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一种设计的吡咯烷无碱基位点类似物与多种DNA糖基化酶的特异性结合。

Specific binding of a designed pyrrolidine abasic site analog to multiple DNA glycosylases.

作者信息

Schärer O D, Nash H M, Jiricny J, Laval J, Verdine G L

机构信息

Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138, USA.

出版信息

J Biol Chem. 1998 Apr 10;273(15):8592-7. doi: 10.1074/jbc.273.15.8592.

Abstract

In the base excision DNA repair pathway, DNA glycosylases recognize damaged bases in DNA and catalyze their excision through hydrolysis of the N-glycosidic bond. Attempts to understand the structural basis for DNA damage recognition by DNA glycosylases have been hampered by the short-lived association of these enzymes with their DNA substrates. To overcome this problem, we have employed an approach involving the design and synthesis of inhibitors that form stable complexes with DNA glycosylases, which can then be studied biochemically and structurally. We have previously reported that double-stranded DNA containing a pyrrolidine abasic site analog (PYR) forms an extremely stable complex with the DNA glycosylase AlkA and potently inhibits the reaction catalyzed by the enzyme (Schärer, O. D., Ortholand, J.-Y., Ganesan, A., Ezaz-Nikpay, K., and Verdine, G. L. (1995) J. Am. Chem. Soc. 117, 6623-6624). Here we investigate the interaction of this inhibitor with a variety of additional DNA glycosylases. With the exception of uracil DNA glycosylase all the glycosylases tested bind specifically to PYR-containing oligonucleotides. By comparing the interaction of DNA glycosylases with PYR and the structurally related tetrahydrofuran abasic site analog, we assess the importance of the positively charged ammonium group of the pyrrolidine in binding to the active site of these enzymes. Such a general inhibitor of DNA glycosyases provides a valuable tool to study stable complexes of these enzymes bound to substrate-like molecules.

摘要

在碱基切除DNA修复途径中,DNA糖基化酶识别DNA中的受损碱基,并通过水解N-糖苷键催化其切除。由于这些酶与其DNA底物的短暂结合,人们对DNA糖基化酶识别DNA损伤的结构基础的理解受到了阻碍。为了克服这个问题,我们采用了一种方法,即设计和合成与DNA糖基化酶形成稳定复合物的抑制剂,然后对其进行生化和结构研究。我们之前报道过,含有吡咯烷无碱基位点类似物(PYR)的双链DNA与DNA糖基化酶AlkA形成极其稳定的复合物,并强烈抑制该酶催化的反应(Schärer, O. D., Ortholand, J.-Y., Ganesan, A., Ezaz-Nikpay, K., and Verdine, G. L. (1995) J. Am. Chem. Soc. 117, 6623-6624)。在这里,我们研究了这种抑制剂与多种其他DNA糖基化酶的相互作用。除尿嘧啶DNA糖基化酶外,所有测试的糖基化酶都特异性结合含PYR的寡核苷酸。通过比较DNA糖基化酶与PYR以及结构相关的四氢呋喃无碱基位点类似物的相互作用,我们评估了吡咯烷带正电荷的铵基团在与这些酶的活性位点结合中的重要性。这种DNA糖基化酶的通用抑制剂为研究这些酶与底物样分子结合的稳定复合物提供了一个有价值的工具。

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