1. Academic Validation
  2. Discovery of an In Vivo Chemical Probe for BCL6 Inhibition by Optimization of Tricyclic Quinolinones

Discovery of an In Vivo Chemical Probe for BCL6 Inhibition by Optimization of Tricyclic Quinolinones

  • J Med Chem. 2023 Apr 27;66(8):5892-5906. doi: 10.1021/acs.jmedchem.3c00155.
Alice C Harnden Owen A Davis Gary M Box Angela Hayes Louise D Johnson Alan T Henley Alexis K de Haven Brandon Melanie Valenti Kwai-Ming J Cheung Alfie Brennan Rosemary Huckvale Olivier A Pierrat Rachel Talbot Michael D Bright Hafize Aysin Akpinar Daniel S J Miller Dalia Tarantino Sharon Gowan Selby de Klerk Peter Craig McAndrew Yann-Vaï Le Bihan Mirco Meniconi Rosemary Burke Vladimir Kirkin Rob L M van Montfort Florence I Raynaud Olivia W Rossanese Benjamin R Bellenie Swen Hoelder
Abstract

B-cell lymphoma 6 (BCL6) is a transcriptional repressor and oncogenic driver of diffuse large B-cell lymphoma (DLBCL). Here, we report the optimization of our previously reported tricyclic quinolinone series for the inhibition of BCL6. We sought to improve the cellular potency and in vivo exposure of the non-degrading isomer, CCT373567, of our recently published degrader, CCT373566. The major limitation of our inhibitors was their high topological polar surface areas (TPSA), leading to increased efflux ratios. Reducing the molecular weight allowed us to remove polarity and decrease TPSA without considerably reducing solubility. Careful optimization of these properties, as guided by pharmacokinetic studies, led to the discovery of CCT374705, a potent inhibitor of BCL6 with a good in vivo profile. Modest in vivo efficacy was achieved in a lymphoma xenograft mouse model after oral dosing.

Figures
Products
  • Cat. No.
    Product Name
    Description
    Target
    Research Area
  • HY-153521
    99.30%, BCL6 Inhibitor