首页> 外文期刊>Nucleic Acids Research >A new anticonformation for N-(deoxyguanosin-8-yl)-2-acetylaminofluorene (AAF-dG) allows Watson-Crick pairing in the Sulfolobus solfataricus P2 DNA polymerase IV (Dpo4)
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A new anticonformation for N-(deoxyguanosin-8-yl)-2-acetylaminofluorene (AAF-dG) allows Watson-Crick pairing in the Sulfolobus solfataricus P2 DNA polymerase IV (Dpo4)

机译:N-(脱氧鸟苷-8-基)-2-乙酰氨基芴(AAF-dG)的新反构象允许在Sulfolobus solfataricus P2 DNA聚合酶IV(Dpo4)中进行Watson-Crick配对

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Primer extension studies have shown that the Y-family DNA polymerase IV (Dpo4) from Sulfolobus solfataricus P2 can preferentially insert C opposite M(deoxyguanosin-8-yl)-2-acetylaminofluorene (AAF-dG) [F. Boudsocq, S. Iwai, F. Hanaoka and R. Woodgate (2001) Nucleic Acids Res., 29, 46074616]. Our goal is to elucidate on a structural level how AAF-dG can be harbored in the Dpo4 active site opposite an incoming dCTP, using molecular modeling and molecular dynamics simulations, since AAF-dG prefers the syn glycosidic torsion. Both anti and syn conformations of the templating AAF-dG in a Dpo4 ternary complex were investigated. All four dNTPs were studied. We found that an anti glycosidic torsion with C1'-exo deoxyribose conformation allows AAF-dG to be Watson-Crick hydrogen-bonded with dCTP with modest polymerase perturbation, but other nucleotides are more distorting. The AAF is situated in the Dpo4 major groove open pocket with fluorenyl rings 3'- and acetyl 5'-directed along the modified strand, irrespective of dNTP. With AAF-dG syn, the fluorenyl rings are in the small minor groove pocket and the active site region is highly distorted. The anti-AAF-dG conformation with C1'-exo sugar pucker can explain the preferential incorporation of dC by Dpo4. Possible relevance of our new major groove structure for AAF-dG to other polymerases, lesion repair and solution conformations are discussed.
机译:引物延伸研究表明,来自Sulfolobus solfataricus P2的Y家族DNA聚合酶IV(Dpo4)可以优先插入与M(脱氧鸟苷-8-基)-2-乙酰氨基芴(AAF-dG)相反的C。 Boudsocq,S. Iwai,F. Hanaoka和R. Woodgate(2001)Nucleic Acids Res。,29,46074616]。我们的目标是通过分子建模和分子动力学模拟,在结构水平上阐明如何将AAF-dG保留在与传入dCTP相对的Dpo4活性位点中,因为AAF-dG倾向于顺式糖苷扭转。研究了Dpo4三元复合物中模板AAF-dG的反式和顺式构象。研究了所有四个dNTP。我们发现,具有C1'-exo脱氧核糖构象的抗糖苷扭转使AAF-dG与dCTP发生了Watson-Crick氢键结合,并带有适度的聚合酶扰动,但其他核苷酸的失真更大。 AAF位于Dpo4主沟开放袋中,其芴基环3'-和乙酰基5'-沿着修饰链定向,与dNTP无关。对于AAF-dG syn,芴基环位于较小的小凹槽袋中,并且活性位点区域高度扭曲。具有C1'-exo糖褶的抗AAF-dG构象可以解释Dpo4优先掺入dC。讨论了我们用于AAF-dG的新的主要凹槽结构与其他聚合酶,病变修复和溶液构象的可能相关性。

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