Zhang Q M, Sugiyama H, Miyabe I, Matsuda S, Kino K, Saito I, Yonei S
Laboratory of Radiation Biology, Graduate School of Science, Kyoto University, Japan.
Int J Radiat Biol. 1999 Jan;75(1):59-65. doi: 10.1080/095530099140816.
To investigate the biological consequences of 5-formyluracil (5-foU) and 5-hydroxymethyluracil (5-hmU).
The authors constructed 22-mer oligonucleotides containing a 5-foU or 5-hmU residue at the same sites. The effects of such modifications on the ability to serve as a template for DNA polymerase and on the cleavage by sequence-specific restriction endonuclease were examined.
The Klenow fragment of DNA polymerase I and Thermus thermophilus DNA polymerase read through the sites of 5-foU and 5-hmU in the templates. 5-FoU directed the incorporation of dCMP in addition to dAMP opposite the lesion during DNA synthesis. The DNA polymerases incorporated only dAMP opposite the 5-hmU. The substitution of thymine by 5-foU within the recognition site of the restriction endonucleases HincII and SalI inhibited or prevented the cleavage by the enzymes, whereas the enzymes cleaved the 5-hmU-containing oligonucleotides at the same rate as the T-containing oligonucleotides.
These results indicated that the 5-foU-A base pair is less stable than the T-A base pair and that 5-foU can form a base pair with C in addition to A. It was also demonstrated that the oxidation of thymine to 5-hmU does not result in substantial deterioration.
研究5-甲酰基尿嘧啶(5-foU)和5-羟甲基尿嘧啶(5-hmU)的生物学后果。
作者构建了在相同位点含有一个5-foU或5-hmU残基的22聚体寡核苷酸。研究了此类修饰对作为DNA聚合酶模板的能力以及对序列特异性限制性内切酶切割的影响。
DNA聚合酶I的Klenow片段和嗜热栖热菌DNA聚合酶能够通读模板中5-foU和5-hmU位点。在DNA合成过程中,5-foU除了引导dAMP掺入损伤位点对面外,还引导dCMP掺入。DNA聚合酶在5-hmU对面仅掺入dAMP。在限制性内切酶HincII和SalI的识别位点内,用5-foU取代胸腺嘧啶会抑制或阻止酶的切割,而这些酶切割含5-hmU的寡核苷酸的速率与含T的寡核苷酸相同。
这些结果表明5-foU-A碱基对比T-A碱基对稳定性更低,并且5-foU除了与A形成碱基对外,还能与C形成碱基对。还证明胸腺嘧啶氧化为5-hmU不会导致显著降解。