Molybdenum enzymes, cofactors, and model systems : developed from a symposium sponsored by the Division of Inorganic Chemistry at the 204th National Meeting of the American Chemical Society, Washington, DC, August 23-28, 1992 /
| Corporate Authors: | , |
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| Other Authors: | , , |
| Format: | eBook |
| Language: | English |
| Language Notes: | English. |
| Published: |
Washington, DC :
American Chemical Society,
1993.
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| Series: | ACS symposium series ;
535. |
| Subjects: | |
| Online Access: | Connect to the full text of this electronic book |
Table of Contents:
- Molybdenum enzymes, cofactors, and chemistry : an introductory survey / Edward I. Stiefel
- The reaction mechanism of xanthine oxidase / Russ Hille
- Biochemistry of the molybdenum cofactors / K.V. Rajagopalan
- The bacterial molybdenum cofactor / O. Meyer, K. Frunzke, J. Tachil, and M. Volk
- Models of pterin-containing molybdenum enzymes / Charles G. Young and Anthony G. Wedd
- Pterins, quinoxalines, and metallo-ene-dithiolates : synthetic approach to the molybdenum cofactor / Robert S. Pilato, K. Eriksen, M.A. Greaney, Y. Gea, E.C. Taylor, S. Goswami, L. Kilpatrick, T.G. Spiro, A.L. Rheingold, and Edward I. Stiefel
- Strategies for the synthesis of the cofactor of the oxomolybdoenzymes / C.D. Garner, E.M. Armstrong, M.J. Ashcroft, M.S. Austerberry, J.H. Birks, D. Collison, A.J. Goodwin, L. Larsen, D.J. Rowe, and J.R. Russell
- Molybdenum complexes of reduced pterins / Sharon J. Nieter Burgmayer, Kristin Everett, and Laura Bostick
- Chemical and physical coupling of oxomolybdenum centers and iron porphyrins : models for the molybdenum-iron interaction in sulfite oxidase / Michael J. LaBarre, Arnold Raitsimring, and John H. Enemark
- Nitrogenase structure, function, and genetics / Barbara K. Burgess
- Crystal structures of the iron protein and molybdenum-iron protein of nitrogenase / D.C. Rees, J. Kim, M.M. Georgiadis, H. Komiya, A.J. Chirino, D. Woo, J. Schlessman, M.K. Chan, L. Joshua-Tor, G. Santillan, P. Chakrabarti, and B.T. Hsu
- Structure and environment of metal clusters in the nitrogenase molybdenum-iron protein from Clostridium pasteurianum / Jeffrey T. Bolin, Nino Campobasso, Steven W. Muchmore, T. Vance Morgan, and Leonard E. Mortenson
- Biosynthesis of the iron-molybdenum cofactor of nitrogenase / Paul W. Ludden, Vinod K. Shah, Gary P. Roberts, Mary Homer, Ronda Allen, Tim Paustian, Jon Roll, Ranjini Chatterjee, Mark Madden, and Jeff Allen
- Role of the iron-molybdenum cofactor polypeptide environment in Azotobacter vinelandii molybdenum-nitrogenase catalysis / William E. Newton and Dennis R. Dean
- Extended X-ray absorption fine structure and L-edge spectroscopy of nitrogenase molybdenum-iron protein / J. Chen, J. Christiansen, S.J. George, J. van Elp, R. Tittsworth, B.J. Hales, S. Al-Ahmad, Dimitri Coucouvanis, Nino Campobasso, Jeffrey T. Bolin, and S.P. Cramer
- Redox properties of the nitrogenase proteins from Azotobacter vinelandii / G.D. Watt, H. Huang, and K.R.N. Reddy
- The molybdenum-iron protein of nitrogenase : structural and functional features of metal cluster prosthetic groups / W.H. Orme-Johnson
- Protein component complex formation and adenosine triphosphate hydrolysis in nitrogenase / James Bryant Howard
- Electron-transfer reactions associated with nitrogenase from Klebsiella pneumoniae / R.N.F. Thorneley, G.A. Ashby, K. Fisher, and D.J. Lowe
- Recent structure determinations of the molybdenum-iron protein of nitrogenase : impact on design of synthetic analogs for the iron-molybdenum-sulfur active site and the iron-molybdenum cofactor / Dimitri Coucouvanis
- Bonding, activation, and stabilization of small molecules by molybdenum-sulfur and iron-sulfur systems / Dieter Sellmann
- Chemical transformations of coordinated dinitrogen in molybdenum and tungsten phosphine complexes / Masanobu Hidai and Yasushi Mizobe
- Modeling the N-N bond-cleavage step in the reduction of molecular nitrogen to ammonia : protonation and electron-transfer reactions of dinitrogen, nitrogen hydride, and organonitrogen complexes of molybdenum and tungsten / T. Adrian George and Jeffery R.D. DeBord.