Mossbauer, electron-paramagnetic-resonance and X-ray-absorption fine-structure studies of the iron environment in recombinant human tyrosine hydroxylase

被引:39
作者
MeyerKlaucke, W
Winkler, H
Schunemann, V
Trautwein, AX
Nolting, HF
Haavik, J
机构
[1] UNIV LUBECK,INST PHYS,D-23538 LUBECK,GERMANY
[2] DESY,EUROPEAN MOL BIOL LAB,D-2000 HAMBURG,GERMANY
[3] UNIV BERGEN,DEPT BIOCHEM & MOL BIOL,BERGEN,NORWAY
来源
EUROPEAN JOURNAL OF BIOCHEMISTRY | 1996年 / 241卷 / 02期
关键词
tyrosine hydroxylase; Mossbauer spectroscopy; electron paramagnetic resonance; X-ray absorption fine structure;
D O I
10.1111/j.1432-1033.1996.00432.x
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
Isoforms (1-4) of human tyrosine hydroxylase (TH) have been expressed in Escherichia coli and purified as apoenzymes (metal-free). Apo-human TH binds 1.0 atom Fe(II)/enzyme subunit, and iron binding is associated with an immediate and dramatic (40-fold) increase in specific activity. For X-ray absorption fine structure (XAFS) and electron paramagnetic resonance (EPR) measurements the apoenzyme was reconstituted with Fe-56 and for Mossbauer measurements with Fe-57. XAFS measurements at the Fe-K edge of human TH were performed on the native form [Fe(II)-human TH], as well as after addition of stoichiometric amounts of the substrate tetrahydropterin, the inhibitor dopamine and of H2O2. The addition of dopamine or H2O2 oxidizes the ferrous iron of the native human TH to the ferric state. In both redox slates the iron is octahedrally coordinated by low-Z backscatterers, thus sulfur coordination can be excluded. From the multiple scattering analysis of the EXAFS region is was surmised that part of the iron coordination is due to (3 +/- 1) imidazols. Addition of tetrahydropterin does not significantly change the iron coordination of the Fe(II) enzyme. The Mossbauer results confirm the valence stares and the octahedral coordination of iran as well as the exclusion of sulfur ligation. Both the EPR spectra and the Mossbauer magnetic hyperfine pattern of dopamine- and H2O2-treated native human TH, were analyzed with the spin-Hamiltonian formalism, This analysis provides significantly different features for the two forms af human TH: the ferric iron (S = 5/2) of the H2O2-treated form exhibits a rhombic environment while that of the dopamine-treated form exhibits near-axial symmetry. The specific spectroscopic signature of dopamine-treated human TH, including that of an earlier resonance-Raman study [Michaud-Soret, I., Andersson, K. K., Que, L. Jr & Haavik, J. (1995) Biochemistry 34, 5504-5510] is most likely due to the bidentate. binding of dopamine to iron.
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页码:432 / 439
页数:8
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