Publications by authors named "Geraldine Garavel"

Targeted protein degradation offers an alternative modality to classical inhibition and holds the promise of addressing previously undruggable targets to provide novel therapeutic options for patients. Heterobifunctional molecules co-recruit a target protein and an E3 ligase, resulting in ubiquitylation and proteosome-dependent degradation of the target. In the clinic, the oral route of administration is the option of choice but has only been achieved so far by CRBN- recruiting bifunctional degrader molecules.

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Phosphoglycerate dehydrogenase (PHGDH) is known to be the rate-limiting enzyme in the serine synthesis pathway in humans. It converts glycolysis-derived 3-phosphoglycerate to 3-phosphopyruvate in a co-factor-dependent oxidation reaction. Herein, we report the discovery of , a prodrug of the co-factor nicotinamide adenine dinucleotide (NADH/NAD)-competitive PHGDH inhibitor , which has shown high selectivity against the majority of other dehydrogenase targets.

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Article Synopsis
  • - Mouse double minute 2 (MDM2) inhibits the tumor suppressor p53, and blocking this interaction with small-molecule inhibitors is promising for treating certain cancers, but challenges like toxicity and drug resistance exist.
  • - Researchers are working on new spiro-oxindole inhibitors that improve potency and reduce side effects by focusing on a key amino acid interaction (His96) to enhance effectiveness with less frequent dosing.
  • - One newly designed compound outperformed a previously used inhibitor, suggesting potential for better management of adverse effects related to treatment while effectively targeting cancer cells.
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Screening of one-bead one-compound libraries by incubating beads with fluorescently labeled target protein requires isolation and structure elucidation of a large number of primary hit beads. However, the potency of the identified ligands is only revealed after time consuming and expensive larger scale resynthesis and testing in solution. Often, many of the resynthesized compounds turn out to be weak target binders in solution due to large differences between surface and solution binding affinities.

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New and improved: The incorporation of a 6-chlorotryptophan (6-Cl-Trp) into a beta-peptide (M)-3(14) helix leads to a high-affinity hDM2 inhibitor, as demonstrated by fluorescence fluctuation analysis at single molecule resolution. When conjugated to penetratin, the newly derived hDM2 binder specifically inhibits tumour cell growth in vitro.

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