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与d(GAGCTC)₂和d(GGAAGCTTCC)₂结合的HO₂-Co(III)博来霉素A₂的结构:钴和铁博来霉素的结构-反应性关系

Structures of HO(2)-Co(III)bleomycin A(2) bound to d(GAGCTC)(2) and d(GGAAGCTTCC)(2): structure-reactivity relationships of Co and Fe bleomycins.

作者信息

Zhao Chunqing, Xia Chuanwu, Mao Qunkai, Försterling Holger, DeRose Eugene, Antholine William E, Subczynski Witold K, Petering David H

机构信息

Department of Chemistry, University of Wisconsin-Milwaukee, Milwaukee, WI 53201, USA.

出版信息

J Inorg Biochem. 2002 Jul 25;91(1):259-68. doi: 10.1016/s0162-0134(02)00420-8.

Abstract

HO(2)-Co(III)bleomycin is a model for HO(2)-Fe(III)bleomycin, which initiates single and double strand cleavage of DNA. In order to enlarge the understanding of its structure and reactivity, three-dimensional structures of HO(2)-Co(III)bleomycin bound to two DNA oligomers, d(GAGCTC)(2) (I) and d(GGAAGCTTCC)(2) (II), that have 5'-GC-3' binding sites, have been determined by nuclear magnetic resonance (NMR) methods. Besides previously recognized determinants of binding selectivity, a probable hydrogen bond was detected between the pyrimidinyl acetamido NH(2) and the carbonyl of cytosine base paired to G at the recognition site. Another hydrogen bond between the NH of the dimethylsulfonium R group and N7 of guanine opposite cytosine at the GC site may contribute to specification of the pyrimidine. Substitution of G with inosine shifted HO(2)-Co(III)Blm A(2)[bond]I and Fe(III)Blm[bond]I into fast exchange on the NMR time scale, supporting the role of the 2-amino group in site specification for each molecule. The conformationally stable metal-domain linker established a close-packed adduct with the minor groove in which the hydroperoxide ligand occupies a sterically constrained pocket that is isolated from the solvent. The hydroperoxide group is directed toward one of the two cytosine H4' hydrogens but is sterically blocked from access to the other by the drug. These findings enlarge the structural understanding of selective binding of Co(III)/Fe(III)Blm species at G-pyrimidine sites. They also rationalize the instability of a number of ligands bound to Co(III)/Fe(III)Blm at specific binding sequences and the relative unreactivity of Fe(III)Blm[bond]I with ascorbate as well as its lack of interaction with spin labels.

摘要

羟基自由基 - 钴(III)博来霉素是羟基自由基 - 铁(III)博来霉素的模型,后者可引发DNA的单链和双链断裂。为了更深入了解其结构和反应活性,通过核磁共振(NMR)方法确定了与两个具有5'-GC-3'结合位点的DNA寡聚物d(GAGCTC)(2)(I)和d(GGAAGCTTCC)(2)(II)结合的羟基自由基 - 钴(III)博来霉素的三维结构。除了先前公认的结合选择性决定因素外,在识别位点与G碱基配对的胞嘧啶的嘧啶基乙酰氨基NH₂与羰基之间检测到一个可能的氢键。二甲基锍R基团的NH与GC位点上与胞嘧啶相对的鸟嘌呤的N7之间的另一个氢键可能有助于嘧啶的特异性识别。用次黄嘌呤取代G使羟基自由基 - 钴(III)博来霉素A(2)[结合]I和铁(III)博来霉素[结合]I在NMR时间尺度上进入快速交换,支持了2 - 氨基基团在每个分子的位点特异性识别中的作用。构象稳定的金属结构域连接体与小沟形成紧密堆积的加合物,其中氢过氧化物配体占据一个与溶剂隔离的空间受限口袋。氢过氧化物基团指向两个胞嘧啶H4'氢原子之一,但被药物在空间上阻碍无法接近另一个。这些发现扩展了对钴(III)/铁(III)博来霉素物种在G - 嘧啶位点选择性结合的结构理解。它们还解释了许多配体在特定结合序列与钴(III)/铁(III)博来霉素结合时的不稳定性,以及铁(III)博来霉素[结合]I与抗坏血酸缺乏反应活性及其与自旋标记缺乏相互作用的原因。

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