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半经验模型估计大蛋白晶体生长理想条件。

Semi-empirical model to estimate ideal conditions for the growth of large protein crystals.

机构信息

Confocal Science Inc., Hayakawa 2nd Building 7F, 2-12-2 Iwamoto-cho, Chiyoda-ku, Tokyo 101-0032, Japan.

Maruwa Foods and Biosciences Inc., 170-1 Tsutsui-cho, Yamatokoriyama, Nara 639-1123, Japan.

出版信息

Acta Crystallogr D Struct Biol. 2020 Dec 1;76(Pt 12):1174-1183. doi: 10.1107/S205979832001445X. Epub 2020 Nov 26.

Abstract

A large high-quality crystal is required to specify the positions of H atoms in neutron structural analysis. Consequently, several methods have been proposed for obtaining such large crystals, and theoretical considerations for growing them have been presented. However, further investigation is required to obtain a numerical model that can provide quantitative experimental conditions for obtaining a single large crystal. In the case of protein crystallization experiments, the amount of sample is often limited. Therefore, it is more realistic to make a rough estimation from a small number of experiments. This paper proposes a method of estimating the optimum experimental conditions for the growth of large protein crystals by performing a small number of experiments using a micro-batch method and reporting a numerical model based on nucleation theory and a linear approximation of the crystal-growth rate. Specifically, micro-batch experiments are performed to provide the empirical parameters for the model and to help to estimate the conditions for the growth of a crystal of a predetermined size using a certain sample concentration and volume. This method is offered as a step on the path towards efficiently and rationally producing large crystals that can be subjected to neutron diffraction without depending on luck or on performing many experiments. It is expected to contribute to drug design and the elucidation of protein molecular functions and mechanisms by obtaining positional information on H atoms in the protein molecule, which is an advantage of neutron diffraction.

摘要

在中子结构分析中,需要大而高质量的晶体来确定 H 原子的位置。因此,已经提出了几种获得这种大晶体的方法,并提出了生长它们的理论考虑。然而,需要进一步的研究来获得一个可以提供获得单个大晶体的定量实验条件的数值模型。在蛋白质结晶实验中,样品的数量通常是有限的。因此,从少数实验中进行粗略估计更为现实。本文提出了一种通过使用微批量方法进行少数实验来估计生长大蛋白质晶体的最佳实验条件的方法,并报告了基于成核理论和晶体生长速率线性逼近的数值模型。具体来说,进行微批量实验以提供模型的经验参数,并帮助估计使用一定样品浓度和体积生长预定大小晶体的条件。该方法旨在提供一种途径,无需依赖运气或进行多次实验,就能有效地和合理地生产可进行中子衍射的大晶体,这是中子衍射的优势。它有望通过获得蛋白质分子中 H 原子的位置信息来促进药物设计和阐明蛋白质分子的功能和机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c54a/7709197/960d1230b84b/d-76-01174-fig9.jpg

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