High field EPR studies of mouse ribonucleotide reductase indicate hydrogen bonding of the tyrosyl radical

被引:67
作者
Schmidt, PP
Andersson, KK
Barra, AL
Thelander, L
Graslund, A
机构
[1] UNIV OSLO,DEPT BIOCHEM,N-0316 OSLO,NORWAY
[2] STOCKHOLM UNIV,ARRHENIUS LABS,DEPT BIOPHYS,S-10691 STOCKHOLM,SWEDEN
[3] CNRS,MPI,HIGH FIELD MAGNET LAB,F-38042 GRENOBLE,FRANCE
[4] UMEA UNIV,DEPT MED BIOCHEM & BIOPHYS,S-90187 UMEA,SWEDEN
关键词
D O I
10.1074/jbc.271.39.23615
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Ribonucleotide reductase catalyzes by free radical chemistry the reduction of ribonucleotides to deoxyribonucleotides. The R2 protein of a class 1 ribonucleotide reductase contains a stable tyrosyl radical of neutral phenoxy character, which is necessary for normal enzymatic activity, Here we present the EPR spectra from the tyrosyl free radical in the R2 protein from mouse at 9.62, 115, and 245 GHz. We show that the g-value anisotropy of the mouse R2 radical, when precisely determined from high field EPR spectra, is similar to that of the hydrogen bonded dark stable Y-D(.) tyrosyl radical of photosystem II and different from that of the Escherichia coli R2 radical. Because the g-value anisotropy is an important indicator of the hydrogen bonding status of the tyrosyl radical, this result suggests that the mouse R2 radical has its tyrosylate oxygen hydrogen bonded with a D2O exchangeable proton, whereas this hydrogen bond is absent in the E. coli enzyme. It is suggested that the observed proton may be derived from the tyrosine that will become a tyrosyl radical.
引用
收藏
页码:23615 / 23618
页数:4
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