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Structure-based design of novel quinoxaline-2-carboxylic acids and analogues as Pim-1 inhibitors.

Bruno Oyallon | Marie Brachet-Botineau | Cédric Logé | Pascal Bonnet | Mohamed Souab | Thomas Robert | Sandrine Ruchaud | Stéphane Bach | Pascal Berthelot | Fabrice Gouilleux | Marie-Claude Viaud-Massuard | Caroline Denevault-Sabourin
European journal of medicinal chemistry | 2018

We identified a new series of quinoxaline-2-carboxylic acid derivatives, targeting the human proviral integration site for Moloney murine leukemia virus-1 (HsPim-1) kinase. Seventeen analogues were synthesized providing useful insight into structure-activity relationships studied. Docking studies realized in the ATP pocket of HsPim-1 are consistent with an unclassical binding mode of these inhibitors. The lead compound 1 was able to block HsPim-1 enzymatic activity at nanomolar concentrations (IC50 of 74 nM), with a good selectivity profile against a panel of mammalian protein kinases. In vitro studies on the human chronic myeloid leukemia cell line KU812 showed an antitumor activity at micromolar concentrations. As a result, compound 1 represents a promising lead for the design of novel anticancer targeted therapies.

Pubmed ID: 29778892

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Graphical Overview of Linkage Disequilibrium (tool)

RRID:SCR_007151

Software package that provides a graphical summary of linkage disequilibrium in human genetic data. The graphical summary is well suited to the analysis of dense genetic maps, where contingency tables are cumbersome to interpret. An interface to the Simwalk2 application allows for the analysis of family data.

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