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The crystal structure of the microbial urease from Klebsiella aerogenes shows the nickel(II) ions to be bridged by the carboxylate function of a carbamylated lysine residue. The coordination of the nickel ions is described as pseudotetrahedral (Ni(1): 2N, 2O) and trigonal bipyramidal (Ni(2): 2N, 3O); see ref 3. The low coordination numbers of both nickel ions contrast in some ways with the predictions of earlier spectroscopic and magnetochemical studies where the metal ions have been described to be five- or six-coordinated within a mixed nitrogen-oxygen donor environment: (a) Wang, S.; Lee, M. H.; Hausinger, R. P.; Clark, P. A ; Wilcox, D. E.; Scott, R. A. Inorg Chem. 1994, 33, 1589. (b) Day, E. P.; Peterson, J.; Sendova, M. S.; Todd, M. J.; Hausinger, R. P. Inorg. Chem. 1993, 32, 634. (c) Clark, P. A.; Wilcox, D. E. Inorg. Chem. 1989, 28, 1326. Clark, P. A.; Wilcox, D. E.; Scott, R. A. Inorg. Chem. 1990, 29, 579.
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The crystal structure of the microbial urease from Klebsiella aerogenes shows the nickel(II) ions to be bridged by the carboxylate function of a carbamylated lysine residue. The coordination of the nickel ions is described as pseudotetrahedral (Ni(1): 2N, 2O) and trigonal bipyramidal (Ni(2): 2N, 3O); see ref 3. The low coordination numbers of both nickel ions contrast in some ways with the predictions of earlier spectroscopic and magnetochemical studies where the metal ions have been described to be five- or six-coordinated within a mixed nitrogen-oxygen donor environment: (a) Wang, S.; Lee, M. H.; Hausinger, R. P.; Clark, P. A ; Wilcox, D. E.; Scott, R. A. Inorg Chem. 1994, 33, 1589. (b) Day, E. P.; Peterson, J.; Sendova, M. S.; Todd, M. J.; Hausinger, R. P. Inorg. Chem. 1993, 32, 634. (c) Clark, P. A.; Wilcox, D. E. Inorg. Chem. 1989, 28, 1326. Clark, P. A.; Wilcox, D. E.; Scott, R. A. Inorg. Chem. 1990, 29, 579.
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