| Literature DB >> 31674143 |
Thomas H Pillow1, Pragya Adhikari1, Robert A Blake1, Jinhua Chen2, Geoffrey Del Rosario1, Gauri Deshmukh1, Isabel Figueroa1, Karen E Gascoigne1, Amrita V Kamath1, Susan Kaufman1, Tracy Kleinheinz1, Katherine R Kozak1, Brandon Latifi1, Douglas D Leipold1, Chun Sing Li2, Ruina Li1, Melinda M Mulvihill1, Aimee O'Donohue1, Rebecca K Rowntree1, Jack D Sadowsky1, John Wai2, Xinxin Wang2, Cong Wu1, Zijin Xu2, Hui Yao2, Shang-Fan Yu1, Donglu Zhang1, Richard Zang1, Hongyan Zhang2, Hao Zhou2, Xiaoyu Zhu2, Peter S Dragovich1.
Abstract
The ability to selectively degrade proteins with bifunctional small molecules has the potential to fundamentally alter therapy in a variety of diseases. However, the relatively large size of these chimeric molecules often results in challenging physico-chemical properties (e. g., low aqueous solubility) and poor pharmacokinetics which may complicate their in vivo applications. We recently discovered an exquisitely potent chimeric BET degrader (GNE-987) which exhibited picomolar cell potencies but also demonstrated low in vivo exposures. In an effort to improve the pharmacokinetic properties of this molecule, we discovered the first degrader-antibody conjugate by attaching GNE-987 to an anti-CLL1 antibody via a novel linker. A single IV dose of the conjugate afforded sustained in vivo exposures that resulted in antigen-specific tumor regressions. Enhancement of a chimeric protein degrader with poor in vivo properties through antibody conjugation thereby expands the utility of directed protein degradation as both a biological tool and a therapeutic possibility.Entities:
Keywords: BRD4; antibodies; antibody-drug conjugate; chimeric protein degrader; drug delivery
Year: 2019 PMID: 31674143 DOI: 10.1002/cmdc.201900497
Source DB: PubMed Journal: ChemMedChem ISSN: 1860-7179 Impact factor: 3.466