| Literature DB >> 31653597 |
Whitney L Petrilli1, Gregory C Adam2, Roman S Erdmann3, Pravien Abeywickrema4, Vijayalakshmi Agnani5, Xi Ai6, Jen Baysarowich5, Noel Byrne4, John P Caldwell7, Wonsuk Chang7, Edward DiNunzio5, Zhe Feng7, Rachael Ford4, Sookhee Ha8, Yongcheng Huang6, Brian Hubbard6, Jennifer M Johnston4, Michael Kavana5, Jean-Marie Lisnock5, Rui Liang7, Jun Lu4, Zhijian Lu7, Juncai Meng4, Peter Orth8, Oksana Palyha6, Gopal Parthasarathy4, Scott P Salowe5, Sujata Sharma4, Jennifer Shipman4, Stephen M Soisson4, Alison M Strack6, Hyewon Youm7, Kake Zhao7, Deborah L Zink5, Hratch Zokian5, George H Addona5, Karen Akinsanya6, James R Tata7, Yusheng Xiong7, Jason E Imbriglio7.
Abstract
Proprotein convertase substilisin-like/kexin type 9 (PCSK9) is a serine protease involved in a protein-protein interaction with the low-density lipoprotein (LDL) receptor that has both human genetic and clinical validation. Blocking this protein-protein interaction prevents LDL receptor degradation and thereby decreases LDL cholesterol levels. Our pursuit of small-molecule direct binders for this difficult to drug PPI target utilized affinity selection/mass spectrometry, which identified one confirmed hit compound. An X-ray crystal structure revealed that this compound was binding in an unprecedented allosteric pocket located between the catalytic and C-terminal domain. Optimization of this initial hit, using two distinct strategies, led to compounds with high binding affinity to PCSK9. Direct target engagement was demonstrated in the cell lysate with a cellular thermal shift assay. Finally, ligand-induced protein degradation was shown with a proteasome recruiting tag attached to the high-affinity allosteric ligand for PCSK9.Entities:
Keywords: CETSA; PCSK9; affinity selection/mass spectrometry; proximity-driven click chemistry; structure-based drug design; targeted protein degradation
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Year: 2019 PMID: 31653597 DOI: 10.1016/j.chembiol.2019.10.002
Source DB: PubMed Journal: Cell Chem Biol ISSN: 2451-9448 Impact factor: 8.116