Literature DB >> 21903398

Exploiting differences in caspase-2 and -3 S₂ subsites for selectivity: structure-based design, solid-phase synthesis and in vitro activity of novel substrate-based caspase-2 inhibitors.

Michel C Maillard1, Frederick A Brookfield, Stephen M Courtney, Florence M Eustache, Mark J Gemkow, Rebecca K Handel, Laura C Johnson, Peter D Johnson, Mark A Kerry, Florian Krieger, Mirco Meniconi, Ignacio Muñoz-Sanjuán, Jordan J Palfrey, Hyunsun Park, Sabine Schaertl, Malcolm G Taylor, Derek Weddell, Celia Dominguez.   

Abstract

Several caspases have been implicated in the pathogenesis of Huntington's disease (HD); however, existing caspase inhibitors lack the selectivity required to investigate the specific involvement of individual caspases in the neuronal cell death associated with HD. In order to explore the potential role played by caspase-2, the potent but non-selective canonical Ac-VDVAD-CHO caspase-2 inhibitor 1 was rationally modified at the P(2) residue in an attempt to decrease its activity against caspase-3. With the aid of structural information on the caspase-2, and -3 active sites and molecular modeling, a 3-(S)-substituted-l-proline along with four additional scaffold variants were selected as P(2) elements for their predicted ability to clash sterically with a residue of the caspase-3 S(2) pocket. These elements were then incorporated by solid-phase synthesis into pentapeptide aldehydes 33a-v. Proline-based compound 33h bearing a bulky 3-(S)-substituent displayed advantageous characteristics in biochemical and cellular assays with 20- to 60-fold increased selectivity for caspase-2 and ∼200-fold decreased caspase-3 potency compared to the reference inhibitor 1. Further optimization of this prototype compound may lead to the discovery of valuable pharmacological tools for the study of caspase-2 mediated cell death, particularly as it relates to HD.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21903398     DOI: 10.1016/j.bmc.2011.08.020

Source DB:  PubMed          Journal:  Bioorg Med Chem        ISSN: 0968-0896            Impact factor:   3.641


  11 in total

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3.  Synthesis of novel (benzimidazolyl)isoquinolinols and evaluation as adenosine A1 receptor tools.

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4.  Structure-Based Design and Biological Evaluation of Novel Caspase-2 Inhibitors Based on the Peptide AcVDVAD-CHO and the Caspase-2-Mediated Tau Cleavage Sequence YKPVD314.

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Journal:  ACS Pharmacol Transl Sci       Date:  2022-01-05

5.  Analysis of the minimal specificity of caspase-2 and identification of Ac-VDTTD-AFC as a caspase-2-selective peptide substrate.

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Review 10.  3-Substituted prolines: from synthesis to structural applications, from peptides to foldamers.

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Journal:  Molecules       Date:  2013-02-19       Impact factor: 4.411

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