Zhang Ling, Rechkoblit Olga, Wang Lihua, Patel Dinshaw J, Shapiro Robert, Broyde Suse
Department of Chemistry, New York University, New York, NY, USA.
Nucleic Acids Res. 2006 Jul 4;34(11):3326-37. doi: 10.1093/nar/gkl425. Print 2006.
Bulky carcinogen-DNA adducts commonly cause replicative polymerases to stall, leading to a switch to bypass polymerases. We have investigated nucleotide incorporation opposite the major adduct of 2-amino-1-methyl-6-phenylimidazo[4,5-b]pyridine (PhIP) in the DinB family polymerase, Dpo4, using molecular modeling and molecular dynamics (MD) simulations. PhIP, the most prevalent heterocyclic aromatic amine formed by cooking of proteinaceous food, is mutagenic in mammalian cells and is implicated in mammary and colon tumors. Our results show that the dG-C8-PhIP adduct can be accommodated in the spacious major groove Dpo4 open pocket, with Dpo4 capable of incorporating dCTP, dTTP or dATP opposite the adduct reasonably well. However, the PhIP ring system on the minor groove side would seriously disturb the active site, regardless of the presence and identity of dNTP. Furthermore, the simulations indicate that dATP and dTTP are better incorporated in the damaged system than in their respective mismatched but unmodified controls, suggesting that the PhIP adduct enhances incorporation of these mismatches. Finally, bulky C8-dG adducts, situated in the major groove, are likely to impede translocation in this polymerase (Rechkoblit et al. (2006), PLoS Biol., 4, e11). However, N2-dG adducts, which can reside on the minor groove side, appear to cause less hindrance when in this position.
大分子致癌物 - DNA加合物通常会导致复制性聚合酶停滞,从而促使转而使用旁路聚合酶。我们使用分子建模和分子动力学(MD)模拟,研究了DinB家族聚合酶Dpo4中与2 - 氨基 - 1 - 甲基 - 6 - 苯基咪唑并[4,5 - b]吡啶(PhIP)的主要加合物相对的核苷酸掺入情况。PhIP是烹饪蛋白质类食物时形成的最普遍的杂环芳香胺,在哺乳动物细胞中具有致突变性,并与乳腺和结肠肿瘤有关。我们的结果表明,dG - C8 - PhIP加合物可以容纳在Dpo4宽敞的大沟开放口袋中,Dpo4能够较好地在该加合物相对位置掺入dCTP、dTTP或dATP。然而,小沟一侧的PhIP环系统会严重干扰活性位点,无论dNTP的存在与否及种类。此外,模拟表明,与各自错配但未修饰的对照相比,dATP和dTTP在受损系统中掺入得更好,这表明PhIP加合物增强了这些错配物的掺入。最后,位于大沟中的大分子C8 - dG加合物可能会阻碍该聚合酶的转位(Rechkoblit等人,(2006年),《公共科学图书馆·生物学》,4,e11)。然而,可以位于小沟一侧的N2 - dG加合物在此位置时似乎造成的阻碍较小。