Literature DB >> 23282368

Calculated pK(a)'s of the DNA base radical ions.

David M Close1.   

Abstract

For the DNA bases the pK(a)'s of the neutral molecules have been measured, and a review article by Steenken provides a convenient summary of the experimental pK(a)'s of the DNA radical ions. The purpose of the present work is to attempt to calculate the pK(a)'s of the DNA radical ions and to compare these results with the experimental values. The agreement between the calculated and experimental pK(a)'s for the guanine, cytosine, and thymine cations is very good but the pK(a) calculation on the adenine cation is not close to the experimental value. It is tempting to suggest that the pK(a) of the adenine cation is not actually ≤1 but is more likely somewhere near the calculated value of 3.9. Problems were encountered in calculating the pK(a)'s of the one-electron reduced nucleobases because optimizations tend to produce nonplanar structures. The calculations presented show close agreement between the calculated and experimental pK(a)'s for the thymine, cytosine, and adenine anions. Although there are no experimental data for the pK(a) of the guanine reduction product, the calculated value of 17.6 seems to be too high, given that for thymine the protonation is also at oxygen and results in a rather low pK(a).

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Year:  2013        PMID: 23282368     DOI: 10.1021/jp310049b

Source DB:  PubMed          Journal:  J Phys Chem A        ISSN: 1089-5639            Impact factor:   2.781


  8 in total

1.  π- vs σ-radical states of one-electron-oxidized DNA/RNA bases: a density functional theory study.

Authors:  Anil Kumar; Michael D Sevilla
Journal:  J Phys Chem B       Date:  2013-09-19       Impact factor: 2.991

2.  Aminyl Radical Generation via Tandem Norrish Type I Photocleavage, β-Fragmentation: Independent Generation and Reactivity of the 2'-Deoxyadenosin- N6-yl Radical.

Authors:  Liwei Zheng; Markus Griesser; Derek A Pratt; Marc M Greenberg
Journal:  J Org Chem       Date:  2017-03-20       Impact factor: 4.354

3.  Direct observation of the oxidation of DNA bases by phosphate radicals formed under radiation: a model of the backbone-to-base hole transfer.

Authors:  Jun Ma; Jean-Louis Marignier; Pascal Pernot; Chantal Houée-Levin; Anil Kumar; Michael D Sevilla; Amitava Adhikary; Mehran Mostafavi
Journal:  Phys Chem Chem Phys       Date:  2018-05-30       Impact factor: 3.676

4.  Proton-Transfer Reactions in One-Electron-Oxidized G-Quadruplexes: A Density Functional Theory Study.

Authors:  Anil Kumar; Michael D Sevilla
Journal:  J Phys Chem B       Date:  2022-02-13       Impact factor: 2.991

5.  Gamma and Ion-Beam Irradiation of DNA: Free Radical Mechanisms, Electron Effects, and Radiation Chemical Track Structure.

Authors:  Michael D Sevilla; David Becker; Anil Kumar; Amitava Adhikary
Journal:  Radiat Phys Chem Oxf Engl 1993       Date:  2016-04-30       Impact factor: 2.858

6.  π-Radical to σ-Radical Tautomerization in One-Electron-Oxidized 1-Methylcytosine and Its Analogs.

Authors:  Amitava Adhikary; Anil Kumar; Casandra T Bishop; Tyler J Wiegand; Ragda M Hindi; Ananya Adhikary; Michael D Sevilla
Journal:  J Phys Chem B       Date:  2015-08-13       Impact factor: 2.991

7.  Proton transfer induced SOMO-to-HOMO level switching in one-electron oxidized A-T and G-C base pairs: a density functional theory study.

Authors:  Anil Kumar; Michael D Sevilla
Journal:  J Phys Chem B       Date:  2014-05-13       Impact factor: 2.991

8.  Gold Nanoparticles as Colorimetric Sensors for the Detection of DNA Bases and Related Compounds.

Authors:  Emilia Iglesias
Journal:  Molecules       Date:  2020-06-23       Impact factor: 4.411

  8 in total

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