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Biomedical subjects

M A Halcrow

Publications and source records attributed to M A Halcrow.

6 recordsLinked to original sources

Cofactor processing in galactose oxidase.

Galactose oxidase (GO; EC 1.1.3.9) is a monomeric 68 kDa enzyme that contains a single copper and an amino acid-derived cofactor. The mechanism of this radical enzyme has been widely studied by structural, spectroscopic, kinetic and mutational approaches and there is a reasonable understanding of the catalytic mechanism and activation by oxidation to generate the radical cofactor that resides on Tyr-272, one of the copper ligands. Biogenesis of this cofactor involves the post-translational, autocatalytic formation of a thioether cross-link between the active-site residues Cys-228 and Tyr-272. This process is closely linked to a peptide bond cleavage event that releases the N-terminal 17-amino-acid pro-peptide. We have shown using pro-enzyme purified in copper-free conditions that mature oxidized GO can be formed by an autocatalytic process upon addition of copper and oxygen. Structural comparison of pro-GO (GO with the prosequence present) with mature GO reveals overall structural similarity, but with some regions showing significant local differences in main chain position and some active-site-residue side chains differing significantly from their mature enzyme positions. These structural effects of the pro-peptide suggest that it may act as an intramolecular chaperone to provide an open active-site structure conducive to copper binding and chemistry associated with cofactor formation. Various models can be proposed to account for the formation of the thioether bond and oxidation to the radical state; however, the mechanism of prosequence cleavage remains unclear.

Binding Sites↗

Two complexes of CuBr(2) with 5-tert-butylpyrazole.

trans-Dibromobis(5-tert-butylpyrazole-N(2))copper(II), trans-[CuBr(2)(Hpz(tBu))(2)] (Hpz(tBu) is 5-tert-butylpyrazole, C(7)H(12)N(2)), exhibits a distorted square-planar geometry with a significant tetrahedral twist, while trans-dibromotetrakis(5-tert-butylpyrazole-N(2))copper(II), trans-[CuBr(2)(Hpz(tBu))(4)], adopts a distorted octahedral geometry across a crystallographic inversion centre. Both compounds exhibit intramolecular N--H...Br hydrogen-bonding interactions.

Journal Article↗

Crystal structure of the precursor of galactose oxidase: an unusual self-processing enzyme.

Galactose oxidase (EC ) is a monomeric enzyme that contains a single copper ion and catalyses the stereospecific oxidation of primary alcohols to their corresponding aldehydes. The protein contains an unusual covalent thioether bond between a tyrosine, which acts as a radical center during the two-electron reaction, and a cysteine. The enzyme is produced in a precursor form lacking the thioether bond and also possessing an additional 17-aa pro-sequence at the N terminus. Previous work has shown that the aerobic addition of Cu(2+) to the precursor is sufficient to generate fully processed mature enzyme. The structure of the precursor protein has been determined to 1.4 A, revealing the location of the pro-sequence and identifying structural differences between the precursor and the mature protein. Structural alignment of the precursor and mature forms of galactose oxidase shows that five regions of main chain and some key residues of the active site differ significantly between the two forms. The precursor structure provides a starting point for modeling the chemistry of thioether bond formation and pro-sequence cleavage.

Amino Acid Sequence↗

Bis[tris(3-cyclohexylpyrazol-1-yl)-hydridoborato]copper(II) dichloromethane disolvate.

The title compound, [Cu(C27H40BN6)2]*2CH2Cl2, contains a four-coordinate Cu(II) ion lying on a crystallographic inversion centre, giving rise to a near-regular square-planar stereochemistry. There is an axial contact of 2.71 A between the Cu ion and ligand B-H group, although this is unlikely to correspond to a significant 'agostic' interaction.

Journal Article↗

1-(Dibromomethyl)-4-methoxy-2-methylbenzene.

The title compound, C(9)H(10)Br(2)O, is a major product of the radical bromination of 4-methoxy-1,2-dimethylbenzene. Each Br atom is involved in a close contact with the O atom of a neighbouring molecule, forming a geometry that is suggestive of weak intermolecular O--> Br charge-transfer interactions.

Journal Article↗

[Mn6O2[O2C-3,5-(NO2)2-C6H3]10-(C5H5N)2[(CH3)2CO]2].2(CH3)2CO.- 2(C2H5)2O and [Mn6O2(O2CC6H5)10-(NCCH3)4].

The structures of di(acetone)tetrakis(mu 3,5-dinitrobenzoato-kappa 2 O:kappa O')hexakis(mu-3,5-dinitrobenzoato-kappa O:kappa O')-di-mu 4-oxo-di(pyridine)tetramanganese(II)dimanganese (III)-acetone-diethyl ether (1/2/2), (1), and tetrakis(acetonitrile)tetrakis(mu 3-benzoato-kappa 2 O:kappa O')hexakis(mu-benzoato-kappa O:kappa O')-di-mu 4-oxo-tetramanganese(II)dimanganese(III), (2), are reported. Both compounds contain six octahedrally coordinated Mn centres, arranged as two MnII2MnIII2 (mu 4-O) tetrahedra sharing the MnIII-MnIII edge.

Crystallography, X-Ray↗