Wiederholt Carissa J, Greenberg Marc M
Department of Chemistry, Colorado State University, Ft. Collins, Colorado 80523, USA.
J Am Chem Soc. 2002 Jun 26;124(25):7278-9. doi: 10.1021/ja026522r.
The effects of Fapy.dG (N-(2-deoxy-alpha,beta-d-erythropentofuranosyl)-N-(2,6-diamino-4-hydroxy-5-formamidopyrimidine)) on the activity of Klenow exo- have been determined by using oligonucleotide substrates containing the lesion at a defined site. Fapy.dG inhibits primer polymerization at two positions: nucleotide incorporation opposite the lesion and extension one nucleotide past the lesion. Klenow exo- is inhibited less by Fapy.dG than by its analogue, MeFapy.dG. Fapy.dG instructs the polymerase to misincorporate deoxyadenosine opposite itself 20 times more frequently than does dG. Extension of the primer containing the Fapy.dG:dA base pair is only slightly less efficient than when dC is opposite the lesion. Overall, Fapy.dG increases the probability that Klenow exo- will make a mistake during replication approximately 80-million fold compared to a template containing the native nucleotide, dG.
通过使用在特定位置含有该损伤的寡核苷酸底物,已确定了Fapy.dG(N-(2-脱氧-α,β-D-赤藓戊呋喃糖基)-N-(2,6-二氨基-4-羟基-5-甲酰胺基嘧啶))对Klenow外切酶活性的影响。Fapy.dG在两个位置抑制引物聚合:在损伤位点相对处的核苷酸掺入以及在损伤位点后一个核苷酸的延伸。与它的类似物MeFapy.dG相比,Klenow外切酶受Fapy.dG的抑制作用较小。Fapy.dG引导聚合酶在其自身相对位置错误掺入脱氧腺苷的频率比dG高20倍。含有Fapy.dG:dA碱基对的引物延伸效率仅比损伤位点相对处为dC时略低。总体而言,与含有天然核苷酸dG的模板相比,Fapy.dG使Klenow外切酶在复制过程中出错的概率增加了约8000万倍。