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乙酸配体与腺苷的结合:低温核磁共振研究。

Binding of an acetic acid ligand to adenosine: a low-temperature NMR study.

作者信息

Basílio Janke Eline M, Limbach Hans-Heinrich, Weisz Klaus

机构信息

Institut für Chemie, Freie Universität Berlin, Takustrasse 3, D-14195 Berlin, Germany.

出版信息

J Am Chem Soc. 2004 Feb 25;126(7):2135-41. doi: 10.1021/ja038630z.

Abstract

Binding of an acetic acid (HAc) ligand to adenosine (A) was studied by (1)H NMR spectroscopic techniques. Using a low-melting deuterated Freon mixture as solvent, liquid-state measurements could be performed in the slow exchange regime and allowed a detailed characterization of the formed associates. Thus, at 128 K, trimolecular complexes A.HAc(2) and A(2).HAc with both Watson-Crick and Hoogsteen sites of the central adenine base occupied coexist in various amounts depending on the adenosine:acetic acid molar ratio. Whereas the carboxylic acid OH proton is located closer to the acid for all hydrogen bonds formed, a more deshielded proton at the Watson-Crick site is evidence for a stronger hydrogen bond as compared to the Hoogsteen interaction. For the binding of acetic acid to an adenosine-thymidine base pair in either a Watson-Crick or a Hoogsteen configuration, hydrogen bonds to the available adenine binding site are strengthened as compared to the corresponding hydrogen bonds in the A.HAc(2) complex.

摘要

通过¹H NMR光谱技术研究了乙酸(HAc)配体与腺苷(A)的结合。使用低熔点氘代氟利昂混合物作为溶剂,可以在慢交换区域进行液态测量,并对形成的缔合物进行详细表征。因此,在128 K时,中心腺嘌呤碱基的沃森-克里克位点和 hoogsteen 位点均被占据的三分子复合物A.HAc(2)和A(2).HAc根据腺苷与乙酸的摩尔比以不同数量共存。尽管对于形成的所有氢键,羧酸OH质子更靠近酸,但与Hoogsteen相互作用相比,沃森-克里克位点处质子的去屏蔽程度更高,这证明氢键更强。对于乙酸与处于沃森-克里克或Hoogsteen构型的腺苷-胸苷碱基对的结合,与A.HAc(2)复合物中的相应氢键相比,与可用腺嘌呤结合位点的氢键得到了加强。

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