NMR and electron-paramagnetic-resonance studies of a dihaem cytochrome from Pseudomonas stutzeri (ATCC 11607) (cytochrome c peroxidase). 1984

J Villalaín, and I Moura, and M C Liu, and W J Payne, and J LeGall, and A V Xavier, and J J Moura

A dihaem cytochrome (Mr 37 400) with cytochrome c peroxidase activity was purified from Pseudomonas stutzeri (ATCC 11 607). The haem redox potentials are far apart: one of the haems is completely ascorbate-reducible and the other is only reduced by dithionite. The coordination, spin states and redox properties of the covalently bound haems were probed by visible, NMR and electron paramagnetic resonance (EPR) spectroscopies in three oxidation states. In the oxidized state, the low-temperature EPR spectrum of the native enzyme is a complex superimposition of three components: (I) a low-spin haem indicating a histidinyl-methionyl coordination; (II) a low-spin haem indicating a histidinyl-histidinyl coordination; and (III) a minor high-spin haem component. At room temperature, NMR and optical studies indicate the presence of high-spin and low-spin haems, suggesting that for one of the haems a high-spin to low-spin transition is observed when temperature is decreased. In the half-reduced state, the component I (high redox potential) of the EPR spectrum disappears and induces a change in the g-values and linewidth of component II; the high-spin component II is no longer detected at low temperature. Visible and NMR studies reveal the presence of a high-spin ferric and a low-spin (methionyl-coordinated) ferrous state. The NMR data fully support the haem-haem interaction probed by EPR. In the reduced state, the NMR spectrum indicates that the low-potential haem is high-spin ferrous.

UI MeSH Term Description Entries
D009682 Magnetic Resonance Spectroscopy Spectroscopic method of measuring the magnetic moment of elementary particles such as atomic nuclei, protons or electrons. It is employed in clinical applications such as NMR Tomography (MAGNETIC RESONANCE IMAGING). In Vivo NMR Spectroscopy,MR Spectroscopy,Magnetic Resonance,NMR Spectroscopy,NMR Spectroscopy, In Vivo,Nuclear Magnetic Resonance,Spectroscopy, Magnetic Resonance,Spectroscopy, NMR,Spectroscopy, Nuclear Magnetic Resonance,Magnetic Resonance Spectroscopies,Magnetic Resonance, Nuclear,NMR Spectroscopies,Resonance Spectroscopy, Magnetic,Resonance, Magnetic,Resonance, Nuclear Magnetic,Spectroscopies, NMR,Spectroscopy, MR
D010084 Oxidation-Reduction A chemical reaction in which an electron is transferred from one molecule to another. The electron-donating molecule is the reducing agent or reductant; the electron-accepting molecule is the oxidizing agent or oxidant. Reducing and oxidizing agents function as conjugate reductant-oxidant pairs or redox pairs (Lehninger, Principles of Biochemistry, 1982, p471). Redox,Oxidation Reduction
D010544 Peroxidases Ovoperoxidase
D011549 Pseudomonas A genus of gram-negative, aerobic, rod-shaped bacteria widely distributed in nature. Some species are pathogenic for humans, animals, and plants. Chryseomonas,Pseudomona,Flavimonas
D002621 Chemistry A basic science concerned with the composition, structure, and properties of matter; and the reactions that occur between substances and the associated energy exchange.
D003486 Cyanides Inorganic salts of HYDROGEN CYANIDE containing the -CN radical. The concept also includes isocyanides. It is distinguished from NITRILES, which denotes organic compounds containing the -CN radical. Cyanide,Isocyanide,Isocyanides
D003578 Cytochrome-c Peroxidase A hemeprotein which catalyzes the oxidation of ferrocytochrome c to ferricytochrome c in the presence of hydrogen peroxide. EC 1.11.1.5. Cytochrome Peroxidase,Cytochrome c-551 Peroxidase,Cytochrome c 551 Peroxidase,Cytochrome c Peroxidase,Peroxidase, Cytochrome,Peroxidase, Cytochrome c-551,Peroxidase, Cytochrome-c
D004578 Electron Spin Resonance Spectroscopy A technique applicable to the wide variety of substances which exhibit paramagnetism because of the magnetic moments of unpaired electrons. The spectra are useful for detection and identification, for determination of electron structure, for study of interactions between molecules, and for measurement of nuclear spins and moments. (From McGraw-Hill Encyclopedia of Science and Technology, 7th edition) Electron nuclear double resonance (ENDOR) spectroscopy is a variant of the technique which can give enhanced resolution. Electron spin resonance analysis can now be used in vivo, including imaging applications such as MAGNETIC RESONANCE IMAGING. ENDOR,Electron Nuclear Double Resonance,Electron Paramagnetic Resonance,Paramagnetic Resonance,Electron Spin Resonance,Paramagnetic Resonance, Electron,Resonance, Electron Paramagnetic,Resonance, Electron Spin,Resonance, Paramagnetic
D006863 Hydrogen-Ion Concentration The normality of a solution with respect to HYDROGEN ions; H+. It is related to acidity measurements in most cases by pH pH,Concentration, Hydrogen-Ion,Concentrations, Hydrogen-Ion,Hydrogen Ion Concentration,Hydrogen-Ion Concentrations
D013696 Temperature The property of objects that determines the direction of heat flow when they are placed in direct thermal contact. The temperature is the energy of microscopic motions (vibrational and translational) of the particles of atoms. Temperatures

Related Publications

J Villalaín, and I Moura, and M C Liu, and W J Payne, and J LeGall, and A V Xavier, and J J Moura
September 1981, Biochimica et biophysica acta,
J Villalaín, and I Moura, and M C Liu, and W J Payne, and J LeGall, and A V Xavier, and J J Moura
June 1984, European journal of biochemistry,
J Villalaín, and I Moura, and M C Liu, and W J Payne, and J LeGall, and A V Xavier, and J J Moura
August 2007, Chembiochem : a European journal of chemical biology,
J Villalaín, and I Moura, and M C Liu, and W J Payne, and J LeGall, and A V Xavier, and J J Moura
June 1985, Biochemical Society transactions,
J Villalaín, and I Moura, and M C Liu, and W J Payne, and J LeGall, and A V Xavier, and J J Moura
September 1995, Biochimica et biophysica acta,
J Villalaín, and I Moura, and M C Liu, and W J Payne, and J LeGall, and A V Xavier, and J J Moura
June 1994, European journal of biochemistry,
J Villalaín, and I Moura, and M C Liu, and W J Payne, and J LeGall, and A V Xavier, and J J Moura
January 2003, Journal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry,
J Villalaín, and I Moura, and M C Liu, and W J Payne, and J LeGall, and A V Xavier, and J J Moura
February 1997, Structure (London, England : 1993),
J Villalaín, and I Moura, and M C Liu, and W J Payne, and J LeGall, and A V Xavier, and J J Moura
July 1981, The Journal of biological chemistry,
J Villalaín, and I Moura, and M C Liu, and W J Payne, and J LeGall, and A V Xavier, and J J Moura
August 2011, Journal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry,
Copied contents to your clipboard!