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通过湿度控制改善衍射:一种与X射线束线兼容的新型装置。

Improving diffraction by humidity control: a novel device compatible with X-ray beamlines.

作者信息

Sanchez-Weatherby Juan, Bowler Matthew W, Huet Julien, Gobbo Alexandre, Felisaz Franck, Lavault Bernard, Moya Raphael, Kadlec Jan, Ravelli Raimond B G, Cipriani Florent

机构信息

Diamond Light Source Ltd, Diamond House DR1.40, Harwell Science and Innovation Campus, RAL, Chilton, Didcot, Oxfordshire OX11 0DE, England.

出版信息

Acta Crystallogr D Biol Crystallogr. 2009 Dec;65(Pt 12):1237-46. doi: 10.1107/S0907444909037822. Epub 2009 Nov 17.

Abstract

Dehydration of protein crystals is rarely used, despite being a post-crystallization method that is useful for the improvement of crystal diffraction properties, as it is difficult to reproduce and monitor. A novel device for hydration control of macromolecular crystals in a standard data-collection environment has been developed. The device delivers an air stream of precise relative humidity that can be used to alter the amount of water in macromolecular crystals. The device can be rapidly installed and is fully compatible with most standard synchrotron X-ray beamlines. Samples are mounted in cryoloops and the progress of dehydration can be monitored both optically and by the acquisition of diffraction images. Once the optimal hydration level has been obtained, cryocooling is easy to achieve by hand or by using a sample changer. The device has been thoroughly tested on several ESRF beamlines and is available to users.

摘要

尽管蛋白质晶体脱水作为一种有助于改善晶体衍射特性的结晶后方法,但由于其难以重现和监测,因此很少被使用。现已开发出一种用于在标准数据收集环境中控制大分子晶体水合作用的新型装置。该装置可输送精确相对湿度的气流,用于改变大分子晶体中的水量。该装置可快速安装,并且与大多数标准同步加速器X射线光束线完全兼容。样品安装在低温环中,脱水过程可通过光学方式以及采集衍射图像进行监测。一旦达到最佳水合水平,通过手动或使用样品更换器即可轻松实现低温冷却。该装置已在欧洲同步辐射装置(ESRF)的多条光束线上进行了全面测试,可供用户使用。

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