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Article
Oxidation Of Adenosine And Inosine: The Chemistry Of 8-oxo-7,8-dihydropurines, Purine Iminoquinones, And Purine Quinones As Observed By Ultrafast Spectroscopy
Journal Of The American Chemical Society
  • Denis I. Nilov
  • Dmitry Y. Komarov
  • Maxim S. Panov
  • Kanykey E. Karabaeva
  • Andrey S. Mereshchenko
  • Alexander N Tarnovsky, Bowling Green State University
  • R. Marshall Wilson
Document Type
Article
Disciplines
Abstract

Oxidative damage to purine nucleic acid bases proceeds through quinoidal intermediates derived from their corresponding 8-oxo-7,8-dihydropurine bases. Oxidation studies of 8-oxo-7,8-dihyroadenosine and 8-oxo-7,8-dihydroinosine indicate that these quinoidal species can produce stable cross links with a wide variety of nucleophiles in the 2-positions of the purines. An azide precursor for the adenosine iminoquinone has been synthesized and applied in ultrafast transient absorption spectroscopic studies. Thus, the adenosine iminoquinone can be observed directly, and its susceptibility to nudeophilic attack with various nucleophiles as well as the stability of the resulting cross linked species have been evaluated Finally, these observations indicate that this azide might be a very useful photoaffurity labeling agent, because the reactive intermediate, adenosine iminoquinone, is such a good mimic for the universal purine base adenosine.

Publication Date
3-1-2013
DOI
https://doi.org/10.1021/ja3068148
Citation Information
Denis I. Nilov, Dmitry Y. Komarov, Maxim S. Panov, Kanykey E. Karabaeva, et al.. "Oxidation Of Adenosine And Inosine: The Chemistry Of 8-oxo-7,8-dihydropurines, Purine Iminoquinones, And Purine Quinones As Observed By Ultrafast Spectroscopy" Journal Of The American Chemical Society (2013) p. 3423 - 3438
Available at: http://works.bepress.com/alexander_tarnovsky/14/