H-1-NMR STUDIES OF MOUSE RIBONUCLEOTIDE REDUCTASE - THE R2 PROTEIN CARBOXYL-TERMINAL TAIL, ESSENTIAL FOR SUBUNIT INTERACTION, IS HIGHLY FLEXIBLE BUT BECOMES RIGID IN THE PRESENCE OF PROTEIN R1

被引:45
作者
LYCKSELL, PO
INGEMARSON, R
DAVIS, R
GRASLUND, A
THELANDER, L
机构
[1] Department of Medical Biochemistry and Biophysics, University of Umeå
关键词
D O I
10.1021/bi00176a013
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
Mouse ribonucleotide reductase consists of two nonidentical subunits, proteins R1 and R2, each inactive alone. It has earlier been shown that the carboxyl-terminal part of the R2 protein is essential for subunit association to form the active enzyme complex. We now demonstrate that protein R2 gives rise to a number of sharp H-1 NMR resonances, significantly narrower than the major part of the resonances. This line narrowing of certain resonances indicates segmental mobility in the molecule. In two-dimensional H-1 TOCSY spectra of protein R2, cross-peak patterns from about 25 amino acid residues are visible. Most of these were assigned to the carboxyl-terminal part of the protein by comparisons with cross-peak patterns of oligopeptides corresponding to the carboxyl terminus of mouse R2 and to the patterns of a seven amino acid residue carboxyl-terminal truncated form of protein R2. These results and the magnitude of the chemical shifts of the assigned residues demonstrate that the carboxyl-terminal part of mouse R2 protein is highly mobile compared to the rest of the protein and essentially unstructured. When protein R1 is added to a solution of protein R2, the sharp resonances are broadened, suggesting that the mobility of the carboxyl-terminal tail of protein R2 is reduced. The possibility of making direct observations of subunit interaction in native and mutagenized R1/R2 proteins should allow discrimination between effects of amino acid replacements on the catalytic mechanism and effects on subunit interaction.
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页码:2838 / 2842
页数:5
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