Clark J M, Beardsley G P
Department of Pediatrics, Yale University School of Medicine, New Haven, Connecticut 06510.
Biochemistry. 1987 Aug 25;26(17):5398-403. doi: 10.1021/bi00391a027.
Thymine glycol, a DNA lesion produced by ionizing radiation, has been introduced site specifically at high frequency into a synthetic oligonucleotide by chemical oxidation of the single thymine residue within the sequence. The lesion-containing template was then annealed to a complementary synthetic primer and used to study the effects of cis-thymine glycol lesions on DNA polymerase function in vitro. Synthesis by polymerase I (Klenow fragment), T4 DNA polymerase, and polymerase alpha 2 was arrested quantitatively at the site of the lesion. AMV reverse transcriptase was less inhibited and was able to synthesize past a significant fraction of the lesions. Changing the template base immediately 5' to thymine glycol from A to C did not significantly alter the pattern of synthesis arrest for any of the polymerases. The correct nucleotide, dAMP, was inserted opposite the lesion more than 90% of the time by all four polymerases, suggesting that thymine glycol forms a reasonably stable base pair with adenine. However, the 3'-5' exonuclease activity of polymerase I removed a 3'-terminal dAMP residue more rapidly from an A . thymine glycol base pair than from an A.T base pair. These results suggest that increased nucleotide turnover at the site of the lesion contributes to the inhibitory effects of thymine glycol lesions on DNA synthesis in vitro, at least for polymerases such as polymerase I that have intrinsic or associated editing exonuclease functions.
胸腺嘧啶乙二醇是一种由电离辐射产生的DNA损伤,通过对序列中单个胸腺嘧啶残基进行化学氧化,已将其高频位点特异性地引入到合成寡核苷酸中。然后将含有损伤的模板与互补的合成引物退火,并用于研究顺式胸腺嘧啶乙二醇损伤对体外DNA聚合酶功能的影响。聚合酶I(Klenow片段)、T4 DNA聚合酶和聚合酶α2的合成在损伤位点定量停止。禽成髓细胞瘤病毒逆转录酶受抑制程度较小,能够越过相当一部分损伤进行合成。将损伤位点5'端紧邻胸腺嘧啶乙二醇的模板碱基从A变为C,对任何一种聚合酶的合成停止模式均无显著影响。所有四种聚合酶在损伤位点对面插入正确核苷酸dAMP的时间超过90%,这表明胸腺嘧啶乙二醇与腺嘌呤形成了相当稳定的碱基对。然而,聚合酶I的3'-5'核酸外切酶活性从A·胸腺嘧啶乙二醇碱基对比从A·T碱基对更快地去除3'-末端dAMP残基。这些结果表明,损伤位点核苷酸周转增加有助于胸腺嘧啶乙二醇损伤对体外DNA合成的抑制作用,至少对于具有内在或相关编辑核酸外切酶功能的聚合酶如聚合酶I是如此。