2d f kreuzer s m cain z turek and t k goldstick eds

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2d. F. Kreuzer, S. M. Cain, Z. Turek, and T. K. Goldstick, eds., Oxygen Transport to Tissues VII, Plenum, 1984. 3a. P. Astrup and M. R0rth, eds., Oxygen Affinity of Hemoglobin and Red Cell Acid Base Status, Munks- gaard, 1972. 3b. G. L. Eichhorn, ed., Inorganic Biochemistry, Elsevier, 2 vols., 1973. 4. M. Brunori, A. Coletta, and B. Giardina, in P. M. Harrison, ed., Topics in Molecular and Structural Biology, Verlag Chemie, 7, Part 2 (1985), 263-331. 5. A. G. Sykes, in A. G. Sykes, ed., Advances in Inorganic and Bioinorganic Mechanisms, Academic Press,1 (1985), 121-178. 6. M. Brunori, B. Giardina, and H. A. Kuiper, in H. A. O. Hill, ed., Inorganic Biochemistry. Royal Society of Chemistry 3 (1982), 126-182. 7. R. E. Dickerson and 1. Geis, Hemoglobin: Structure. Function. Evolution. and Pathology, Benjamin/ Cummings, 1983. 8. H. F. Bunn, B. G. Forget, and H. M. Ranney, Human Hemoglobins, Saunders, 1977. 9. K. Imai, Allosteric Effects in Haemoglobin, Cambridge University Press, 1982. 10. E. Antonini and M. Brunori, Hemoglobin and Myoglobin in Their Reactions with Ligands, North Holland, 1971. Ila. M. F. Perutz, Nature 228 (1970), 726-739. lib. M. F. Perutz, Annu. Rev. Biochem. 48 (1979), 327-386. Ilc. M. F. Perutz et al., Ace. Chem. Res. 20 (1987), 309-321. 12. M. C. M. Chung and H. D. Ellerton, Prog. Biophys. Mol. Bioi. 35 (1979), 53-102. 13. J. Lamy and J. Lamy, eds., Invertebrate Oxygen-Binding Proteins: Structure. Active Site and Func- tion, Dekker, 1981. 14. H. D. Ellerton, N. F. Ellerton, and H. A. Robinson, Prog. Biophys. Mol. Bioi. 41 (1983), 143-248. 15a. K. E. van Holde and K. I. Miller, Quart. Rev. Biophys. 15 (1982), 1-129. 15b. K. D. Karlin and J. Zubieta, eds., Biological and Inorganic Chemistry of Copper, Academic Press, 2 vols., 1986. 16. P. C. Wilkins and R. G. Wilkins, Coord. Chem. Rev. 79 (1987), 195-214; in this see references to the original literature. 17. I. M. Klotz and D. M. Kurtz, Jr., Ace. Chem. Res. 17 (1984), 16-22. 18. J. Sanders Loehr and T. M. Loehr, Adv. Inorg. Blochem. 1 (1979), 235-252. 19. K. Denbigh, The Principles of Chemical Equilibrium, Cambridge University Press, 4th ed., 1981. 20. P. W. Atkins, Physical Chemistry, Freeman, 3d ed., 1986. 21. J. P. Collman, J. I. Brauman, and K. M. Doxsee, Proc. Natl. Acad. Sci. USA 76 (1979), 6035-6039. 22. D. Lexa et al., Inorg. Chem. 25 (1986), 4857-4865. 23. K. S. Suslick, M. M. Fox, and T. J. Reinert, J. Am. Chem. Soc. 106 (1984), 4522-4525. 24. A. V. Hill, J. Physiol. 40 (1910), iv-vii.
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V. REFERENCES 247 25a. R. W. Root, Bioi. Bull. (Woods Hole, Mass.) 61 (1931), 427-456. 25b. G. G. Dodson et al., J. Mol. Bioi. 211 (1990), 691-692. 26. G. S. Adair,1. Bioi. Chem. 63 (1925),529-545. 27. Reference 9, 114. 28. J. Monod, J. Wyman, and J.-P. Changeux, J. Mol. Bioi. 12 (1965), 88-118. 29a. M. L. Johnson, B. W. Turner, and G. K. Ackers, Proc. Natl. Acad. Sci. USA 81 (1984), 1093-1097. 29b. M. Straume and M. L. Johnson, Biochemistry 27 (1988), 1302-1310. 29c. G. K. Ackers and F. R. Smith, Annu. Rev. Biophys. Chem. 16 (1987), 583-609. 30. L. Pauling et al., Science, 110 (1949),543-548. 31. G. B. Jameson and J. A. Ibers, Comments Inorg. Chem. 2 (1983), 97-126; in this see references to the original literature. 32. Q. H. Gibson and M. H. Smith, Proc. Roy. Soc., Ser. B, Bioi. Sci. 163 (1965), 206-214. 33a. T. Imamura, A. Riggs, and Q. H. Gibson, 1. Bioi. Chem. 247 (1972), 521-526. 33b. J. B. Wittenberg, C. A. Appleby, and B. A. Wittenberg, 1. Bioi. Chem. 247 (1972), 527-531.
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