Analysis of the cob(II)alamin-5′-deoxy-3′,4′-anhydroadenosyl radical triplet spin system in the active site of diol dehydrase

被引:13
作者
Mansoorabadi, Steven O. [1 ]
Magnusson, Olafur Th. [1 ]
Poyner, Russell R. [1 ]
Frey, Perry A. [1 ]
Reed, George H. [1 ]
机构
[1] Univ Wisconsin, Dept Biochem, Madison, WI 53726 USA
关键词
D O I
10.1021/bi061586q
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
A triplet spin system (S = 1) is detected by low-temperature electron paramagnetic resonance (EPR) spectroscopy in samples of diol dehydrase and the functional adenosylcobalamin (AdoCbl) analogue 5'-deoxy-3', 4'-anhydroadenosylcobalamin (anAdoCbl). Different spectra are observed in the presence and absence of the substrate (R, S)-1,2-propanediol. In both cases, the spectra include a prominent half-field transition (Delta MS = 2) that is a hallmark of strongly coupled triplet spin systems. The appearance of (59)Co hyperfine splitting in the EPR signals and the positions (g values) of the signals in the spectra show that half of the triplet spin is contributed by the low-spin Co2+ of cob(II) alamin. Line width effects from isotopic labeling ((13)C and (2)H) in the 5'-deoxy-3', 4'-anhydroribosyl ring demonstrate that the other half of the spin triplet is from an allylic 5'-deoxy-3', 4'-anhydroadenosyl (anhydroadenosyl) radical. The zerofield splitting (ZFS) tensors describing the magnetic dipole-dipole interactions of the component spins of the triplets have rhombic symmetry because of electron spin delocalization within the organic radical component and the proximity of the radical to the low-spin Co(2+). The dipole-dipole interaction was modeled as a summation of point-dipole interactions involving the spin-bearing orbitals of the anhydroadenosyl radical and cob(II) alamin. Geometries which are consistent with the ZFS tensors in the presence and absence of the substrate position the 5'-carbon of the anhydroadenosyl radical 3.5 and 4.1 angstrom from Co(2+), respectively. Homolytic cleavage of the cobalt-carbon bond of the analogue in the absence of the substrate indicates that, in diol dehydrase, binding of the coenzyme to the protein weakens the bond prior to binding of the substrate.
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页码:14362 / 14370
页数:9
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共 50 条
[1]   Identification of cis-ethanesemidione as the organic radical derived from glycolaldehyde in the suicide inactivation of dioldehydrase and of ethanolamine ammonia-lyase [J].
Abend, A ;
Bandarian, V ;
Reed, GH ;
Frey, PA .
BIOCHEMISTRY, 2000, 39 (20) :6250-6257
[2]  
[Anonymous], B12
[3]   Isotope effects in the transient phases of the reaction catalyzed by ethanolamine ammonia-lyase: Determination of the number of exchangeable hydrogens in the enzyme-cofactor complex [J].
Bandarian, V ;
Reed, GH .
BIOCHEMISTRY, 2000, 39 (39) :12069-12075
[4]   Hydrazine cation radical in the active site of ethanolamine ammonia-lyase: Mechanism-based inactivation by hydroxyethylhydrazine [J].
Bandarian, V ;
Reed, GH .
BIOCHEMISTRY, 1999, 38 (38) :12394-12402
[5]   Radical peregrinations catalyzed by coenzyme B12-dependent enzymes [J].
Banerjee, R .
BIOCHEMISTRY, 2001, 40 (21) :6191-6198
[6]  
Bencini A.Gatteschi., 1990, EPR of Exchange Coupled Systems
[7]   COENZYME-B-12 DEPENDENT RIBONUCLEOTIDE REDUCTASE - EVIDENCE FOR THE PARTICIPATION OF 5 CYSTEINE RESIDUES IN RIBONUCLEOTIDE REDUCTION [J].
BOOKER, S ;
LICHT, S ;
BRODERICK, J ;
STUBBE, J .
BIOCHEMISTRY, 1994, 33 (42) :12676-12685
[8]   Identification of the 4-glutamyl radical as an intermediate in the carbon skeleton rearrangement catalyzed by coenzyme B12-dependent glutamate mutase from Clostridium cochlearium [J].
Bothe, H ;
Darley, DJ ;
Albracht, SPJ ;
Gerfen, GJ ;
Golding, BT ;
Buckel, W .
BIOCHEMISTRY, 1998, 37 (12) :4105-4113
[9]   Epimerization at carbon-5′ of (5′R)-[5′,2H]adenosylcobalamin by ribonucleoside triphosphate reductase:: Cysteine 408-independent cleavage of the Co-C5′ bond [J].
Chen, DW ;
Abend, A ;
Stubbe, J ;
Frey, PA .
BIOCHEMISTRY, 2003, 42 (15) :4578-4584
[10]  
EATON GR, 1989, BIOL MAGN RESON, V8, P650