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Development of a shutterless continuous rotation method using an X-ray CMOS detector for protein crystallography

机译:使用X射线CMOS检测器进行蛋白质晶体学的无快门连续旋转方法的开发

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摘要

A new shutterless continuous rotation method using an X-ray complementary metal-oxide semiconductor (CMOS) detector has been developed for high-speed, precise data collection in protein crystallography. The principle of operation and the basic performance of the X-ray CMOS detector (Hamamatsu Photonics KK C10158DK) have been shown to be appropriate to the shutterless continuous rotation method. The data quality of the continuous rotation method is comparable to that of the conventional oscillation method using a CCD detector and, furthermore, the combination with fine ϕ slicing improves the data accuracy without increasing the data-collection time. The new method is more sensitive to diffraction intensity because of the narrow dynamic range of the CMOS detector. However, the strong diffraction spots were found to be precisely measured by recording them on successive multiple images by selecting an adequate rotation step. The new method has been used to successfully determine three protein structures by multi- and single-wavelength anomalous diffraction phasing and has thereby been proved applicable in protein crystallography. The apparatus and method may become a powerful tool at synchrotron protein crystallography beamlines with important potential across a wide range of X-ray wavelengths.
机译:已经开发出一种新的无快门连续旋转方法,该方法使用X射线互补金属氧化物半导体(CMOS)检测器来进行蛋白质晶体学中的高速,精确数据收集。 X射线CMOS检测器(滨松光子学KK C10158DK)的工作原理和基本性能已被证明适用于无快门连续旋转方法。连续旋转法的数据质量与使用CCD检测器的常规振荡法的数据质量相当,此外,与精细切片的结合提高了数据精度,而没有增加数据收集时间。由于CMOS检测器的动态范围较窄,因此新方法对衍射强度更敏感。但是,通过选择适当的旋转步长将强衍射光斑记录在连续的多个图像上,可以精确测量出强衍射光斑。该新方法已被用于通过多波长和单波长异常衍射定相成功确定三种蛋白质结构,并已被证明可用于蛋白质晶体学。该设备和方法可能成为同步加速器蛋白质结晶学束线的强大工具,在广泛的X射线波长范围内具有重要的潜力。

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