首页> 外文OA文献 >Embryonic extracts derived from the nematode Caenorhabditis elegans remove uracil from DNA by the sequential action of uracil-DNA glycosylase and AP (apurinic/apyrimidinic) endonuclease.
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Embryonic extracts derived from the nematode Caenorhabditis elegans remove uracil from DNA by the sequential action of uracil-DNA glycosylase and AP (apurinic/apyrimidinic) endonuclease.

机译:线虫秀丽隐杆线虫(Caenorhabditis elegans)的胚胎提取物通过尿嘧啶-DNA糖基化酶和AP(紫杉醇/嘧啶二酮)内切核酸酶的顺序作用从DNA中去除了尿嘧啶。

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摘要

DNA bases continuously undergo modifications in response to endogenous reactions such as oxidation, alkylation or deamination. The modified bases are primarily removed by DNA glycosylases, which cleave the N-glycosylic bond linking the base to the sugar, to generate an apurinic/apyrimidinic (AP) site, and this latter lesion is highly mutagenic. Previously, no study has demonstrated the processing of these lesions in the nematode Caenorhabditis elegans. Herein, we report the existence of uracil-DNA glycosylase and AP endonuclease activities in extracts derived from embryos of C. elegans. These enzyme activities were monitored using a defined 5'-end (32)P-labelled 42-bp synthetic oligonucleotide substrate bearing a single uracil residue opposite guanine at position 21. The embryonic extract rapidly cleaved the substrate in a time-dependent manner to produce a 20-mer product. The extract did not excise adenine or thymine opposite guanine, although uracil opposite either adenine or thymine was processed. Addition of the highly specific inhibitor of uracil-DNA glycosylase produced by Bacillus subtilis to the extract prevented the formation of the 20-mer product, indicating that removal of uracil is catalysed by uracil-DNA glycosylase. The data suggest that the 20-mer product was generated by a sequential reaction, i.e., removal of the uracil base followed by 5'-cleavage of the AP site. Further analysis revealed that product formation was dependent upon the presence of Mg(2+), suggesting that cleavage of the AP site, following uracil excision, is carried out by a Mg(2+)-dependent AP endonuclease. It would appear that these activities correspond to the first two steps of a putative base-excision-repair pathway in C. elegans.
机译:DNA碱基对内源性反应(例如氧化,烷基化或脱氨基)的反应不断进行修饰。修饰的碱基主要通过DNA糖基化酶去除,该酶会切割将碱基与糖连接的N-糖基键,从而生成一个嘌呤/嘧啶二酮(AP)位点,并且该病灶高度致突变。以前,没有研究证明线虫秀丽隐杆线虫中这些病变的处理。在本文中,我们报道了秀丽隐杆线虫胚胎提取物中存在尿嘧啶DNA糖基化酶和AP核酸内切酶活性。使用限定的5'-末端(32)P标记的42-bp合成寡核苷酸底物监测这些酶的活性,该底物在21位与鸟嘌呤相对,带有一个尿嘧啶残基。胚胎提取物以时间依赖性方式迅速裂解该底物以产生20个产品。尽管加工了与腺嘌呤或胸腺嘧啶相反的尿嘧啶,但提取物并未切除与鸟嘌呤相对的腺嘌呤或胸腺嘧啶。将枯草芽孢杆菌产生的尿嘧啶-DNA糖基化酶的高度特异性抑制剂添加到提取物中可防止20-mer产物的形成,表明尿嘧啶-DNA糖基化酶催化了尿嘧啶的去除。数据表明20-聚体产物是通过顺序反应,即除去尿嘧啶碱基,然后5'切割AP位点而产生的。进一步的分析表明,产物的形成取决于Mg(2+)的存在,表明尿嘧啶切除后AP位点的裂解是由Mg(2+)依赖的AP核酸内切酶进行的。看来这些活性对应于秀丽隐杆线虫的假定的碱基切除修复途径的前两个步骤。

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