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丝裂霉素形成的DNA加合物的形成、合成及立体化学构型相关影响因素的深入研究

Insight Into Factors Governing Formation, Synthesis and Stereochemical Configuration of DNA Adducts Formed by Mitomycins.

作者信息

Paz Manuel M, Champeil Elise

机构信息

Instituto de Materiais (iMATUS), Departamento de Química Orgánica, Facultad de Química, Universidade de Santiago de Compostela, Santiago de Compostela, A Coruña, 15782, Spain.

Department of sciences, John Jay College of Criminal Justice, 524 West 59th street, New York, NY, 10019, United States.

出版信息

Chem Rec. 2023 Jan;23(1):e202200193. doi: 10.1002/tcr.202200193. Epub 2022 Oct 17.

Abstract

Mitomycin C, (MC), an antitumor drug used in the clinics, is a DNA alkylating agent. Inert in its native form, MC is reduced to reactive mitosenes in cellulo which undergo nucleophilic attack by DNA bases to form monoadducts as well as interstrand crosslinks (ICLs). These properties constitute the molecular basis for the cytotoxic effects of the drug. The mechanism of DNA alkylation by mitomycins has been studied for the past 30 years and, until recently, the consensus was that drugs of the mitomycins family mainly target CpG sequences in DNA. However, that paradigm was recently challenged. Here, we relate the latest research on both MC and dicarbamoylmitomycin C (DMC), a synthetic derivative of MC which has been used to investigate the regioselectivity of mitomycins DNA alkylation as well as the relationship between mitomycins reductive activation pathways and DNA adducts stereochemical configuration. We also review the different synthetic routes to access mitomycins nucleoside adducts and oligonucleotides containing MC/DMC DNA adducts located at a single position. Finally, we briefly describe the DNA structural modifications induced by MC and DMC adducts and how site specifically modified oligonucleotides have been used to elucidate the role each adduct plays in the drugs cytotoxicity.

摘要

丝裂霉素C(MC)是一种临床使用的抗肿瘤药物,属于DNA烷化剂。MC在其天然形式下呈惰性,在细胞内被还原为具有反应活性的丝裂霉素,后者会受到DNA碱基的亲核攻击,形成单加合物以及链间交联(ICL)。这些特性构成了该药物细胞毒性作用的分子基础。在过去30年里,人们一直在研究丝裂霉素使DNA烷基化的机制,直到最近,普遍的观点是丝裂霉素家族药物主要靶向DNA中的CpG序列。然而,这一范式最近受到了挑战。在此,我们阐述了关于MC和二氨基甲酰丝裂霉素C(DMC,MC的一种合成衍生物,已被用于研究丝裂霉素DNA烷基化的区域选择性以及丝裂霉素还原激活途径与DNA加合物立体化学构型之间的关系)的最新研究。我们还综述了获得丝裂霉素核苷加合物以及含有位于单个位置的MC/DMC DNA加合物的寡核苷酸的不同合成途径。最后,我们简要描述了MC和DMC加合物诱导的DNA结构修饰,以及位点特异性修饰的寡核苷酸如何被用于阐明每种加合物在药物细胞毒性中所起的作用。

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