黄嘌呤
衍射
电子衍射
结晶学
鸟嘌呤
次黄嘌呤
化学
晶体结构
单晶
材料科学
选区衍射
光学
物理
生物化学
酶
核苷酸
基因
作者
Helen W. Leung,Royston C. B. Copley,Giulio I. Lampronti,Sarah J. Day,Lucy K. Saunders,Duncan N. Johnstone,Paul A. Midgley
标识
DOI:10.1021/acs.cgd.4c01594
摘要
Three-dimensional (3D) electron diffraction (3D-ED) techniques can be used for structure determination, circumventing challenges posed to conventional and bulk X-ray diffraction techniques such as submicrometer-sized crystals, the strong effects of texture, the presence of defects, and polyphasic samples. Such challenges previously prevented the structure solution of xanthine, a purine base chemically similar to guanine that may also be found in organisms. In this work, we use 3D-ED to elucidate the crystal structure of xanthine. The electron diffraction data obtained from a single microcrystal is also of sufficient quality to determine hydrogen positions, confirming the presence of the 7H-tautomer, as expected. This study highlights the potential for the use of 3D-ED on biogenic nanocrystals, for example opening opportunities to understand the links between crystal anisotropy, birefringence, and organism characteristics.
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