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DNA cleavage by the photolysis of cyclopentadienyl metal complexes: mechanistic studies and sequence selectivity of strand scission by CpW(CO)3CH3
Authors:Mohler Debra L  Downs Jennifer R  Hurley-Predecki Allison L  Sallman Jennifer R  Gannett Peter M  Shi Xianglin
Institution:Department of Chemistry, Emory University, 1515 Dickey Drive, Atlanta, Georgia 30322, USA. mohlerdl@jmv.edu
Abstract:Reaction: see text]. The photolysis of CpW(CO)3Me has been shown to produce methyl radicals and to cleave DNA in a single-stranded manner, and preliminary evidence implicated a carbon-centered radical in this process. In this work, the mechanism of strand scission in this reaction was determined to occur by hydrogen atom abstraction from the 4'- and 5'-positions of the deoxyribose moiety of the backbone of DNA. Additionally, in a side reaction that does not lead to frank strand scission, all four bases of DNA are methylated under these conditions; however, none of these base or backbone modifications lead to the formation of abasic sites.
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