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高温嗜热古菌 Archaeoglobus fulgidus 通过单核苷酸替换修复尿嘧啶。

The hyperthermophilic euryarchaeon Archaeoglobus fulgidus repairs uracil by single-nucleotide replacement.

机构信息

Faculty of Science and Technology, Department of Mathematics and Natural Sciences, University of Stavanger, N-4036 Stavanger, Norway.

出版信息

J Bacteriol. 2010 Nov;192(21):5755-66. doi: 10.1128/JB.00135-10. Epub 2010 May 7.

Abstract

Hydrolytic deamination of cytosine to uracil in cellular DNA is a major source of C-to-T transition mutations if uracil is not repaired by the DNA base excision repair (BER) pathway. Since deamination increases rapidly with temperature, hyperthermophiles, in particular, are expected to succumb to such damage. There has been only one report of crenarchaeotic BER showing strong similarities to that in most eukaryotes and bacteria for hyperthermophilic Archaea. Here we report a different type of BER performed by extract prepared from cells of the euryarchaeon Archaeoglobus fulgidus. Although immunodepletion showed that the monofunctional family 4 type of uracil-DNA glycosylase (UDG) is the principal and probably only UDG in this organism, a β-elimination mechanism rather than a hydrolytic mechanism is employed for incision of the abasic site following uracil removal. The resulting 3' remnant is removed by efficient 3'-phosphodiesterase activity followed by single-nucleotide insertion and ligation. The finding that repair product formation is stimulated similarly by ATP and ADP in vitro raises the question of whether ADP is more important in vivo because of its higher heat stability.

摘要

细胞 DNA 中胞嘧啶的水解脱氨变成尿嘧啶,如果尿嘧啶不能被 DNA 碱基切除修复 (BER) 途径修复,这将是 C 到 T 转换突变的主要来源。由于脱氨作用会随温度的升高而迅速增加,因此,特别是高温微生物预计会受到这种损伤的影响。已有一份关于古菌的 BER 的报告,该报告显示其与大多数真核生物和细菌中的 BER 具有很强的相似性。在这里,我们报告了一种不同类型的 BER,该 BER 是由极端嗜热古菌 Archaeoglobus fulgidus 的细胞提取物进行的。尽管免疫耗竭表明单功能家族 4 型尿嘧啶-DNA 糖基化酶 (UDG) 是该生物中主要的、可能是唯一的 UDG,但它采用的是 β-消除机制而不是水解机制来进行碱基切除后无碱基位点的切割。随后,通过有效的 3'-磷酸二酯酶活性去除产生的 3' 残基,然后进行单核苷酸插入和连接。体外实验发现,修复产物的形成同样受到 ATP 和 ADP 的刺激,这提出了一个问题,即由于 ADP 的热稳定性更高,它在体内是否更为重要。

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