Science Department, John Jay College of Criminal Justice, 524 West 59th street, New York, NY, 10019, USA.
Departamento de Química Orgánica, Facultade de Química, Universidade de Santiago de Compostela, 15782, Santiago, de Compostela, Spain.
Chemistry. 2018 Sep 6;24(50):13278-13289. doi: 10.1002/chem.201802038. Epub 2018 Aug 10.
Mitomycin C (MC), an antitumor drug, and decarbamoylmitomycin C (DMC), a derivative of MC, alkylate DNA and form deoxyguanosine monoadducts and interstrand crosslinks (ICLs). Interestingly, in mammalian culture cells, MC forms primarily deoxyguanosine adducts with a 1"-R stereochemistry at the guanine-mitosene bond (1"-α) whereas DMC forms mainly adducts with a 1"-S stereochemistry (1"-β). The molecular basis for the stereochemical configuration exhibited by DMC has been investigated using biomimetic synthesis. Here, we present the results of our studies on the monoalkylation of DNA by DMC. We show that the formation of 1"-β-deoxyguanosine adducts requires bifunctional reductive activation of DMC, and that monofunctional activation only produces 1"-α-adducts. The stereochemistry of the deoxyguanosine adducts formed is also dependent on the regioselectivity of DNA alkylation and on the overall DNA CG content. Additionally, we found that temperature plays a determinant role in the regioselectivity of duplex DNA alkylation by mitomycins: At 0 °C, both deoxyadenosine (dA) and deoxyguanosine (dG) alkylation occur whereas at 37 °C, mitomycins alkylate dG preferentially. The new reaction protocols developed in our laboratory to investigate DMC-DNA alkylation raise the possibility that oligonucleotides containing DMC 1"-β-deoxyguanosine adducts at a specific site may be synthesized by a biomimetic approach.
丝裂霉素 C(MC)是一种抗肿瘤药物,其脱羧基代谢产物 decarbamoylmitomycin C(DMC)可使 DNA 烷基化,并形成脱氧鸟嘌呤单加合物和链间交联(ICLs)。有趣的是,在哺乳动物培养细胞中,MC 主要在鸟嘌呤-丝裂霉素键(1"-α)处以 1"-R 立体化学形成脱氧鸟嘌呤加合物,而 DMC 主要以 1"-S 立体化学(1"-β)形成加合物。使用仿生合成方法研究了 DMC 立体化学构型的分子基础。在此,我们介绍了 DMC 对 DNA 的单烷基化研究结果。我们表明,1"-β-脱氧鸟苷加合物的形成需要 DMC 的双功能还原活化,而单功能活化仅产生 1"-α-加合物。脱氧鸟苷加合物的立体化学也取决于 DNA 烷基化的区域选择性和总体 DNA CG 含量。此外,我们发现温度在丝裂霉素双螺旋 DNA 烷基化的区域选择性中起决定作用:在 0°C 时,脱氧腺嘌呤(dA)和脱氧鸟嘌呤(dG)都发生烷基化,而在 37°C 时,丝裂霉素优先烷基化 dG。我们实验室开发的用于研究 DMC-DNA 烷基化的新反应方案提出了一种可能性,即通过仿生方法可能合成在特定位置含有 DMC 1"-β-脱氧鸟苷加合物的寡核苷酸。