Skip to main content
Log in

Conformational changes in hemoglobin triggered by changing the iron charge

  • Published:
Hyperfine Interactions Aims and scope Submit manuscript

Abstract

In this work the hemoglobin conformational changes induced by changing the iron charge have been studied and compared with Myoglobin. Mössbauer spectroscopy was used to follow the change of the iron conformation. In order to compare the conformational relaxation of hemoglobin and myoglobin, and to study a possible influence of the quaternary structure, an intermediate metastable state of hemoglobin has been created by low temperature X-ray irradiation of methemoglobin. The irradiation reduces the Fe(III) of the heme groups to Fe(II) Low Spin, where the water is still bound on the sixth coordination. Heating cycles performed at temperatures from 140 K to 200 K allow the molecules to overcome an activation energy barrier and to relax into a stable conformation such as deoxy-hemoglobin or carboxy-hemoglobin, if CO is present. Slightly different structures (conformational substates) reveal themselves as a distribution of energy barriers (ΔG#). The distribution of the activation energy, for the decay of the Fe(II) Low Spin intermediate, has been fitted with a Gaussian. For comparison, published myoglobin data were re-analysed in the same way. The average energy value at characteristic temperature is very similar in case of myoglobin and hemoglobin. The larger Gaussian energy distribution for myoglobin with respect to hemoglobin shows that more conformational substates are available. This may be caused by a larger area exposed to water. In hemoglobin, part of the surface of the chains is not water accessible due to the quaternary structure.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  1. Parak, F.G., Nienhaus, G.U.: Myoglobin, a paradigm in the study of protein dynamics. Chem. Phys. Chem. 3, 249–254 (2002)

    Google Scholar 

  2. Frauenfelder, H., Parak, F., Young, R.D.: Conformational substates in proteins. Annu. Rev. Biophys. Biophys. Chem. 17, 451–479 (1988)

    Article  Google Scholar 

  3. Austin, R.H., Beeson, K.W., Eisenstein, L., Frauenfelder, H., Gunsalus, I.C., Austin: Dynamics of ligand binding to myoglobin. Biochemistry 14(24), 5355–5373 (1975)

    Article  Google Scholar 

  4. Young, R.D., Bowne, S.F.: Conformational substates and barrier height distributions in ligand binding to heme proteins. J. Chem. Phys. 81, 3730–3737 (1984)

    Article  ADS  Google Scholar 

  5. Parak, F., Formanek, H.: Untersuchung des Schwingungsanteils und des Kristallgitterfehleranteils des Temperaturfaktors in Myoglobin durch Vergleich von Mössbauerabsorptionsmessungen mit Röntgenstrukturdaten. Acta Crystallogr. A27, 573–578 (1971)

    ADS  Google Scholar 

  6. Parak, F., Knapp, E.W., Kucheida, D.: Protein dynamics. Mössbauer spectroscopy on deoxymyoglobin crystals. J. Mol. Biol. 161, 177–194 (1982)

    Article  Google Scholar 

  7. Doster, W., Cusack, S., Petry, W.: Dynamical transition of myoglobin revealed by inelastic neutron scattering. Nature 337, 754–756 (1989)

    Article  ADS  Google Scholar 

  8. Ferrand, M., Dianoux, A.J., Petry, W., Zaccai, G.: Thermal motions and function of bacteriorhodopsin in purple membranes: effects of temperature and hydration studied by neutron scattering. Proc. Natl. Acad. Sci. (USA) 90, 9669–9672 (1993)

    ADS  Google Scholar 

  9. Parak, F.: Protein in action: the physics of structural fluctuation and conformational changes. Curr. Opin. Struck. Biol. 13, 552–557 (2003)

    Article  Google Scholar 

  10. Bizzarri, A.R., Iakovleva, O.A., Parak, F.: Spin–lattice relaxation in Mössbauer spectra of metmyoglobin: investigation of crystals, water and water–glycerol solutions. Chem. Phys. 191, 185–194 (1995)

    Article  Google Scholar 

  11. Prusakov, V.E., Steyer, J., Parak, F.G.: Mössbauer spectroscopy on nonequilibrium states of myoglobin: a study of r–t relaxation. Biophys. J. 68, 2524–2530 (1995)

    ADS  Google Scholar 

  12. Chevion, M., Ilan, Y.A., Samuni, A., Navok, T., Czapski, G.: Quaternary structure of methemoglobin. Pulse radiolysis study of the binding of oxygen to the valence hybrid. J. Biom. Chem. 254(14), 6370–6374 (1979)

    Google Scholar 

  13. Teale, F.W.J.: Cleavage of the heme–protein link by acid methylethylketone. Biochim. Biophys. Acta 535, 543 (1959)

    Article  Google Scholar 

  14. Parak, F.: Physical aspects of proteins dynamics. Rep. Prog. Phys. 66, 103–129 (2003)

    Article  ADS  Google Scholar 

  15. Salvay, A.G., Grigera, J.R., Colombo, M.F.: The role of hydration on the mechanism of allosteric regulation: in situ measurements of the oxygen-link kinetics of water binding to hemoglobin. Biophys. J. 84, 564–570 (2003)

    Article  ADS  Google Scholar 

  16. Schmidt, M., Parak, F., Corongiu, G.: Density distributions in the water shell of myoglobin. Int. J. Quant. Chem. 59, 263–269 (1996)

    Article  Google Scholar 

  17. Parak, F., Hartmann, H., Schmidt, M., Corongiu, G., Clementi, E.: The hydration shell of myoglobin. Eur. Biophys. J. 21, 313–320 (1992)

    Article  Google Scholar 

  18. Parak, F., Hartmann, H., Schmidt, M., Corongiu, G.: The hydration of myoglobin molecules. In: Palma MBP-V, M.U., Parak, F. (eds.) Conf. Proc. Ital. Phys. Soc., vol. 43, pp. 5–122 (1993)

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to S. Croci.

Rights and permissions

Reprints and permissions

About this article

Cite this article

Croci, S., Achterhold, K., Ortalli, I. et al. Conformational changes in hemoglobin triggered by changing the iron charge. Hyperfine Interact 185, 103–110 (2008). https://doi.org/10.1007/s10751-008-9813-7

Download citation

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1007/s10751-008-9813-7

Keywords

Navigation