Abstract
The concept of antigene therapy of disease is based on the ability of an oligonucleotide (the therapeutic agent) to bind to double-stranded genomic DNA (the target associated with the disease). Examples are herein given of the linkage of a series of polyamines to a 21-mer homopyrimidine oligonucleotide. These conjugated 21-mers can each form a triple helix with an appropriate double-stranded homopurinehomopyrimidine DNA according to Hoogsteen basepairing rules. No triple helix was found when unmodified third strand was used at 10 mM sodium phosphate, pH 6.5, 100 mM sodium chloride solution. In contrast, the spermine-conjugated oligonucleotide had a melting temperature of 42°C. According to the melting profile, the appended spermine moiety was found to affect the Tm only of the triple helix, but not of the subsequent melting of the underlying double helix. The Tm enhancing ability of the spermineconjugate was found to be better than that of other polyamine-conjugates. © 1993 Oxford University Press.
Cite
CITATION STYLE
Tung, C. hsuan, Breslauer, K. J., & Stein, S. (1993). Polyamine-linked oligonucleotides for DNA triple helix formation. Nucleic Acids Research, 21(23), 5489–5494. https://doi.org/10.1093/nar/21.23.5489
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.