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Bisnaphthalimidopropyl Derivatives as Inhibitors of Leishmania SIR2 Related Protein 1
Authors:Joana Tavares Dr.  Ali Ouaissi Dr.  Paul Kong Thoo Lin Prof. Dr.  Inês Loureiro  Simranjeet Kaur  Nilanjan Roy Dr.  Anabela Cordeiro‐da‐Silva Prof. Dr.
Affiliation:1. IBMC – Instituto de Biologia Molecular e Celular, Universidade do Porto, Rua do Campo Alegre 823, 4150‐180 Porto (Portugal);2. Laboratório de Bioquímica, Faculdade de Farmácia da Universidade do Porto, R. Aníbal Cunha no. 164, 4050‐047 Porto (Portugal), Fax: (+351)?226?099?157;3. INSERM, CNRS, UMR 5235, Université de Montpellier?2, Batiment 24‐CC 107, Pl. Eugène Bataillon, 34095 Montpellier Cedex 5 (France);4. The Robert Gordon University, School of Pharmacy and Life Sciences, St. Andrew Street, Aberdeen AB25?1HG, Scotland (UK);5. Centre of Pharmacoinformatics, National Institute of Pharmaceutical Education and Research, Sector 67, SAS Nagar 160062, Punjab (India)
Abstract:The NAD+‐dependent deacetylases, namely sirtuins, are involved in the regulation of a variety of biological processes such as gene silencing, DNA repair, longevity, metabolism, apoptosis, and development. An enzyme from the parasite Leishmania infantum that belongs to this family, LiSIR2RP1, is a NAD+‐dependent tubulin deacetylase and an ADP‐ribosyltransferase. This enzyme's involvement in L. infantum virulence and survival underscores its potential as a drug target. Our search for selective inhibitors of LiSIR2RP1 has led, for the first time, to the identification of the antiparasitic and anticancer bisnaphthalimidopropyl (BNIP) alkyl di‐ and triamines (IC50 values in the single‐digit micromolar range for the most potent compounds). Structure–activity studies were conducted with 12 BNIP derivatives that differ in the length of the central alkyl chain, which links the two naphthalimidopropyl moieties. The most active and selective compound is the BNIP diaminononane (BNIPDanon), with IC50 values of 5.7 and 97.4 μM against the parasite and human forms (SIRT1) of the enzyme, respectively. Furthermore, this compound is an NAD+‐competitive inhibitor that interacts differently with the parasite and human enzymes, as determined by docking analysis, which might explain its selectivity toward the parasitic enzyme.
Keywords:docking  NAD+‐dependent deacetylases  protozoa  sirtuin inhibitors
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