By Raymond Y. N. Ho, Joel F. Liebman (auth.), Joan Selverstone Valentine, Christopher S. Foote, Arthur Greenberg, Joel F. Liebman (eds.)
The box of "Oxygen Activation" has attracted massive curiosity lately, not just since it offers demanding situations in these fields of uncomplicated examine that target to appreciate the elemental features of chemical and organic reactions that contain dioxygen, but in addition as a result of its wide selection of functional implications in such varied fields as medication, synthesis of prescription drugs and different natural compounds, fabrics technology, and atmospheric technological know-how. this is often the second one of 2 volumes that concentrate on the topic of oxygen activation, the 1st slanted towards chemistry and the second one towards organic chemistry. We deliberate those volumes to be extra normal than many monographs of this type, no longer as particular summaries of the authors' personal learn yet really as normal overviews of the sphere. Our number of subject matters used to be strongly encouraged by way of our syllabus for a direction entitled "Oxygen Chemistry," which people have two times taught together at UCLA. Definition of significant concerns, horizons, and destiny customers used to be a big objective, and, even though absolutely complete insurance used to be impossible, we think that we have got selected a consultant collection of study themes present to the sphere. we've got detailed this paintings to a various viewers starting from pros in fields from physics to drugs to starting graduate scholars who're attracted to speedily buying the fundamentals of this field.
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Extra resources for Active Oxygen in Biochemistry
J. Am. Chern. , 98, 28092815. GEORGE, P. (1965) The Fitness of Oxygen, in Oxidases and Related Redox Systems (T. E. King, H. S. Mason, and M. ), John Wiley and Sons, New York, pp. 3-36. References 33 GRIFFITH, J. S. (1956) On the Magnetic Properties of Some Hemoglobin Complexes. Proc. R. Soc. London Ser. A, 235, 23-36. GROVES, J. T. (1985) Key Elements of the Chemistry of Cytochrome P-450. The Oxygen Rebound Mechanism. ,. Chem. , 62, 928-931. , and FOURNARI, P. (1976) The First Peroxometalloporphyrin with Dioxygen Symmetrically Bonded by Both Atoms; Synthesis and X-Ray Crystal Structure of Peroxotitaniumoctaethylporphyrin.
Am. Chern. , 111, 8413-8420. URBAN, M. , and BASOLO, F. (1982) Infrared Spectra of Molecular Oxygen Adducts of (Tetraphenylporphyrinato) Manganese(II) in Argon Matrices. Inorg. Chern. 21, 3406-3408. VALENTINE, J. S. (1994) Dioxygen Reactions, in Bioinorganic Chemistry (1. Bertini, H. B. Gray, S. J. Lippard, and J. S. ), University Science Books, Mill Valley, CA, pp. 253-313. VANNGARD, T. (1988) Biophysical Chemistry of Dioxygen Reactions in Respiration and Photosynthesis, Cambridge University Press, Cambridge.
1966; Heicklen, 1981; Jeong and Kaufman, 1982). Fellp + O2 ~ FeIIIP(Oi) ~ [FeIIJp(O~-W ~ FeIIJ1P(00H-) ferric superoxo ferric peroxo (19) ferric hydroperoxo homolytic 0-0 bond cleavage: FeIIIP(OOH-) ~ Fe IV P(02-) + HO' (20) heterolytic 0-0 bond cleavage: FeIIJP(OOH-) ~ [Fe IV (P')(0)2-W + HO(21) (P = porphyrin ligand; it has a T charge. p. ) The high-valent iron-oxo complex, formed via heterolytic cleavage (reaction 21), is the favored intermediate for direct reaction with substrate in cytochrome P-450.
Active Oxygen in Biochemistry by Raymond Y. N. Ho, Joel F. Liebman (auth.), Joan Selverstone Valentine, Christopher S. Foote, Arthur Greenberg, Joel F. Liebman (eds.)