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Items: 1 to 20 of 99

1.

Novel thioether bond revealed by a 1.7 A crystal structure of galactose oxidase.

Ito N, Phillips SE, Stevens C, Ogel ZB, McPherson MJ, Keen JN, Yadav KD, Knowles PF.

Nature. 1991 Mar 7;350(6313):87-90.

PMID:
2002850
2.

Three-dimensional structure of galactose oxidase: an enzyme with a built-in secondary cofactor.

Ito N, Phillips SE, Stevens C, Ogel ZB, McPherson MJ, Keen JN, Yadav KD, Knowles PF.

Faraday Discuss. 1992;(93):75-84.

PMID:
1290941
3.

The radical chemistry of galactose oxidase.

Whittaker JW.

Arch Biochem Biophys. 2005 Jan 1;433(1):227-39. Review.

PMID:
15581579
4.

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

Firbank SJ, Rogers MS, Wilmot CM, Dooley DM, Halcrow MA, Knowles PF, McPherson MJ, Phillips SE.

Proc Natl Acad Sci U S A. 2001 Nov 6;98(23):12932-7.

5.

The electronic structure of the Cys-Tyr(*) free radical in galactose oxidase determined by EPR spectroscopy.

Lee YK, Whittaker MM, Whittaker JW.

Biochemistry. 2008 Jun 24;47(25):6637-49. doi: 10.1021/bi800305d.

6.
7.

Crystal structure of a free radical enzyme, galactose oxidase.

Ito N, Phillips SE, Yadav KD, Knowles PF.

J Mol Biol. 1994 May 20;238(5):794-814.

PMID:
8182749
8.

Kinetic isotope effects as probes of the mechanism of galactose oxidase.

Whittaker MM, Ballou DP, Whittaker JW.

Biochemistry. 1998 Jun 9;37(23):8426-36.

PMID:
9622494
9.

Thiols as mechanistic probes for catalysis by the free radical enzyme galactose oxidase.

Wachter RM, Branchaud BP.

Biochemistry. 1996 Nov 12;35(45):14425-35.

PMID:
8916929
10.

Combinatorial approaches to functional models for galactose oxidase.

Berkessel A, Dousset M, Bulat S, Glaubitz K.

Biol Chem. 2005 Oct;386(10):1035-41.

PMID:
16218875
11.

Structure and mechanism of galactose oxidase. The free radical site.

Baron AJ, Stevens C, Wilmot C, Seneviratne KD, Blakeley V, Dooley DM, Phillips SE, Knowles PF, McPherson MJ.

J Biol Chem. 1994 Oct 7;269(40):25095-105.

12.

Cross-link formation of the cysteine 228-tyrosine 272 catalytic cofactor of galactose oxidase does not require dioxygen.

Rogers MS, Hurtado-Guerrero R, Firbank SJ, Halcrow MA, Dooley DM, Phillips SE, Knowles PF, McPherson MJ.

Biochemistry. 2008 Sep 30;47(39):10428-39. doi: 10.1021/bi8010835.

13.

Catalytic galactose oxidase models: biomimetic Cu(II)-phenoxyl-radical reactivity.

Wang Y, DuBois JL, Hedman B, Hodgson KO, Stack TD.

Science. 1998 Jan 23;279(5350):537-40.

14.

Cofactor processing in galactose oxidase.

Firbank SJ, Rogers M, Hurtado-Guerrero R, Dooley DM, Halcrow MA, Phillips SE, Knowles PF, McPherson MJ.

Biochem Soc Trans. 2003 Jun;31(Pt 3):506-9. Review.

PMID:
12773145
15.

The stacking tryptophan of galactose oxidase: a second-coordination sphere residue that has profound effects on tyrosyl radical behavior and enzyme catalysis.

Rogers MS, Tyler EM, Akyumani N, Kurtis CR, Spooner RK, Deacon SE, Tamber S, Firbank SJ, Mahmoud K, Knowles PF, Phillips SE, McPherson MJ, Dooley DM.

Biochemistry. 2007 Apr 17;46(15):4606-18.

16.

Pyrroloquinoline quinone as cofactor in galactose oxidase (EC 1.1.3.9).

van der Meer RA, Jongejan JA, Duine JA.

J Biol Chem. 1989 May 15;264(14):7792-4.

17.

Role of the Tyr-Cys cross-link to the active site properties of galactose oxidase.

Rokhsana D, Howells AE, Dooley DM, Szilagyi RK.

Inorg Chem. 2012 Mar 19;51(6):3513-24. doi: 10.1021/ic2022769.

PMID:
22372371
18.

Cu(I)-dependent biogenesis of the galactose oxidase redox cofactor.

Whittaker MM, Whittaker JW.

J Biol Chem. 2003 Jun 13;278(24):22090-101.

19.

Cofactor processing in galactose oxidase.

Firbank S, Rogers M, Guerrero RH, Dooley DM, Halcrow MA, Phillips SE, Knowles PF, McPherson MJ.

Biochem Soc Symp. 2004;(71):15-25. Review.

PMID:
15777009
20.

Resonance Raman evidence for tyrosine involvement in the radical site of galactose oxidase.

Whittaker MM, DeVito VL, Asher SA, Whittaker JW.

J Biol Chem. 1989 May 5;264(13):7104-6.

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