Chemical Communications · 2010 · 32 citations · 18 references
Few ConstraintsDna NanotechnologyQuinone Methide-oligonucleotide Self-adductsBiochemistryNatural SciencesNucleic Acid BiochemistryOligonucleotideMolecular BiologyDna ReplicationSynthetic BiologyDna AlkylationContaining AdenosineBioconjugationHairpin StructuresDna ComputingQuinone Methide Self-adductsGenome Editing
Nucleotide sequences minimally containing adenosine, cytosine or guanosine are sufficient to form intrastrand oligonucleotide quinone methide self-adducts reversibly for subsequent alkylation of complementary DNA. The general lack of sequence restrictions should now allow for alkylation of most any target of interest although reaction is most efficient when the self-adducts contain guanine residues and do not form hairpin structures.
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Emily E. Weinert, Ruggero Dondi, Stefano Colloredo-Melz et al. · Journal of the American Chemical Society · 2006 · 220 citations · Full text