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P Glatz

Publications and source records attributed to P Glatz.

4 recordsLinked to original sources

Cytochrome c interaction with yeast cytochrome b2. Heme distances determined by energy transfer in fluorescence resonance.

Fluorescent derivatives of cytochrome c were prepared by replacing the heme iron with closed-shell metals such as zinc or tin. The iron-free derivatives of cytochrome c bind to yeast lactate dehydrogenase (cytochrome b2) stoichiometrically and with high affinity. Spectral overlap exists between the fluorescence of porphyrin, Zn(II) or Sn(IV) cytochrome c and the absorption of the heme of cytochrome b; therefore dipole-dipole interaction is possible as predicted by Förster's theory of energy transfer. Changes in the fluorescence yield and the fluorescent decay profile of the cytochrome c derivatives are consistent with the view that the heme distance is sufficiently close for dipolar interactions. The distance calculated from the data depends upon assumptions in the theory for energy transfer and uncertainties in the experiment. It can be argued that due to the symmetry of the metalloporphyrins the relative orientations of the two hemes do not introduce a significant uncertainty in the calculation. However the decay profiles of the iron-free cytochromes are complex, possibly reflecting structural rearrangement of the polypeptide chain during the fluorescent lifetime. The steady-state fluorescent yields would indicate that the mean distance is around 1.8 nm.

Animals↗

Subzero temperature study of the inner mitochondrial membrane and related phospholipid membrane systems with the fluorescent probe, trans-parinaric acid.

The fluorescence intensity of trans-parinaric acid as a function of the temperature indicates a phase transition in bovine heart mitochondrial inner membranes below 0 degrees C. The comparison of the dye fluorescence intensity in intact inner mitochondrial membranes and in vesicles from extracted phospho lipids of mitochondria revealed a similar intensity increase with decreasing temperature. A synthetic phospholipid system of dioleoyl phosphatidylcholine was investigated because of its low phase transition temperature and showed a very definite intensity change at -25 degrees C. trans-Parinaric acid in membrane systems probes an environment of intermediate polarity; this was found from the excitation and emission spectra and from fluorescence decay.

Animals↗

Microsecond luminescence emission from copper cytochrome c.

The luminescence of Cu-substituted cytochrome c exhibits temperature-dependent decay modes and spectral shifts at temperatures below 80 K. By comparison with the data from metal-substituted porphyrins, we determined intramolecular rate parameters. The observed tripdoublet decay time is 13 +/- 1 mus at 77 K and the quartet decay time is 12 +/- 5 mus below 30 K. We also investigated the luminescence emission from Cu cytochrome c in the presence of cytochrome c depleted mitochondria and in the presence of soluble cytochrome c oxidase; upon binding, the intensity and decay time of the emission are altered. The results indicate an interaction between cytochrome c and its mitochondrial binding site which depends on the electronic state of cytochrome c.

Copper↗