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Mechanism of interaction of the antileukemic drug cytosine arabinoside with aromatic peptides: role of sugar conformation and peptide backbone

Authors :
G, Datta
R V, Hosur
N C, Verma
C L, Khetrapal
S, Gurnani
Source :
Physiological chemistry and physics and medical NMR. 21(4)
Publication Year :
1989

Abstract

Interaction of the antileukemic drugs, cytosine-arabinoside (Ara-C) and adenosine-arabinoside (Ara-A) and a structural analogue, cytidine, with aromatic dipeptides has been studied by fluorescence and NMR spectroscopy. Ara-C and cytidine bind tryptophanyl and histidyl dipeptides but not tyrosyl dipeptides, while Ara-A does not bind to any of them. Both studies indicate association involving stacking of aromatic moieties. NMR spectra also indicate a protonation of the histidine moiety by Ara-C. In case of cytidine, the chemical shifts observed on binding to His-Phe imply that the backbone protons of the dipeptide participate in the binding. The conformation of the sugar and the base seem to play a very important role in the binding phenomenon as three similar molecules, Ara-C, Ara-A and cytidine bind in totally different ways.

Details

ISSN :
07486642
Volume :
21
Issue :
4
Database :
OpenAIRE
Journal :
Physiological chemistry and physics and medical NMR
Accession number :
edsair.pmid..........79c41f873293f3e44f1905ebdc4e63c4