Hauptman-Woodward Medical Research Institute, 700 Ellicott Street, Buffalo, NY 14203, USA.
Acta Crystallogr D Struct Biol. 2023 Mar 1;79(Pt 3):198-205. doi: 10.1107/S2059798323001274. Epub 2023 Feb 27.
Diffraction-based structural methods contribute a large fraction of the biomolecular structural models available, providing a critical understanding of macromolecular architecture. These methods require crystallization of the target molecule, which remains a primary bottleneck in crystal-based structure determination. The National High-Throughput Crystallization Center at Hauptman-Woodward Medical Research Institute has focused on overcoming obstacles to crystallization through a combination of robotics-enabled high-throughput screening and advanced imaging to increase the success of finding crystallization conditions. This paper will describe the lessons learned from over 20 years of operation of our high-throughput crystallization services. The current experimental pipelines, instrumentation, imaging capabilities and software for image viewing and crystal scoring are detailed. New developments in the field and opportunities for further improvements in biomolecular crystallization are reflected on.
基于衍射的结构方法为可获得的生物分子结构模型做出了很大的贡献,为理解大分子结构提供了关键信息。这些方法需要目标分子的结晶,而结晶仍然是基于晶体的结构确定的主要瓶颈。豪普特曼-伍德沃德医学研究所的国家高通量结晶中心一直致力于通过机器人辅助高通量筛选和先进的成像相结合来克服结晶障碍,以提高寻找结晶条件的成功率。本文将介绍我们 20 多年来高通量结晶服务运作的经验教训。详细介绍了当前的实验流程、仪器、成像功能以及用于图像查看和晶体评分的软件。反映了该领域的新发展和生物分子结晶进一步改进的机会。