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Development of a microsecond X-ray protein footprinting facility at the Advanced Light Source

机译:在Advanced Light Source上开发了微秒的X射线蛋白质印迹设备

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摘要

X-ray footprinting (XF) is an important structural biology tool used to determine macromolecular conformations and dynamics of both nucleic acids and proteins in solution on a wide range of timescales. With the impending shut-down of the National Synchrotron Light Source, it is ever more important that this tool continues to be developed at other synchrotron facilities to accommodate XF users. Toward this end, a collaborative XF program has been initiated at the Advanced Light Source using the white-light bending-magnet beamlines 5.3.1 and 3.2.1. Accessibility of the microsecond time regime for protein footprinting is demonstrated at beamline 5.3.1 using the high flux density provided by a focusing mirror in combination with a micro-capillary flow cell. It is further reported that, by saturating samples with nitrous oxide, the radiolytic labeling efficiency is increased and the imprints of bound versus bulk water can be distinguished. These results both demonstrate the suitability of the Advanced Light Source as a second home for the XF experiment, and pave the way for obtaining high-quality structural data on complex protein samples and dynamics information on the microsecond timescale.
机译:X射线足迹(XF)是一种重要的结构生物学工具,用于在很宽的时间范围内确定溶液中核酸和蛋白质的大分子构象和动力学。随着国家同步加速器光源即将关闭,越来越重要的一点是,继续在其他同步加速器设施中开发此工具以适应XF用户。为此,已经在高级光源处启动了协作XF程序,该程序使用了白光弯曲磁铁光束线5.3.1和3.2.1。在束线5.3.1上使用聚焦镜与微毛细管流通池相结合的高通量密度证明了微秒级时间段用于蛋白质足迹的可及性。进一步报道,通过用一氧化二氮使样品饱和,可以提高放射标记效率,并且可以区分结合水和散装水的烙印。这些结果既证明了高级光源作为XF实验的第二故乡的适用性,也为获得复杂蛋白质样品上的高质量结构数据和微秒时标上的动力学信息铺平了道路。

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