EPR FOR VANADYL SUPEROXIDE DISMUTASE DERIVATIVES

  • Beinert, Helmut (PI)
  • Gunther, null M. (PI)
  • Juckett, Mark B (PI)
  • Hasan-qaseer, Hanan (PI)

Project: Research project

Project Details

Description

Vanadyl, VO(2+), was used as an electron paramagnetic resonance (EPR) spin label to study the metal-binding properties of bovine copper, zinc-superoxide dismutase (Cu,Zn-SOD). The vanadyl SOD derivative was prepared in 0.10 M HEPES, pH 7.4, at a ratio of 2:4:1 of VO(2+):dithionite:apo-SOD, and under a nitrogen atmosphere. X-band EPR titrations indicated that two VO2+ ions bound strongly to the protein dimer establishing a 1:1 stoichiometry per subunit. A comparison of the EPR parameters g-parallel and A-parallel obtained for the protein derivative with those previously reported for model compounds indicated that VO(2+) is bound at the native copper site. Exposure of the vanadyl SOD derivative to air for 90 min showed a decrease of approximately 35% in the peak intensity of the EPR spectrum indicating slow oxidation of VO(2+) in the protein derivative. X-band EPR titrations of the zinc-only derivative (E,Zn-SOD, E = empty) with VO(2+) showed that the occupation of the native zinc site decreased the binding of VO(2+) to the native copper site. Addition of VO(2+) to native protein under similar experimental conditions gave a characteristic Cu(2+) EPR spectrum ruling out adventitious binding of VO(2+) to amino acid residues not at the active site of bovine Cu,Zn-SOD. The peak potential values measured by cyclic voltammetry at pH 4.0 for VO,E-SOD and native Cu,Zn-SOD were +425 mV and +300 mV, respectively. The SOD activity of VO,E-SOD was examined by using the indirect xanthine oxidase/cytochrome c assay method. However, the derivative was found to be SOD inactive. We conclude that vanadyl can be used to probe the metal binding properties of the copper site in Cu,Zn-SOD. [unreadable]
StatusFinished
Effective start/end date10/1/959/30/01

Funding

  • National Center for Research Resources: $14,500.00

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  • NATIONAL BIOMEDICAL ESR CENTER

    Hyde, J. S., Ahmed, N. M. S., Nakanishi, A. A. L., Alzate, O., Antholine, W. E., Baker, J. E., Kalyanaraman, B. B., Berengian, A., Bose, S., Bennett, B. B., Burdi, D., Freeman, B. B. A., Klug, C. C. S., Narasimhan, C. C., Chikira, N. M., Bochek, C. C., Cronan, C. L., Farrens, D. D. L., Eaton, J. W., Moore, E. E. G., Hustedt, E. E. J., Konorev, E. E., Lianos, E. E., Feix, J. B., Ferguson, E., Neese, F. F., Goodell, B., Gunther, N. M., Karoui, H. H., Hasan, H., Koteiche, H. H., Harohalli, K., Hasan-qaseer, H., Beinert, H. H., Hoffman, B. M., Hogg, N., Yuan, H. H., Hyde, J. S., Janssen, Y. M., Vasquez Vivar, J. J. M., Joseph, J., Pritchard, J. J., Kennedy, N. M. C., Kiley, P. J., Kroneck, P. H., Kroneck, P. M., Pritchard, K. A., Li, N. W., Lu, Y., Ang, M. M. C., Martasek, P., Masters, B. S. S., Mchaourab, H., Mchaourab, H. S., Merker, M. P., Miller, C., Miziorko, H. M., Myers, C. R., Juckett, M. B., Nealson, K. H., O'donnell, V. B., Ogata, K., Pace, N. M. D., Parfenova, M., Patel, R. P., Perozo, E. A., Petering, D. H., Peterson, C., Pieper, G. M., Ratke, J. J., Krishna, R. R. M., Richter, C., Houser, R. R. P., Eisenstein, R. R. S., Amid, S. S., Said, A., Sarna, T., Silver, S., Singh, R. J., Smalley, D. M., Staples, C., Goss, S. S. P., Stout, N. C. D., Subczynski, W. K., Swartz, H. M., Herman, T. T., Barr, T. T. L., Kallas, T. T., Vasquez-vivar, N. J., Walden, W., Li, W. W., Willems, J., Wisniewska, A., Froncisz, W., Jiang, X. X. Q., Amonette, J., Arnold, E., Blicharski, W., Cao, Z., Christidis, T., Freeman, B. A., Fulmer, P., Goss, S. P., Grinberg, O., Houser, R. P., Juckett, M. B., Klug, C. S., Li, W., Liu, J., Pfenninger, S., Piasecki, W., Rogers, M., Sariciftci, N. N., Sun, Z., Surerus, K., Windle, J., Yin, J. & Yuan, H.

    3/1/852/28/02

    Project: Research project