PROTONATION OF NUCLEOBASE ANIONS IN GAMMA-IRRADIATED DNA AND MODEL SYSTEMS - WHICH DNA-BASE IS THE ULTIMATE SINK FOR THE ELECTRON

被引:58
作者
WANG, WD
SEVILLA, MD
机构
[1] Department of Chemistry, Oakland University, Rochester
关键词
D O I
10.2307/3578841
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Electron spin resonance (ESR) spectroscopy has been used to investigate irreversible protonations of the nucleobase anions in gamma-irradiated frozen aqueous solutions of dGMP.dCMP, polyG.polyC, poly[dGdC] poly[dGdC], dAMP.dTMP, poly[dAdT].poly[dAdT] and DNA itself. Analysis of the ESR spectra at a dose of 22 kGy shows that fractional conversion of total radicals to carbon-protonated species on annealing is in the order: dAMP.dTMP (43%) > pdAdT = DNA (23%) > dGMP.dCMP (15%) > polydGdC.polydGdC (6%) 1 polyG.polyC (3%). Two hydrogen addition radicals make contributions to the polyG.polyC, poly[dGdC].poly[dGdC] and dGMP.dCMP spectra in H2O on annealing. They are those formed by protonations at C6 of the cytosine anion radical, C(C6)H-., and at C8 of the guanine anion radical, G(C6)H-.. Computer analysis reveals that anion protonation reaction in dGMP.dGMP results in mainly C(C6)H-., whereas protonation reaction in polyG.polyC and poly[dGdC].poly[dGdC] yields mainly G(C8)H-.. In dAMP.dTMP and poly[dAdT].poly[dAdT] as in DNA itself, the only DNA base found to undergo an irreversible protonation at a carbon site is thymine, resulting in T(C6)H-.. The conversion of DNA anion to T(C6)H-. is found to be dependent on dose. At low doses (5 kGy), about 30% conversion to T(C6)H-. is found, whereas at high doses (94 kGy), only 13% conversion is found. The dose dependence is ascribed in part to ion radical recombinations whose probabilities are increased at high doses. A consideration of the rates of protonations of the purine and pyrimidine anion radicals as well as the differences in electron affinities suggest carbon protonation reactions of DNA base anions in irradiated stacked double-strand DNA at 37 degrees C would be predominantly at thymine and perhaps guanine, whereas in single-strand DNA all bases would contribute.
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页码:9 / 17
页数:9
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共 33 条
[1]   THE PROTONATION STATE OF ONE-ELECTRON-REDUCED CYTOSINE AND ADENINE .1. INITIAL PROTONATION SITES AT LOW-TEMPERATURES IN GLASSY SOLIDS [J].
BARNES, J ;
BERNHARD, WA .
JOURNAL OF PHYSICAL CHEMISTRY, 1993, 97 (13) :3401-3408
[2]   DISTRIBUTION OF ELECTRON TRAPPING IN DNA - PROTONATION OF ONE-ELECTRON REDUCED CYTOSINE [J].
BARNES, J ;
BERNHARD, WA ;
MERCER, KR .
RADIATION RESEARCH, 1991, 126 (01) :104-107
[3]  
BECKER D, 1993, ADV RADIAT BIOL, V17, P121
[5]  
BERNHARD WA, 1981, ADV RADIAT BIOL, V9, P199, DOI DOI 10.1016/B978-0-12-035409-2.50011-4
[6]  
BERNHARD WA, 1991, NATO ARW SERIES H, V54, P141
[7]   DYNAMICS OF ELECTRON-TRANSFER BETWEEN INTERCALATED POLYCYCLIC MOLECULES - EFFECT OF INTERSPERSED BASES [J].
BRUN, AM ;
HARRIMAN, A .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1992, 114 (10) :3656-3660
[8]   ELECTRON ADDUCTS OF ADENINE NUCLEOSIDES AND NUCLEOTIDES IN AQUEOUS-SOLUTION - PROTONATION AT 2 CARBON SITES (C2 AND C8) AND INTRAMOLECULAR AND INTERMOLECULAR CATALYSIS BY PHOSPHATE [J].
CANDEIAS, LP ;
STEENKEN, S .
JOURNAL OF PHYSICAL CHEMISTRY, 1992, 96 (02) :937-944
[9]   RADICAL IONS AND THEIR REACTIONS IN DNA CONSTITUENTS - ESR/ENDOR STUDIES OF RADIATION-DAMAGE IN THE SOLID-STATE [J].
CLOSE, DM .
RADIATION RESEARCH, 1993, 135 (01) :1-15
[10]   ABINITIO MOLECULAR-ORBITAL CALCULATIONS ON DNA-BASE PAIR RADICAL IONS - EFFECT OF BASE-PAIRING ON PROTON-TRANSFER ENERGIES, ELECTRON-AFFINITIES, AND IONIZATION-POTENTIALS [J].
COLSON, AO ;
BESLER, B ;
SEVILLA, MD .
JOURNAL OF PHYSICAL CHEMISTRY, 1992, 96 (24) :9787-9794