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Non-Nucleoside Inhibitors of Human Adenosine Kinase: Synthesis, Molecular Modeling, and Biological Studies

Authors :
Sandra Gemma
Giovanni Maga
Stefania Butini
Ettore Novellino
Federico Da Settimo
Giuseppe Borrelli
Valeria La Pietra
Andrea Lossani
Daniela M. Zisterer
F. Focher
Andrea Torti
Stefania Sartini
Isabella Fiorini
Seema-Maria Nathwani
Giuseppe Campiani
Stefania Lamponi
Luciana Marinelli
Concettina La Motta
Anna Maria Ponte
Margherita Brindisi
Butini, S.
Gemma, S.
Brindisi, M.
Borrelli, G.
Lossani, A.
Ponte, A. M.
Torti, A.
Maga, G.
Marinelli, Luciana
LA PIETRA, Valeria
Fiorini, I.
Lamponi, S.
Campiani, G.
Zisterer, D. M.
Nathwani, S. M.
Sartini, S.
La Motta, C.
Da Settimo, F.
Novellino, Ettore
Focher, F.
Source :
Journal of Medicinal Chemistry. 54:1401-1420
Publication Year :
2011
Publisher :
American Chemical Society (ACS), 2011.

Abstract

Adenosine kinase (AK) catalyzes the phosphorylation of adenosine (Ado) to AMP by means of a kinetic mechanism in which the two substrates Ado and ATP bind the enzyme in a binary and/or ternary complex, with distinct protein conformations. Most of the described inhibitors have Ado-like structural motifs and are nonselective, and some of them (e.g., the tubercidine-like ligands) are characterized by a toxic profile. We have cloned and expressed human AK (hAK) and searched for novel non-substrate-like inhibitors. Our efforts to widen the structural diversity of AK inhibitors led to the identification of novel non-nucleoside, noncompetitive allosteric modulators characterized by a unique molecular scaffold. Among the pyrrolobenzoxa(thia)zepinones (4a-qq) developed, 4a was identified as a non-nucleoside prototype hAK inhibitor. 4a has proapoptotic efficacy, slight inhibition of short-term RNA synthesis, and cytostatic activity on tumor cell lines while showing low cytotoxicity and no significant adverse effects on short-term DNA synthesis in cells.

Details

ISSN :
15204804 and 00222623
Volume :
54
Database :
OpenAIRE
Journal :
Journal of Medicinal Chemistry
Accession number :
edsair.doi.dedup.....e39157fc961298f85591d3444ffe6fc4