Reactivity of nitrogen nucleophiles towards S-nitrosopenicillamine

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Andrew P. Munro and D. Lyn H. Williams


Abstract

We report the results of a kinetic study of the reactions of a number of nitrogen nucleophiles with the nitrosothiol S-nitrosopenicillamine (SPEN). The range of nucleophiles includes primary, secondary and tertiary aliphatic amines, together with hydrazine, hydroxylamine, azide ion, ammonia, semicarbazide, thiomorpholine and S-methylcysteine. Secondary amines form N-nitrosamines quantitatively. As expected, reaction occurs via the free base forms of the nucleophiles and consequently most of the reactions take place readily only at relatively high pH. Experiments were carried out with [nucleophile] [double greater-than, compressed] [RSNO], and for many reactions, plots of the first order rate constant vs. [nucleophile] were linear. For ammonia and the primary amines, however, this plot tended to level off at high [nucleophile] and an explanation is offered involving the reversible formation of an inactive RSNO–amine complex, for which there is spectral evidence, in parallel with the main reaction. For the secondary amines there is a reasonably good Brönsted plot with a β value of ≈0.2. The much greater reactivities of S-methylcysteine and thiomorpholine, compared to those of primary amines and morpholine respectively are consistent with initial attack at the sulfur atom, followed by an internal rearrangement. Over the whole range of nucleophiles studied there is a reasonable correlation with the Ritchie N[hair space] + parameter, and not with the Pearson n scale. Comparisons are made with the corresponding reactions of alkyl nitrites and N-methyl-N-nitrosotoluene-p-sulfonamide (MNTS).


References

  1. P. L. Feldman, O. W. Griffith and D. J. Stuehr, Chem. Eng. News, 1993, Dec. 20, 26.
  2. J. S. Stamler, O. Jaraki, J. Osborne, D. I. Simon, J. Keaney, J. Vita, D. Singel, C. R. Valeri and J. Loscalzo, Proc. Natl. Acad. Sci. USA, 1992, 89, 7674 CAS.
  3. E. J. Langford, A. S. Brown, R. J. Wainwright, A. J. de Belder, M. R. Thomas, R. E. A. Smith, M. W. Radomski, J. F. Martin and S. Moncada, Lancet, 1994, 344, 1458 CrossRef CAS; A. de Belder, C. Lees, J. Martin, S. Moncada and S. Campbell, Lancet, 1995, 345, 124 CrossRef CAS.
  4. D. L. H. Williams, Chem. Soc. Rev., 1985, 14, 171 RSC.
  5. A. P. Dicks, H. R. Swift, D. L. H. Williams, A. R. Butler, H. H. Al-Sa'doni and B. G. Cox, J. Chem. Soc., Perkin Trans. 2, 1996, 481 RSC.
  6. A. P. Dicks and D. L. H. Williams, Chem. Biol., 1996, 3, 655 CrossRef CAS.
  7. S. Oae, Y. H. Kim, D. Fukushima and K. Shinhama, J. Chem. Soc., Perkin Trans. 1, 1978, 913 RSC; J. W. Park, Biochem. Biophys. Res. Commun., 1988, 152, 916 CAS.
  8. D. J. Meyer, H. Kramer, N. Ozer, B. Coles and B. Ketterer, FEBS Lett., 1994, 345, 177 CrossRef CAS; D. J. Barnett, J. McAninly and D. L. H. Williams, J. Chem. Soc., Perkin Trans. 2, 1994, 1131 RSC.
  9. D. J. Barnett, A. Rios and D. L. H. Williams, J. Chem. Soc., Perkin Trans. 2, 1995, 1279 RSC.
  10. S. C. Askew, D. J. Barnett, J. McAninly and D. L. H. Williams, J. Chem. Soc., Perkin Trans. 2, 1995, 741 RSC.
  11. J. S. Stamler, D. I. Simon, J. A. Osborne, M. E. Mullins, O. Jaraki, T. Michel, D. J. Singel and J. Loscalzo, Proc. Natl. Acad. Sci. USA, 1992, 89, 444 CAS.
  12. A. J. Holmes and D. L. H. Williams, Chem. Commun., 1998, 1711 RSC.
  13. P. J. Coupe and D. L. H. Williams, J. Chem. Soc., Perkin Trans. 2, 1999, 1057 RSC.
  14. S. Oae and K. Shinhama, Org. Prep. Proc. Int., 1983, 15, 165 CAS.
  15. S. Oae, N. Asai and K. Fujimori, J. Chem. Soc., Perkin Trans. 2, 1978, 1124 RSC; J. Casado, A. Castro, F. Lorenzo and F. Meijide, Monatsh. Chem., 1986, 117, 335 CAS.
  16. L. Garcia-Rio, E. Iglesias, J. R. Leis, M. E. Pena and A. Rios, J. Chem. Soc., Perkin Trans. 2, 1993, 29 RSC.
  17. J. T. Thompson and D. L. H. Williams, J. Chem. Soc., Perkin Trans 2, 1977, 1932 RSC; S. S. Singer, J. Org. Chem., 1978, 43, 4612 CrossRef CAS; C. L. Bumgardner, K. S. McCallum and J. P. Freeman, J. Am. Chem. Soc., 1961, 83, 4417 CrossRef CAS.
  18. A. P. Dicks, E. Li, A. P. Munro, H. R. Swift and D. L. H. Williams, Can. J. Chem., 1998, 76, 789 CrossRef CAS.
  19. D. D. Perrin, Dissociation Constants of Organic Bases in Aqueous Solution, Butterworths, London, 1965 Search PubMed.
  20. A. Castro, J. R. Leis and M. E. Pena, J. Chem. Soc., Perkin Trans. 2, 1989, 1861 RSC.
  21. J. R. Leis, M. E. Pena and A. M. Rios, J. Chem. Soc., Perkin Trans. 2, 1995, 587 RSC.
  22. D. L. H. Williams, Nitrosation, Cambridge University Press, Cambridge, 1988, pp. 98–101 and references therein Search PubMed.
  23. A. P. Munro and D. L. H. Williams, unpublished work.
  24. T. A. Meyer and D. L. H. Williams, J. Chem. Soc., Chem. Commun., 1983, 1067 RSC.
  25. T. Tahira, M. Tsuda, K. Wakabayashi, M. Nugao and T. Sugimura, Gann, 1984, 75, 889 Search PubMed.
  26. A. Castro, E. Iglesias, J. R. Leis, J. V. Tato, F. Meijide and M. E. Pena, J. Chem. Soc., Perkin Trans. 2, 1987, 651 RSC.
  27. R. G. Pearson, H. Sobel and J. Songstad, J. Am. Chem. Soc., 1968, 90, 319 CrossRef CAS.
  28. C. D. Ritchie, J. Am. Chem. Soc., 1975, 97, 1170 CrossRef CAS.
  29. S. Hoz, Acc. Chem. Res., 1993, 26, 69 CrossRef CAS.
  30. S. S. Shaik, J. Org. Chem., 1987, 52, 1563 CrossRef CAS.
  31. G. Klopman, J. Am. Chem. Soc., 1968, 90, 223 CrossRef CAS.
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