Adenosine triphosphate-induced electron transfer in 2-hydroxyglutaryl-CoA dehydratase from Acidaminococcus fermentans

被引:42
作者
Hans, M
Bill, E
Cirpus, I
Pierik, AJ
Hetzel, M
Alber, D
Buckel, W [1 ]
机构
[1] Univ Marburg, Fachbereich Biol, Mikrobiol Lab, D-3550 Marburg, Germany
[2] Max Planck Inst Strahlenchem, D-4330 Mulheim, Germany
[3] Hahn Meitner Inst Berlin GmbH, D-1000 Berlin, Germany
关键词
D O I
10.1021/bi020033m
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
2-Hydroxyglutaryl-CoA dehydratase from Acidaminococcus fermentans catalyzes the chemical difficult elimination of water from (R)-2-hydroxyglutaryl-CoA to glutaconyl-CoA. The enzyme consists of two oxygen-sensitive protein components, the homodimeric activator (A) with one [4Fe-4S](1+/2+) cluster and the heterodimeric dehydratase (D) with one nonreducible [4Fe-4S](2+) cluster and reduced riboflavin 5'-monophosphate (FMNH2). For activation, ATP, Mg2+, and a reduced flavodoxin (16 kDa) purified from A. fermentans are required. The [4Fe-4S](1+/2+) cluster of component A is exposed to the solvent since it is accessible to iron chelators. Upon exchange of the bound ADP by ATP, the chelation rate is 8-fold enhanced, indicating a large conformational change. Oxidized component A exhibits ATPase activity of 6 s(-1), which is completely abolished upon reduction by one electron. UV-visible spectroscopy revealed a spontaneous one-electron transfer from flavodoxin hydroquinone (E-0' = -430 mV) to oxidized component A, whereby the [4Fe-4S](2+) cluster of component A became reduced. Combined kinetic, EPR, and Mossbauer spectrocopic investigations exhibited an ATP-dependent oxidation of component A by component D. Whereas the [4Fe-4S](2+) cluster of component D remained in the oxidized state, a new EPR signal became visible attributed to a d(1)-metal species, probably Mo(V). Metal analysis with neutron activation and atomic absorption spectroscopy gave 0.07-0.2 Mo per component D. In summary, the data suggest that in the presence of ATP one electron is transferred from flavodoxin hydroquinone via the [4Fe-4S](1+/2+) cluster of component A to Mo(VI) of component D, which is thereby reduced to Mo(V). The latter may supply the electron necessary for transient charge reversal in the unusual dehydration.
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页码:5873 / 5882
页数:10
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