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2-硫代尿嘧啶核苷的脱硫:4-嘧啶酮核苷的构象研究。

Desulfurization of 2-thiouracil nucleosides: conformational studies of 4-pyrimidinone nucleosides.

机构信息

Institute of Organic Chemistry, Technical University of Lodz, Zeromskiego 116, 90-924 Lodz, Poland.

出版信息

Bioorg Med Chem. 2011 Apr 1;19(7):2443-9. doi: 10.1016/j.bmc.2011.02.008.

Abstract

4-Pyrimidinone ribofuranoside (H(2)o(4)U) and 4-pyrimidinone 2'-deoxyribofuranoside (dH(2)o(4)U) were synthesized by the oxidative desulfurization of parent 2-thiouracil nucleosides with m-chloroperbenzoic acid. The crystal structures of H(2)o(4)U and dH(2)o(4)U and their conformations in solution were determined and compared with corresponding 2-thiouracil and uracil nucleosides. The absence of a large 2-thiocarbonyl/2-carbonyl group in the nucleobase moiety results in C2'-endo puckering of the ribofuranose ring (S conformer) in the crystal structure of H(2)o(4)U, which is not typical of RNA nucleosides. Interestingly, the hydrogen bonding network in the crystals of dH(2)o(4)U stabilizes the sugar moiety conformation in the C3'-endo form (N conformer), rarely found in DNA nucleosides. In aqueous solution, dH(2)o(4)U reveals a similar population of the C2'-endo conformation (65%) to that of 2'-deoxy-2-thiouridine (62%), while the 62% population of the S conformer for H(2)o(4)U is significantly different from that of the parent 2-thiouridine, for which the N conformer is dominant (71%). Such a difference may be of biological importance, as the desulfurization process of natural tRNA 2-thiouridines may occur under conditions of oxidative stress in the cell and may influence the decoding process.

摘要

4-嘧啶酮核糖呋喃核苷(H(2)o(4)U)和 4-嘧啶酮 2'-脱氧核糖呋喃核苷(dH(2)o(4)U)是通过 m-氯过苯甲酸对母体 2-硫代尿嘧啶核苷进行氧化脱硫合成的。测定了 H(2)o(4)U 和 dH(2)o(4)U 的晶体结构及其在溶液中的构象,并与相应的 2-硫代尿嘧啶和尿嘧啶核苷进行了比较。在碱基部分缺少大的 2-硫代羰基/2-羰基导致核糖呋喃环呈 C2'-内式构象(S 构象),这在 RNA 核苷中并不典型。有趣的是,dH(2)o(4)U 晶体中的氢键网络稳定了糖部分的 C3'-内式构象(N 构象),这在 DNA 核苷中很少见。在水溶液中,dH(2)o(4)U 呈现出与 2'-脱氧-2-硫代尿苷相似的 C2'-内式构象(65%),而 H(2)o(4)U 的 S 构象的 62%种群与母体 2-硫代尿苷明显不同,后者以 N 构象为主(71%)。这种差异可能具有生物学意义,因为天然 tRNA 2-硫代尿苷的脱硫过程可能发生在细胞氧化应激条件下,可能会影响解码过程。

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