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脱氧腺苷可复制非极性等排体的结构与碱基配对特性

Structure and Base Pairing Properties of a Replicable Nonpolar Isostere for Deoxyadenosine.

作者信息

Guckian Kevin M, Morales Juan C, Kool Eric T

机构信息

Department of Chemistry, University of Rochester, Rochester, New York 14627.

出版信息

J Org Chem. 1998;63(26):9652-9656. doi: 10.1021/jo9805100.

Abstract

We report the synthesis, structure, and pairing properties in DNA of an isostere for deoxyadenosine which lacks all hydrogen-bonding functionality on the Watson-Crick pairing edge. A deoxyribo-nucleoside derivative of 4-methylbenzimidazole (1), which was recently shown to be inserted into DNA by Klenow DNA polymerase (Morales, J. C.; Kool, E. T. Nature Struct. Biol.1998, 5, 950), is prepared from 1-chloro-2-deoxy-3,5-bis-O-p-toluoyl-α-D-erythro-pentofuranose. The X-ray crystal structure of the nucleoside confirms that the compound is a close steric match for deoxyadenosine (2), although the methylbenzimidazole base is in the syn glycosidic orientation in the crystal. In D(2)O solution, 1H NMR studies show that 1 and 2 have similar (60% vs 70% S) sugar conformations and anti glycosidic orientations. Compound 1 is incorporated into a 12mer oligodeoxynucleotide and its base pairing properties in duplexes assessed by thermal denaturation. The results show that 1 has low affinity for the four natural bases but displays a stronger preference for being situated opposite a nonpolar difluorotoluene nucleoside analogue of thymine (3). The structural similarities of 1 and 2, combined with recent polymerase studies, add support to the hypothesis that steric complementarity plays an important role in base pair replication by polymerase enzymes and that Watson-Crick hydrogen bonds are not absolute requirements. Compound 1 should have significant utility as a probe of the importance of electrostatic effects in protein-DNA and protein-nucleotide binding as well as in DNA replication.

摘要

我们报道了一种脱氧腺苷等电子体的合成、结构及其在DNA中的配对性质,该等电子体在沃森-克里克配对边上缺乏所有氢键功能。4-甲基苯并咪唑的脱氧核糖核苷衍生物(1),最近被证明可被克列诺夫DNA聚合酶插入DNA中(莫拉莱斯,J.C.;库尔,E.T.《自然结构生物学》1998年,5卷,950页),它由1-氯-2-脱氧-3,5-双-O-对甲苯酰基-α-D-赤藓糖戊呋喃糖制备而成。核苷的X射线晶体结构证实该化合物在空间上与脱氧腺苷(2)紧密匹配,尽管甲基苯并咪唑碱基在晶体中处于顺式糖苷键取向。在D₂O溶液中,¹H NMR研究表明1和2具有相似的(60%对70% S)糖构象和反式糖苷键取向。化合物1被掺入一个12聚体寡脱氧核苷酸中,并通过热变性评估其在双链体中的碱基配对性质。结果表明,1对四种天然碱基的亲和力较低,但对与胸腺嘧啶的非极性二氟甲苯核苷类似物(3)相对时表现出更强的偏好。1和2的结构相似性,结合最近的聚合酶研究,为空间互补性在聚合酶催化的碱基对复制中起重要作用以及沃森-克里克氢键并非绝对必要条件这一假说提供了支持。化合物1作为研究静电效应在蛋白质-DNA和蛋白质-核苷酸结合以及DNA复制中的重要性的探针应该具有显著的用途。

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