Projects per year
Abstract
Proteolysis targeting chimeras (PROTACs) are heterobifunctional small-molecule degraders made of a linker connecting a target-binding moiety to a ubiquitin E3 ligase-binding moiety. The linker unit is known to influence the physicochemical and pharmacokinetic properties of PROTACs, as well as the properties of ternary complexes, in turn impacting on their degradation activity in cells and in vivo. Our LRRK2 PROTAC XL01126, bearing a trans-cyclohexyl group in the linker, is a better and more cooperative degrader than its corresponding cis- analogue despite its much weaker binary binding affinities. Here, we investigate how this subtle stereocenter alteration in the linker affects the ligand binding affinity to the E3 ligase VHL. We designed a series of molecular matched pairs, truncating from the full PROTACs down to the VHL ligand, and find that across the series the trans-cyclohexyl compounds showed consistently weaker VHL-binding affinity compared to the cis- counterparts. High-resolution co-crystal structures revealed that the trans linker exhibits a rigid stick-out conformation, while the cis linker collapses into a folded-back conformation featuring a network of intramolecular contacts and long-range interactions with VHL. These observations are noteworthy as they reveal how a single stereochemical inversion within a PROTAC linker impacts conformational rigidity and binding mode, in turn fine-tuning differentiated propensity to binary and ternary complex formation, and ultimately cellular degradation activity.
Original language | English |
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Article number | 129861 |
Number of pages | 6 |
Journal | Bioorganic & Medicinal Chemistry Letters |
Volume | 110 |
Early online date | 26 Jun 2024 |
DOIs | |
Publication status | Published - 15 Sept 2024 |
Keywords
- PROTAC
- Linker
- Stereocenter
- Conformation
- VHL
- Binding affinity
ASJC Scopus subject areas
- Biochemistry
- Molecular Medicine
- Molecular Biology
- Pharmaceutical Science
- Drug Discovery
- Clinical Biochemistry
- Organic Chemistry
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EUbOPEN: Enabling and Unlocking biology in the OPEN (Joint with Goethe University Frankfurt, University of Oxford, Karolinska Institute and 9 others)
Ciulli, A. (Investigator)
COMMISSION OF THE EUROPEAN COMMUNITIES
1/05/20 → 31/10/25
Project: Research
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Development of LRRK2 PROTAC degraders as chemical probes and potential lead compounds for the treatment of Parkinson’s disease (PROCESS)
Ciulli, A. (Investigator)
1/09/22 → 29/02/24
Project: Research
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DrugE3CRL's: Probing Druggability of Multisubunit Complexes: E3 Cullin RING Ligases (ERC Starting Grant)
Ciulli, A. (Investigator)
COMMISSION OF THE EUROPEAN COMMUNITIES
1/05/13 → 30/04/18
Project: Research