Corner-Cutting Tunneling in Hydride Transfer Between NAD+ Analogues

  • Kreevoy, Maurice M.
  • Lee Han, In-Sook
Citations

SCOPUS

16

초록

If hydride transfer from a donor, AjH, to an acceptor, Aj+, involves tunneling, phenomenological theory suggests a characteristic functional relation between rate constants and the equilibrium constant, i. e. between In(kij, H/kij, D) and In Kij. Tunneling occurs at a heavy atom separation larger than that of the transition state (saddle point). This gives the critical configuration (point of no-return)for H-transfer a larger heavy atom separation than that for D-transfer and leads to the pattern described through a corollary of Marcus theory of atom transfer. The theory is called corner-cutting because it shortens the path which represents the reaction in multi-dimensional potential energy space. If the reactions are moderately spontaneous and the variation in structure which generates the variation in kij. H, kij. D and Kij is in the acceptor, the slope of the plot of In (kij. H/kij. D) against In Kij is expected to be negative; if the structure variation is in the donor it is expected to be positive. Similar results are expected for proton and hydrogen atom transfer. This behavior has now been observed, for hydride transfer between various nitrogen heterocycles (all of which may be regarded as analogues of the enzymatic cofactor, NAD +). These reactions have kij. H/kij. D∼5. The increase of kij. H/kij. D, with increasing Kij, reported in this paper, is particularly hard to explain without corner-cutting. The present results, therefore, support the view that some tunneling is involved in most hydrogen transfer reactions, even when no anomalies are obvious. © 1989, Verlag der Zeitschrift für Naturforschung. All rights reserved.

제목
Corner-Cutting Tunneling in Hydride Transfer Between NAD+ Analogues
저자
Kreevoy, Maurice M.Lee Han, In-Sook
DOI
10.1515/zna-1989-0511
발행일
1989
유형
Article
저널명
Zeitschrift für Naturforschung - Section A Journal of Physical Sciences
44
5
페이지
418 ~ 426