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Synthesis and characterization of oligonucleotides containing 2 '-fluorinated thymidine glycol as inhibitors of the endonuclease III reaction

机译:包含2'-氟代胸苷二醇作为核酸内切酶III反应抑制剂的寡核苷酸的合成与表征

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摘要

Endonuclease III (Endo III) is a base excision repair enzyme that recognizes oxidized pyrimidine bases including thymine glycol. This enzyme is a glycosylase/lyase and forms a Schiff base-type intermediate with the substrate after the damaged base is removed. To investigate the mechanism of its substrate recognition by X-ray crystallography, we have synthesized oligonucleotides containing 2'-fluorothymidine glycol, expecting that the electron-withdrawing fluorine atom at the 2' position would stabilize the covalent intermediate, as observed for T4 endonuclease V (Endo V) in our previous study. Oxidation of 5'- and 3'-protected 2'-fluorothymidine with OsO4 produced two isomers of thymine glycol. Their configurations were determined by NMR spectroscopy after protection of the hydroxyl functions. The ratio of (5R,6S) and (5S,6R) isomers was 3:1, whereas this ratio was 6:1 in the case of the unmodified sugar. Both of the thymidine glycol isomers were converted to the corresponding phosphoramidite building blocks and were incorporated into oligonucleotides. When the duplexes containing 2'-fluorinated 5R- or 5S-thymidine glycol were treated with Escherichia coli endo III, no stabilized covalent intermediate was observed regardless of the stereochemistry at C5. The 5S isomer was found to form an enzyme-DNA complex, but the incision was inhibited probably by the fluorine-induced stabilization of the glycosidic bond.
机译:核酸内切酶III(Endo III)是一种碱基切除修复酶,可识别氧化的嘧啶碱基,包括胸腺嘧啶二醇。该酶是糖基化酶/裂解酶,在除去受损的碱基后与底物形成席夫碱型中间体。为了研究其通过X射线晶体学识别底物的机理,我们合成了含有2'-氟胸苷二醇的寡核苷酸,期望T2内切核酸酶V观察到2'位置的吸电子氟原子能稳定共价中间体。 (Endo V)在我们之前的研究中。 OsO4氧化5'-和3'-保护的2'-氟胸苷产生了胸腺嘧啶二醇的两种异构体。在保护羟基官能团之后,通过NMR光谱法确定它们的构型。 (5R,6S)和(5S,6R)异构体的比例为3∶1,而对于未修饰的糖,该比例为6∶1。两种胸苷二醇异构体均被转化为相应的亚磷酰胺构件,并被掺入寡核苷酸中。当用大肠杆菌内切酶III处理含有2'-氟化的5R-或5S-胸苷二醇的双链体时,无论在C5处的立体化学如何,都未观察到稳定的共价中间体。发现5S异构体形成酶-DNA复合物,但是该切口可能被氟诱导的糖苷键稳定作用所抑制。

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