Jarzembska Katarzyna N, Řlepokura Katarzyna, Kamiński Radosław, Gutmann Matthias J, Dominiak Paulina M, Woźniak Krzysztof
Department of Chemistry, University of Warsaw, Żwirki i Wigury 101, 02-089 Warsaw, Poland.
Department of Chemistry, University of Wrocław, Joliot-Curie 14, 50-383 Wrocław, Poland.
Acta Crystallogr B Struct Sci Cryst Eng Mater. 2017 Aug 1;73(Pt 4):550-564. doi: 10.1107/S2052520617005534. Epub 2017 Jul 26.
Uridine, a nucleoside formed of a uracil fragment attached to a ribose ring via a β-N1-glycosidic bond, is one of the four basic components of ribonucleic acid. Here a new anhydrous structure and experimental charge density distribution analysis of a uridine-5'-monophosphate potassium salt, K(UMPH), is reported. The studied case constitutes the very first structure of a 5'-nucleotide potassium salt according to the Cambridge Structural Database. The excellent crystal quality allowed the collection of charge density data at various temperatures, i.e. 10, 100, 200 and 300 K on one single crystal. Crystal structure and charge density data were analysed thoroughly in the context of related literature-reported examples. Detailed analysis of the charge density distribution revealed elevated anharmonic motion of part of the uracil ring moiety relatively weakly interacting with the neighbouring species. The effect was manifested by alternate positive and negative residual density patterns observed for these atoms, which `disappear' at low temperature. It also occurred that the potassium cation, quite uniformly coordinated by seven O atoms from all molecular fragments of the UMPH anion, including the O atom from the ribofuranose ring, can be treated as spherical in the charge density model which was supported by theoretical calculations. Apart from the predominant electrostatic interactions, four relatively strong hydrogen bond types further support the stability of the crystal structure. This results in a compact and quite uniform structure (in all directions) of the studied crystal, as opposed to similar cases with layered architecture reported in the literature.
尿苷是一种核苷,由一个通过β - N1 - 糖苷键连接到核糖环上的尿嘧啶片段组成,是核糖核酸的四种基本成分之一。本文报道了尿苷 - 5'- 单磷酸钾盐K(UMPH)的一种新的无水结构及其实验电荷密度分布分析。根据剑桥结构数据库,所研究的案例构成了5'- 核苷酸钾盐的首个结构。优异的晶体质量使得能够在不同温度下(即10、100、200和300 K)在单个晶体上收集电荷密度数据。结合相关文献报道的实例,对晶体结构和电荷密度数据进行了全面分析。电荷密度分布的详细分析表明,尿嘧啶环部分与相邻物种相互作用较弱的部分存在增强的非谐运动。这种效应表现为这些原子观察到的正负交替的残余密度模式,在低温下“消失”。还发现,钾阳离子由UMPH阴离子的所有分子片段中的七个O原子相当均匀地配位,包括来自呋喃核糖环的O原子,在电荷密度模型中可以被视为球形,这得到了理论计算的支持。除了主要的静电相互作用外,四种相对较强的氢键类型进一步支持了晶体结构的稳定性。这导致所研究晶体在(各个方向上)具有紧凑且相当均匀的结构,这与文献中报道的具有层状结构的类似案例不同。