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Protein microcrystal diffraction and the effects of radiation damage with ultra-high-flux synchrotron radiation.

机译:蛋白质微晶衍射和超高通量同步加速器辐射对辐射损伤的影响。

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摘要

By using ultra-high-flux synchrotron x-radiation from a wiggler source, good Laue diffraction data have been obtained from protein microcrystals of size 30 X 35 X 10 microns3, mounted wet in glass capillaries. At the flux level of 10(13)-10(14) photons per sec/mm2, the radiation damage is still low enough to allow a large survey of reciprocal space for a microcrystal and a complete survey for a normal-sized protein crystal. The development of sources for ultra-high-intensity synchrotron radiation is thus an important improvement in the technique for determination of structure through protein crystallography as well as in other cases where crystal size is often a limiting factor.
机译:通过使用来自摆动信号源的超高通量同步辐射X射线,已从湿安装在玻璃毛细管中的大小为30 X 35 X 10微米的蛋白质微晶获得了良好的劳厄衍射数据。在10(13)-10(14)光子/秒/ mm2的通量水平下,辐射损伤仍然很低,无法对微晶的倒数空间进行较大的测量,而对正常尺寸的蛋白晶体则可以进行完整的测量。因此,超高强度同步加速器辐射源的开发是通过蛋白质晶体学确定结构的技术以及在晶体大小通常是限制因素的其他情况下的重要改进。

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