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Single-crystal Raman spectroscopy and X-ray crystallography at beamline X26-C of the NSLS

机译:NSLS光束线X26-C的单晶拉曼光谱和X射线晶体学

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摘要

Three-dimensional structures derived from X-ray diffraction of protein crystals provide a wealth of information. Features and interactions important for the function of macromolecules can be deduced and catalytic mechanisms postulated. Still, many questions can remain, for example regarding metal oxidation states and the interpretation of ‘mystery density’, i.e. ambiguous or unknown features within the electron density maps, especially at ∼2 Å resolutions typical of most macromolecular structures. Beamline X26-C at the National Synchrotron Light Source (NSLS), Brookhaven National Laboratory (BNL), provides researchers with the opportunity to not only determine the atomic structure of their samples but also to explore the electronic and vibrational characteristics of the sample before, during and after X-ray diffraction data collection. When samples are maintained under cryo-conditions, an opportunity to promote and follow photochemical reactions in situ as a function of X-ray exposure is also provided. Plans are in place to further expand the capabilities at beamline X26-C and to develop beamlines at NSLS-II, currently under construction at BNL, which will provide users access to a wide array of complementary spectroscopic methods in addition to high-quality X-ray diffraction data.
机译:从蛋白质晶体的X射线衍射得出的三维结构提供了大量信息。可以推断出对大分子功能重要的特征和相互作用,并推测催化机理。尽管如此,仍然存在许多问题,例如关于金属的氧化态和“神秘密度”的解释,即电子密度图中的模棱两可或未知特征,尤其是大多数大分子结构的典型2〜Å分辨率。位于布鲁克海文国家实验室(BNL)的国家同步加速器光源(NSLS)的Beamline X26-C为研究人员提供了不仅确定样品原子结构的机会,而且还可以探索样品的电子和振动特性, X射线衍射数据收集期间和之后。当样品保持在低温条件下时,还提供了根据X射线曝光促进和跟踪光化学反应的机会。已经制定了计划,进一步扩展X26-C光束线的功能,并开发BNL目前正在建设的NSLS-II的光束线,这将为用户提供除高质量X-X射线之外的各种互补光谱方法射线衍射数据。

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