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首页> 外文期刊>FEBS letters. >High catalytic activity achieved with a mixed manganese-iron site in protein R2 of Chlamydia ribonucleotide reductase.
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High catalytic activity achieved with a mixed manganese-iron site in protein R2 of Chlamydia ribonucleotide reductase.

机译:衣原体核糖核苷酸还原酶蛋白R2中的锰-铁混合位点实现了高催化活性。

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摘要

Ribonucleotide reductase (class I) contains two components: protein R1 binds the substrate, and protein R2 normally has a diferric site and a tyrosyl free radical needed for catalysis. In Chlamydia trachomatis RNR, protein R2 functions without radical. Enzyme activity studies show that in addition to a diiron cluster, a mixed manganese-iron cluster provides the oxidation equivalent needed to initiate catalysis. An EPR signal was observed from an antiferromagnetically coupled high-spin Mn(III)-Fe(III) cluster in a catalytic reaction mixture with added inhibitor hydroxyurea. The manganese-iron cluster in protein R2 confers much higher specific activity than the diiron cluster does to the enzyme.
机译:核糖核苷酸还原酶(I类)包含两个成分:蛋白质R1与底物结合,蛋白质R2通常具有二铁位点和催化所需的酪氨酰自由基。在沙眼衣原体RNR中,蛋白质R2起作用而没有自由基。酶活性研究表明,除了二铁簇外,锰铁混合物还提供了引发催化作用所需的氧化当量。在添加了抑制剂羟基脲的催化反应混合物中,从反铁磁耦合的高自旋Mn(III)-Fe(III)团簇观察到EPR信号。蛋白质R2中的锰铁簇比二铁簇赋予酶更高的比活性。

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