Optimization of Potent Ligands for the E3 Ligase DCAF15 and Evaluation of Their Use in Heterobifunctional Degraders

被引:3
|
作者
Lucas, Simon C. C. [1 ]
Ahmed, Afshan [2 ]
Ashraf, S. Neha [2 ]
Argyrou, Argyrides [2 ]
Bauer, Matthias R. [1 ]
De Donatis, Gian Marco [2 ]
Demanze, Sylvain [3 ]
Eisele, Frederik [4 ]
Fusani, Lucia [1 ]
Hock, Andreas [2 ]
Kadamur, Ganesh [5 ]
Li, Shuyou [6 ]
Macmillan-Jones, Abigail [2 ]
Michaelides, Iacovos N. [1 ]
Phillips, Christopher [5 ]
Rehnstrom, Marie [7 ]
Richter, Magdalena [2 ]
Rodrigo-Brenni, Monica C. [8 ]
Shilliday, Fiona [5 ]
Wang, Peng [6 ]
Storer, R. Ian [1 ]
机构
[1] AstraZeneca, Hit Discovery, Discovery Sci, R&D, Cambridge CB2 0AA, England
[2] AstraZeneca, Discovery Biol, Discovery Sci, R&D, Cambridge CB2 0AA, England
[3] AstraZeneca, Oncol Chem, Oncol R&D, Cambridge CB2 0AA, England
[4] AstraZeneca, Mechanist & Struct Biol, Discovery Sci, R&D, SE-43183 Gothenburg, Sweden
[5] AstraZeneca, Mechanist & Struct Biol, Discovery Sci, R&D, Cambridge CB2 0AA, England
[6] Pharmaron Beijing Co Ltd, Beijing 100176, Peoples R China
[7] Discovery Biol, Discovery Sci, AstraZeneca, R&D, SE-43183 Gothenburg, Sweden
[8] AstraZeneca, Safety Innovat & PROTAC Safety, Clin Pharmacol & Safety Sci, R&D, Cambridge CB2 0AA, England
关键词
SULFONAMIDE ANTICANCER AGENT; SELECTIVE DEGRADATION; RBM39; RECRUITMENT; STRUCTURAL BASIS; PHASE-I; INHIBITOR; E7070; EXPRESSION; REAGENTS; PROTACS;
D O I
10.1021/acs.jmedchem.3c02136
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Unlocking novel E3 ligases for use in heterobifunctional PROTAC degraders is of high importance to the pharmaceutical industry. Over-reliance on the current suite of ligands used to recruit E3 ligases could limit the potential of their application. To address this, potent ligands for DCAF15 were optimized using cryo-EM supported, structure-based design to improve on micromolar starting points. A potent binder, compound 24, was identified and subsequently conjugated into PROTACs against multiple targets. Following attempts on degrading a number of proteins using DCAF15 recruiting PROTACs, only degradation of BRD4 was observed. Deconvolution of the mechanism of action showed that this degradation was not mediated by DCAF15, thereby highlighting both the challenges faced when trying to expand the toolbox of validated E3 ligase ligands for use in PROTAC degraders and the pitfalls of using BRD4 as a model substrate.
引用
收藏
页码:5538 / 5566
页数:29
相关论文
共 37 条
  • [31] Inflammation-dependent overexpression of c-Myc enhances CRL4DCAF4 E3 ligase activity and promotes ubiquitination of ST7 in colitis-associated cancer
    Liu, Hong
    Lu, Wenzhu
    He, Hongbo
    Wu, Jin
    Zhang, Caiguo
    Gong, Hanlin
    Yang, Chunmei
    JOURNAL OF PATHOLOGY, 2019, 248 (04) : 464 - 475
  • [32] The X-linked intellectual disability gene product and E3 ubiquitin ligase KLHL15 degrades doublecortin proteins to constrain neuronal dendritogenesis
    Song, Jianing
    Merrill, Ronald A.
    Usachev, Andrew Y.
    Strack, Stefan
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2021, 296
  • [33] A patent review of von Hippel-Lindau (VHL)-recruiting chemical matter: E3 ligase ligands for PROTACs and targeted protein degradation (2019-present)
    Urbina, Aina
    Hallatt, Alex J.
    Robertson, Jack
    Ciulli, Alessio
    EXPERT OPINION ON THERAPEUTIC PATENTS, 2025, 35 (03) : 197 - 238
  • [34] Inhibition of hepatitis C virus RNA replication by ISG15 does not require its conjugation to protein substrates by the HERC5 E3 ligase
    Dorningues, Patricia
    Bamford, Connor G. G.
    Boutell, Chris
    McLauchlan, John
    JOURNAL OF GENERAL VIROLOGY, 2015, 96 : 3236 - 3242
  • [35] Inhibition of Vpx-Mediated SAMHD1 and Vpr-Mediated Host Helicase Transcription Factor Degradation by Selective Disruption of Viral CRL4 (DCAF1) E3 Ubiquitin Ligase Assembly
    Wang, Hong
    Guo, Haoran
    Su, Jiaming
    Rui, Yajuan
    Zheng, Wenwen
    Gao, Wenying
    Zhang, Wenyan
    Li, Zhaolong
    Liu, Guanchen
    Markham, Richard B.
    Wei, Wei
    Yu, Xiao-Fang
    JOURNAL OF VIROLOGY, 2017, 91 (09)
  • [36] NOTCH localizes to mitochondria through the TBC1D15-FIS1 interaction and is stabilized via blockade of E3 ligase and CDK8 recruitment to reprogram tumor-initiating cells
    Choi, Hye Yeon
    Zhu, Yicheng
    Zhao, Xuyao
    Mehta, Simran
    Hernandez, Juan Carlos
    Lee, Jae-Jin
    Kou, Yi
    Machida, Risa
    Giacca, Mauro
    Del Sal, Giannino
    Ray, Ratna
    Eoh, Hyungjin
    Tahara, Stanley M.
    Chen, Lin
    Tsukamoto, Hidekazu
    Machida, Keigo
    EXPERIMENTAL AND MOLECULAR MEDICINE, 2024, 56 (02) : 461 - 477
  • [37] TNF-?-induced E3 ligase, TRIM15 inhibits TNF-?-regulated NF-?B pathway by promoting turnover of K63 linked ubiquitination of TAK1
    Roy, Milton
    Singh, Kritarth
    Shinde, Anjali
    Singh, Jyoti
    Mane, Minal
    Bedekar, Sawani
    Tailor, Yamini
    Gohel, Dhruv
    Vasiyani, Hitesh
    Currim, Fatema
    Singh, Rajesh
    CELLULAR SIGNALLING, 2022, 91