Upon storage under aerobic conditions metallothioneins (MTs) form a new species, which is characterized by a molecular mass approximately twice the size of monomeric MT and shifted 113/111Cd- and 1H-NMR resonances. The investigation of this oxidative dimerization process by NMR spectroscopy allowed us to structurally characterize this MT species that has been described to occur in vivo and might be synthesized under conditions of oxidative stress. The oxidative dimer was characterized by the formation of an intermolecular cysteine disulphide bond involving the α-domain, and a detailed analysis of chemical shift changes and intermolecular nuclear Overhauser effects points towards a disulphide bond involving Cys36. In contrast to the metal-bridged (non-oxidative) dimerization, the metal–cysteine cluster structures in both MT domains remain intact and no conformational exchange or metal–metal exchange was observed. Also in contrast to the many recently reported oxidative processes which involve the β-domain cysteine groups and result in the increased dynamics of the bound metal ions in this N-terminal domain, we found no evidence for any increased dynamics in the α-domain metals following this oxidation. Therefore these findings provide additional corroboration that metal binding in the C-terminal α-domain is rather tight, even under conditions of a changing cellular oxidation potential, compared with the more labile/dynamic nature of the metals in the N-terminal β-domain cluster under similar conditions.
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October 2001
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October 08 2001
Oxidative dimerization in metallothionein is a result of intermolecular disulphide bonds between cysteines in the α-domain Available to Purchase
Klaus ZANGGER;
Klaus ZANGGER
1
∗Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, 6–155 Jackson Hall, 321 Church Street, Minneapolis, MN 55455, U.S.A.
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Gong SHEN;
Gong SHEN
†Department of Biochemistry, North Carolina State University, Polk Hall, PO Box 7622, Raleigh, NC 27695, U.S.A.
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Gülin ÖZ;
Gülin ÖZ
∗Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, 6–155 Jackson Hall, 321 Church Street, Minneapolis, MN 55455, U.S.A.
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James D. OTVOS;
James D. OTVOS
†Department of Biochemistry, North Carolina State University, Polk Hall, PO Box 7622, Raleigh, NC 27695, U.S.A.
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Ian M. ARMITAGE
Ian M. ARMITAGE
2
∗Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, 6–155 Jackson Hall, 321 Church Street, Minneapolis, MN 55455, U.S.A.
2To whom correspondence should be addressed (e-mail [email protected]).
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Publisher: Portland Press Ltd
Received:
April 10 2001
Revision Received:
July 10 2001
Accepted:
August 07 2001
Online ISSN: 1470-8728
Print ISSN: 0264-6021
The Biochemical Society, London ©2001
2001
Biochem J (2001) 359 (2): 353–360.
Article history
Received:
April 10 2001
Revision Received:
July 10 2001
Accepted:
August 07 2001
Citation
Klaus ZANGGER, Gong SHEN, Gülin ÖZ, James D. OTVOS, Ian M. ARMITAGE; Oxidative dimerization in metallothionein is a result of intermolecular disulphide bonds between cysteines in the α-domain. Biochem J 15 October 2001; 359 (2): 353–360. doi: https://doi.org/10.1042/bj3590353
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