Title of article :
Formation and structural determinants of multi-stranded guanine-rich DNA complexes Original Research Article
Author/Authors :
Karen Poon، نويسنده , , Robert B. Macgregor Jr.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2000
Pages :
12
From page :
205
To page :
216
Abstract :
We have investigated the complexes formed by oligonucleotides with the general sequence d(T15Gn), where n=4–15. Two distinct classes of structures are formed, namely, the four-stranded tetraplex and frayed wires. Frayed wires differ from four-stranded tetraplexes in both strand association stoichiometry and the ability of dimethyl sulfate to methylate the N7 position of guanine. Thus, it appears that these two guanine-rich multistranded assemblies are stabilised by different guanine–guanine interactions. The number of contiguous guanine residues determines which of the complexes is favoured. Based on the stoichiometry of the associated species and the accessibility of the N7 position of guanine to methylation we have found that oligonucleotides with smaller number of contiguous guanines; n=5–8, form primarily four-stranded tetraplex. Oligonucleotides with larger numbers of contiguous guanines adapt primarily the frayed wire structure. The stability of the complexes formed by this series of oligonucleotides is determined by the number and arrangement of the guanines within the sequences. We propose that the formation of the two types of complex proceed by a parallel reaction pathways that may share common intermediates.
Keywords :
Guanine , DNA structure , Frayed wires , Electrophoresis , Tetraplex , Telomere
Journal title :
Biophysical Chemistry
Serial Year :
2000
Journal title :
Biophysical Chemistry
Record number :
1112810
Link To Document :
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