of time-resolved X-ray solution scattering data at synchrotrons and XFELs.

作者信息

Kim Jungmin, Kim Jong Goo, Ki Hosung, Ahn Chi Woo, Ihee Hyotcherl

机构信息

Department of Chemistry and KI for the BioCentury, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.

出版信息

J Synchrotron Radiat. 2020 May 1;27(Pt 3):633-645. doi: 10.1107/S1600577520002738. Epub 2020 Mar 31.

Abstract

Elucidating the structural dynamics of small molecules and proteins in the liquid solution phase is essential to ensure a fundamental understanding of their reaction mechanisms. In this regard, time-resolved X-ray solution scattering (TRXSS), also known as time-resolved X-ray liquidography (TRXL), has been established as a powerful technique for obtaining the structural information of reaction intermediates and products in the liquid solution phase and is expected to be applied to a wider range of molecules in the future. A TRXL experiment is generally performed at the beamline of a synchrotron or an X-ray free-electron laser (XFEL) to provide intense and short X-ray pulses. Considering the limited opportunities to use these facilities, it is necessary to verify the plausibility of a target experiment prior to the actual experiment. For this purpose, a program has been developed, referred to as S-cube, which is short for a Solution Scattering Simulator. This code allows the routine estimation of the shape and signal-to-noise ratio (SNR) of TRXL data from known experimental parameters. Specifically, S-cube calculates the difference scattering curve and the associated quantum noise on the basis of the molecular structure of the target reactant and product, the target solvent, the energy of the pump laser pulse and the specifications of the beamline to be used. Employing a simplified form for the pair-distribution function required to calculate the solute-solvent cross term greatly increases the calculation speed as compared with a typical TRXL data analysis. Demonstrative applications of S-cube are presented, including the estimation of the expected TRXL data and SNR level for the future LCLS-II HE beamlines.

摘要

阐明小分子和蛋白质在液相溶液中的结构动力学对于确保从根本上理解它们的反应机制至关重要。在这方面,时间分辨X射线溶液散射(TRXSS),也称为时间分辨X射线液体成像(TRXL),已成为一种强大的技术,用于获取液相溶液中反应中间体和产物的结构信息,并有望在未来应用于更广泛的分子。TRXL实验通常在同步加速器或X射线自由电子激光(XFEL)的光束线上进行,以提供强烈且短暂的X射线脉冲。考虑到使用这些设施的机会有限,有必要在实际实验之前验证目标实验的合理性。为此,已经开发了一个程序,称为S-cube,它是溶液散射模拟器的缩写。该代码允许根据已知的实验参数对TRXL数据的形状和信噪比(SNR)进行常规估计。具体而言,S-cube根据目标反应物和产物的分子结构、目标溶剂、泵浦激光脉冲的能量以及要使用的光束线的规格来计算差分散射曲线和相关的量子噪声。与典型的TRXL数据分析相比,采用计算溶质 - 溶剂交叉项所需的对分布函数的简化形式大大提高了计算速度。展示了S-cube的示范性应用,包括对未来LCLS-II HE光束线预期的TRXL数据和SNR水平的估计。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验