115 r breslow in r f gould ed bioinorganic chemistry

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115. R. Breslow, in R. F. Gould, ed., Bioinorganic Chemistry (Advances in Chemistry Series, vol. 100), American Chemical Society, 1971; Chapter 2. 116. A. Schepartz and R. Breslow, 1. Am. Chem. Soc. 109 (1987), 1814. 1l7. J. T. Groves and R. R. Chambers, Jr., J. Am. Chem. Soc. 106 (1984),630. 118. M. A. Wells and T. C. Bruice, 1. Am. Chem. Soc. 99 (1977), 5341. 119. H. Sigel, ed., Metal Ions in Biological Systems, Dekker, 5 (1976). 120. N. E. Dixon and A. M. Sargeson, in Reference 33. 121. R. W. Hay, G. Wilkinson, R. D. Gillard, and J. A. McCleverty, eds., in Comprehensive Coordination Chemistry, Pergamon Press, 1987. 122. D. C. Rees, M. Lewis, and W. N. Lipscomb, 1. Mol. Bioi. 168 (1983), 367. 123. D. C. Rees et al., in Reference 21, p. 155. 124. D. S. Auld, K. Larson, and B. L. Vallee, in Reference 21, p. 133. 125. W. J. Rutter, personal communication. 126. D. Hilvert et al., 1. Am. Chem. Soc. 108 (1986), 5298. 127. S. J. Gardell et al., 1. Bioi. Chem. 262 (1987), 576. 128. D. S. Auld et al., Biochemistry, 31 (1992), 3840; W. L. Mock and J. T. Tsay, 1. Bioi. Chem. 263 (1988), 8635. 129. G. Shoham, D. C. Rees, and W. N. Lipscomb, Proc. Natl. Acad. Sci. USA 81 (1984), 7767. 130. K. F. Geoghegan et al., Biochemistry 22 (1983), 1847. 131. I. Bertini et al., 1. Inorg. Biochem. 32 (1988), 13. 132. C. Luchinat et al., 1. Inorg. Biochem. 32 (1988), I. 133. R. Bicknell et al., Biochemistry 27 (1988), 1050. 134. I. Bertini et al., Biochemistry 27 (1988),8318. 135. M. E. Sander and H. Witzel, in Reference 21, p. 207. 136. M. W. Makinen, in Reference 21, p. 215.
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VII. REFERENCES 137. D. W. Christianson and W. N. Lipscomb, Ace. Chem. Res. 22 (1989),62. 138. D. W. Christianson et al., J. Bioi. Chem. 264 (1989), 12849. 139. B. W. Matthews, Ace. Chem. Res. 21 (1988), 333, and references therein. 140. B. S. Cooperman, in Reference 119. 141. D. M. Blow, J. J. Birktoft, and B. S. Hartley, Nature 221 (1969), 337. 142. R. C. Nordlie, in P. D. Boyer, ed., T he Enzymes, Academic Press, 3d ed., 4 (1975), 543. 143. R. Breslow et al., Proc. Natl. Acad. Sci. USA 80 (1983), 4585. 144. H. W. Wyckoff et al., Adv. Enzymol. 55 (1983), 453. 145. E. E. Kim and H. W. Wyckoff, J. Mol. Bioi. 218 (1991), 449. 146. L. Banci et aI., J. Inorg. Biochem. 30 (1987), 77. 147. P. Gettins and J. E. Coleman, J. Bioi. Chem. 259 (1984), 11036. 148. I. Bertini et al., Inorg. Chem. 28 (1989),352. 149. A. Chaidaroglou et al., Biochemistry 27 (1988), 8338. ISO. E. C. Dinovo and P. D. Boyer, J. Bioi. Chem. 246 (1971), 4586. lSI. H. Dutler, A. Ambar, and J. Donatsch, in Reference 21, p. 471. 152. H. Eklund and c.-I. Branden, in Biological Macromolecules and Assemblies, Wiley, 1985. 153. c.-I. Branden et al., The Enzymes 11 (1975), 104. 154. E. S. Cedergren-Zeppezauer, in Reference 21, p. 393. ISS. H. Theorell, Feder. Proc. 20 (1961),967. 156. M. W. Makinen and W. Maret, in Reference 21, p. 465. 157. J. Kvassman and G. Pettersson, Eur. J. Biochem. 103 (1980), 565. 158. P. F. Cook and W. W. Cleland, Biochemistry 20 (1981),1805. 159. I. Bertini et al., 1. Am. Chem. Soc. 106 (1984), 1826. 160. W. Maret et al., 1. Inorg. Biochem. 12 (1980),241. 161. H. B. Gray and E. I. Solomon, in Reference 27, p. 1. 162. J. S. Valentine and M. W. Pantoliano, in Reference 27, p. 291. 163. M. F. Dunn, A. K. H. MacGibbon, and K. Pease, in Reference 21, p. 486. 164. I. Bertini et al., Eur. Biophys. J. 14 (1987), 431. 165. W. Maret and M. Zeppezauer, Biochemistry 25 (1986), 1584. 166. C. Sartorius, M. Zeppezauer, and M. F. Dunn, Rev. Port. Quim. 27 (1985), 256; C. Sartorius et al., Biochemistry 26 (1987), 871. 167. G. Pettersson, in Reference 21, p. 451. 168. E. Garces and W. W. Cleland, Biochemistry 8 (1969), 633.
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