Zaborowska Zaneta, Fürste Jens P, Erdmann Volker A, Kurreck Jens
Free University Berlin, Institute of Biochemistry, Thielallee 63, 14195 Berlin, Germany.
J Biol Chem. 2002 Oct 25;277(43):40617-22. doi: 10.1074/jbc.M207094200. Epub 2002 Aug 20.
A systematic mutagenesis study of the "10-23" DNA enzyme was performed to analyze the sequence requirements of its catalytic domain. Therefore, each of the 15 core nucleotides was substituted separately by the remaining three naturally occurring nucleotides. Changes at the borders of the catalytic domain led to a dramatic loss of enzymatic activity, whereas several nucleotides in between could be exchanged without severe effects. Thymidine at position 8 had the lowest degree of conservation and its substitution by any of the other three nucleotides caused only a minor loss of activity. In addition to the standard nucleotides (adenosine, guanosine, thymidine, or cytidine) modified nucleotides were used to gain further information about the role of individual functional groups. Again, thymidine at position 8 as well as some other nucleotides could be substituted by inosine without severe effects on the catalytic activity. For two positions, additional experiments with 2-aminopurine and deoxypurine, respectively, were performed to obtain information about the specific role of functional groups. In addition to sequence-function relationships of the DNA enzyme, this study provides information about suitable sites to introduce modified nucleotides for further functional studies or for internal stabilization of the DNA enzyme against endonucleolytic attack.
对“10 - 23”DNA酶进行了系统的诱变研究,以分析其催化结构域的序列要求。因此,15个核心核苷酸中的每一个都分别被其余三种天然存在的核苷酸取代。催化结构域边界处的变化导致酶活性急剧丧失,而中间的几个核苷酸可以交换而不会产生严重影响。第8位的胸腺嘧啶保守程度最低,用其他三种核苷酸中的任何一种取代它只会导致活性略有丧失。除了标准核苷酸(腺苷、鸟苷、胸腺嘧啶或胞嘧啶)外,还使用修饰核苷酸以获取有关各个官能团作用的更多信息。同样,第8位的胸腺嘧啶以及其他一些核苷酸可以被次黄嘌呤取代,而对催化活性没有严重影响。对于两个位置,分别用2 - 氨基嘌呤和脱氧嘌呤进行了额外的实验,以获取有关官能团特定作用的信息。除了DNA酶的序列 - 功能关系外,本研究还提供了有关合适位点的信息,可在这些位点引入修饰核苷酸以进行进一步的功能研究或使DNA酶对内切核酸酶攻击具有内部稳定性。