Binding of a non-ionic pyrenylisoxazolidine derivative to double-stranded polynucleotides: spectroscopic and molecular modelling studies
Articolo
Data di Pubblicazione:
2006
Abstract:
The binding of [(3RS,5SR)-2-methyl-3-pyren-l-ylisoxazolidin-S-yl]methan(oMl pIM), a non-ionic
pyrene derivative with potential anticancer activity, to calf-thymus DNA (ct-DNA) and the
synthetic double-strand polynucleotides poly-d(AT)2 and poly-d(GC)2 was investigated at neutral
pH through the combination of UV-Vis absorption and emission spectroscopy,f luorescence
quenching experiments and molecular modelling studies. Hypochromic effects accompanied by the
formation of tight isosbestic points were observed upon binding of MPIM to polynucleotides. The
related binding constants, evaluated by the half-reciprocal plots of the absorbance data, were
6.8 x 103 M-r, 6.0 x 103 M-r and 1.5 x 103 M-r for ct-DNA, poly-d(AT)z and poly-d(GC)2,
respectively'T he fluorescencee missioni ntensity of MPIM was slightly quenchedb y ct-DNA,
basically unaffectedb y poly-d(AT)2 and efficiently suppressedb y poly-d(GC)2. The overall results
support an intercalative binding mode of the pyrene derivative in the case of ct-DNA and polyd(
AT)2, whereas a shallow intercalation seems to be involved with poly-d(GC)2. Docking studies
agree with the experimentally observed complex stability order and reveal a common binding
mode implying that the chromophore intercalates between the staked base pairs and the
isoxazolidine ring lying along the major groove. In any case a stabilizing hydrogen bond is
formed between the hydroxyl group of the MPIM methanol moiety and the oxygen of a
phosphate group. The preferential binding selectivity of MPIM for intercalation in AT-rich
regions is probably attributable to steric hindrance between the N-methyl group of MpIM and
the 4-amino one of the cytosine in the GC sites.
Tipologia CRIS:
14.a.1 Articolo su rivista
Keywords:
pyrenylisoxazolidine; calf-thymus DNA
Elenco autori:
Rescifina, A; Chiacchio, U; Piperno, Anna; Sortino, S.
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