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含N1-2'-脱氧肌苷-乙基-N3-胸苷链间交联的DNA的合成与表征:1,3-双-(2-氯乙基)-1-亚硝基脲形成的交联的结构模拟物

Synthesis and characterization of DNA containing an N1-2'-deoxyinosine-ethyl-N3-thymidine interstrand cross-link: a structural mimic of the cross-link formed by 1,3-bis-(2-chloroethyl)-1-nitrosourea.

作者信息

Wilds Christopher J, Xu Fei, Noronha Anne M

机构信息

Department of Chemistry and Biochemistry, Concordia UniVersity, Montreal, Quebec, Canada.

出版信息

Chem Res Toxicol. 2008 Mar;21(3):686-95. doi: 10.1021/tx700422h. Epub 2008 Feb 8.

Abstract

Interstrand cross-links, which are generated by chemotherapeutic treatment with bis-alkylating agents, exert their therapeutic effect by connecting the nucleobases of adjacent DNA strands together and represent some of the most threatening forms of damage suffered by genomic DNA. However, one of the reasons for treatment failure using these agents is due to enhanced repair of this DNA damage. The pursuit of understanding the repair of interstrand cross-links by repair systems has necessitated the synthesis of sufficient quantities of such damaged DNA. We report the synthesis of a site-specific interstrand cross-linked duplex containing an ethylene-bridged N (1)-2'-deoxyinosine- N (3)-thymidine base pair prepared by solution and solid-phase synthesis as a mimic for the lesion formed by the therapeutic agent 1,3-bis-(2-chloroethyl)-1-nitrosourea using both a phosphoramidite and a bis-phosphoramidite approach. UV thermal denaturation experiments revealed that this cross-linked duplex was stabilized by 52 degrees C relative to the noncross-linked control, and circular dichroism studies indicated little deviation from a B-form structure compared to a duplex that contained a G-C base pair at the same position. Molecular models of the cross-linked duplex that were geometry optimized using the AMBER forcefield also suggest that this lesion induces minimal distortion in B-form DNA. This modified oligonucleotide will be useful for studies related to the investigation of interstrand cross-linked DNA repair.

摘要

链间交联是由双烷基化剂化疗处理产生的,它通过将相邻DNA链的核碱基连接在一起发挥治疗作用,是基因组DNA遭受的一些最具威胁性的损伤形式。然而,使用这些药物治疗失败的原因之一是这种DNA损伤的修复增强。为了理解修复系统对链间交联的修复,需要合成足够数量的这种受损DNA。我们报告了一种位点特异性链间交联双链体的合成,该双链体包含一个乙烯桥连的N(1)-2'-脱氧肌苷-N(3)-胸腺嘧啶碱基对,通过溶液和固相合成制备,作为治疗剂1,3-双-(2-氯乙基)-1-亚硝基脲形成的损伤的模拟物,采用了亚磷酰胺和双亚磷酰胺方法。紫外热变性实验表明,与非交联对照相比,这种交联双链体的稳定性提高了52℃,圆二色性研究表明,与在相同位置含有G-C碱基对的双链体相比,其B型结构的偏差很小。使用AMBER力场进行几何优化的交联双链体的分子模型也表明,这种损伤在B型DNA中引起的扭曲最小。这种修饰的寡核苷酸将有助于与链间交联DNA修复研究相关的研究。

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