Spectroscopic evidence for an all-ferrous [4Fe-4S]0 cluster in the superreduced activator of 2-hydroxyglutaryl-CoA dehydratase from Acidaminococcus fermentans

被引:44
作者
Hans, Marcus [2 ]
Buckel, Wolfgang [2 ]
Bill, Eckhard [1 ]
机构
[1] Max Planck Inst Bioanorgan Chem, D-45470 Mulheim, Germany
[2] Univ Marburg, Fachbereich Biol, Mikrobiol Lab, D-35032 Marburg, Germany
来源
JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY | 2008年 / 13卷 / 04期
关键词
2-hydroxyglutaryl-coenzyme A dehydratase; activator; iron-sulfur protein; superreduced; all-ferrous;
D O I
10.1007/s00775-008-0345-z
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
The key enzyme of the fermentation of glutamate by Acidaminococcus fermentans, 2-hydroxyglutaryl-coenzyme A dehydratase, catalyzes the reversible syn-elimination of water from (R)-2-hydroxyglutaryl-coenzyme A, resulting in (E)-glutaconylcoenzyme A. The dehydratase system consists of two oxygen-sensitive protein components, the activator (HgdC) and the actual dehydratase (HgdAB). Previous biochemical and spectroscopic studies revealed that the reduced [4Fe-4S](+) cluster containing activator transfers one electron to the dehydratase driven by ATP hydrolysis, which activates the enzyme. With a tenfold excess of titanium(III) citrate at pH 8.0 the activator can be further reduced, yielding about 50% of a superreduced [4Fe-4S](0) cluster in the all-ferrous state. This is inferred from the appearance of a new Mossbauer spectrum with parameters delta = 0.65 mm/s and Delta E-Q = 1.51-2.19 mm/s at 140 K, which are typical of Fe(II)S-4 sites. Parallel-mode electron paramagnetic resonance (EPR) spectroscopy performed at temperatures between 3 and 20 K showed two sharp signals at g = 16 and 12, indicating an integer-spin system. The X-band EPR spectra and magnetic Mossbauer spectra could be consistently simulated by adopting a total spin S, = 4 for the all-ferrous cluster with weak zero-field splitting parameters D = -0.66 cm(-1) and E/D = 0.17. The superreduced cluster has apparent spectroscopic similarities with the corresponding [4Fe-4S](0) cluster described for the nitrogenase Fe-protein, but in detail their properties differ. While the all-ferrous Fe-protein is capable of transferring electrons to the MoFe-protein for dinitrogen reduction, a similar physiological role is elusive for the superreduced activator. This finding supports our model that only one-electron transfer steps are involved in dehydratase catalysis. Nevertheless we discuss a common basic mechanism of the two diverse systems, which are so far the only described examples of the all-ferrous [4Fe-4S](0) cluster found in biology.
引用
收藏
页码:563 / 574
页数:12
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