首页> 外文期刊>Journal of Virology >Enzymatic degradation of uracil-containing DNA. II. Evidence for N-glycosidase and nuclease activities in unfractionated extracts of Bacillus subtilis.
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Enzymatic degradation of uracil-containing DNA. II. Evidence for N-glycosidase and nuclease activities in unfractionated extracts of Bacillus subtilis.

机译:含尿嘧啶的DNA的酶促降解。 II。在枯草芽孢杆菌未分割的枯草芽孢杆菌中的N-糖苷酶和核酸酶活性的证据。

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Further studies have confirmed our earlier observations that in the presence of EDTA, degradation of phage PBS2 [3H]uracil-labeled DNA is effected by an N-glycosidase activity in extracts of Bacillus subtilis that removes free uracil from DNA. In addition, such extracts contain a nuclease activity that attacks PBS2 DNA in the presence of CaCl2. The nuclease activity is not observed under conditions that inactivate N-glycosidase activity but does attack DNA that has been preincubated to remove uracil by N-glycosidase action. We therefore postulate that the nuclease requires N-glycosidase action to generate substrate for its activity, i.e., the nuclease appears to attack depyrimidinated sites rather than uracil sites in phage PBS2 DNA.
机译:进一步的研究证实了我们之前的观察结果,在EDTA存在下,噬菌体PBS2 [3H]尿嘧啶标记的DNA的降解通过枯草芽孢杆菌提取物中的N-醇磷酸酶活性,从DNA中除去游离尿嘧啶。此外,这种提取物含有核酸酶活性,其在CaCl 2存在下攻击PBS2 DNA。在灭活N-糖苷酶活性的条件下未观察到核酸酶活性,但是通过N-醇酶作用进行预孵育以除去尿嘧啶的攻击DNA。因此,我们假设核酸酶需要N-醇酶作用以产生其活性的基材,即核酸酶似乎攻击杂质位点而不是噬菌体PBS2 DNA中的尿嘧啶位点。

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