Rios-Font Raquel, Rodríguez-Santiago Luis, Bertran Joan, Sodupe Mariona
Departament de Química, Universitat Autonoma de Barcelona, Bellaterra (Barcelona), Spain.
J Phys Chem B. 2007 May 31;111(21):6071-7. doi: 10.1021/jp070822j. Epub 2007 May 4.
The influence of N7 protonation on the mechanism of the N-glycosidic bond hydrolysis in 2'-deoxyguanosine has been studied using density functional theory (DFT) methods. For the neutral system, two different pathways (with retention and inversion of configuration at the C1' anomeric carbon) have been found, both of them consisting of two steps and involving the formation of a dihydrofurane-like intermediate. The Gibbs free energy barrier for the first step is very high in both cases (53 and 46 kcal/mol for the process with inversion and with retention, respectively). However, the N7-protonated system shows a very different mechanism which consists of two steps. The first one leads to the formation of an oxacarbenium ion intermediate, with a Gibbs free energy barrier of 27 kcal/mol, and the second one corresponds to the nucleophilic attack of the water molecule to the oxacarbenium ion and takes place with a barrier of 1.3 kcal/mol. Thus, these results agree with a stepwise SN1 mechanism (DN*AN), with a discrete intermediate formed between the leaving group and the nucleophile approach, and show that N7 protonation strongly catalyzes the hydrolysis of the N-glycosidic bond, making the guanine a better leaving group. Finally, kinetic isotope effects have been calculated for the protonated system, and the results obtained are in very good agreement with experimental data for analogous systems.
利用密度泛函理论(DFT)方法研究了N7质子化对2'-脱氧鸟苷中N-糖苷键水解机理的影响。对于中性体系,发现了两条不同的途径(在C1'异头碳处构型保留和构型翻转),它们均由两步组成,并涉及类似二氢呋喃中间体的形成。在两种情况下,第一步的吉布斯自由能垒都非常高(构型翻转和构型保留过程分别为53和46 kcal/mol)。然而,N7质子化体系显示出一种非常不同的机理,该机理由两步组成。第一步导致形成氧鎓离子中间体,吉布斯自由能垒为27 kcal/mol,第二步对应于水分子对氧鎓离子的亲核进攻,其发生的能垒为1.3 kcal/mol。因此,这些结果与逐步SN1机理(DN*AN)一致,在离去基团和亲核试剂接近之间形成了一个离散的中间体,并且表明N7质子化强烈催化N-糖苷键的水解,使鸟嘌呤成为更好的离去基团。最后,计算了质子化体系的动力学同位素效应,所得结果与类似体系的实验数据非常吻合。