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核糖核苷酸还原酶蛋白R2突变体的金属结合与活性:混合锰-铁辅因子形成的条件

Metal binding and activity of ribonucleotide reductase protein R2 mutants: conditions for formation of the mixed manganese-iron cofactor.

作者信息

Popović-Bijelić Ana, Voevodskaya Nina, Domkin Vladimir, Thelander Lars, Gräslund Astrid

机构信息

Department of Biochemistry and Biophysics, Stockholm University, S-10691 Stockholm, Sweden.

出版信息

Biochemistry. 2009 Jul 14;48(27):6532-9. doi: 10.1021/bi900693s.

Abstract

Class Ic ribonucleotide reductase (RNR) from Chlamydia trachomatis (C. tm.) lacks the tyrosyl radical and uses a Mn(IV)-Fe(III) cluster for cysteinyl radical initiation in the large subunit. Here we investigated and compared the metal content and specific activity of the C. tm. wild-type R2 protein and its F127Y mutant, as well as the native mouse R2 protein and its Y177F mutant, all produced as recombinant proteins in Escherichia coli. Our results indicate that the affinity of the RNR R2 proteins for binding metals is determined by the nature of one specific residue in the vicinity of the dimetal site, namely the one that carries the tyrosyl radical in class Ia and Ib R2 proteins. In mouse R2, this tyrosyl residue is crucial for the activity of the enzyme, but in C. tm., the corresponding phenylalanine plays no obvious role in activation or catalysis. However, for the C. tm. wild-type R2 protein to bind Mn and gain high specific activity, there seems to be a strong preference for F over Y at this position. In studies of mouse RNR, we find that the native R2 protein does not bind Mn whereas its Y177F mutant incorporates a significant amount of Mn and exhibits 1.4% of native mouse RNR activity. The observation suggests that a manganese-iron cofactor is associated with the weak activity in this protein.

摘要

沙眼衣原体(C. tm.)的Ic类核糖核苷酸还原酶(RNR)缺乏酪氨酰自由基,在大亚基中使用Mn(IV)-Fe(III)簇进行半胱氨酰自由基引发。在这里,我们研究并比较了C. tm.野生型R2蛋白及其F127Y突变体、天然小鼠R2蛋白及其Y177F突变体的金属含量和比活性,所有这些都是在大肠杆菌中作为重组蛋白产生的。我们的结果表明,RNR R2蛋白结合金属的亲和力由双金属位点附近一个特定残基的性质决定,即在Ia类和Ib类R2蛋白中携带酪氨酰自由基的那个残基。在小鼠R2中,这个酪氨酰残基对酶的活性至关重要,但在C. tm.中,相应的苯丙氨酸在激活或催化中没有明显作用。然而,对于C. tm.野生型R2蛋白结合锰并获得高比活性而言,在这个位置似乎强烈偏好F而非Y。在小鼠RNR的研究中,我们发现天然R2蛋白不结合锰,而其Y177F突变体结合了大量锰并表现出天然小鼠RNR活性的1.4%。该观察结果表明锰 - 铁辅因子与该蛋白中的弱活性相关。

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