Optimization of a Series of RIPK2 PROTACs

Afjal H. Miah(GlaxoSmithKline (United Kingdom)), Ian E. Smith(GlaxoSmithKline (United Kingdom)), M.D. Rackham(GlaxoSmithKline (United Kingdom)), Alina Mares(GlaxoSmithKline (United Kingdom)), Aditya R. Thawani(GlaxoSmithKline (United Kingdom)), Rakesh Nagilla(South College), Pamela A. Haile(South College), Bartholomew J. Votta(South College), Laurie Gordon(GlaxoSmithKline (United Kingdom)), Gillian F. Watt(GlaxoSmithKline (United Kingdom)), Jane Denyer(GlaxoSmithKline (United Kingdom)), Don T. Fisher(South College), Phoebe Dace(GlaxoSmithKline (United Kingdom)), Paul Giffen(GlaxoSmithKline (United Kingdom)), Andrea D. Gonçalves(GlaxoSmithKline (United Kingdom)), Ian Churcher(GlaxoSmithKline (United Kingdom)), Paul Scott‐Stevens(GlaxoSmithKline (United Kingdom)), John D. Harling(GlaxoSmithKline (United Kingdom))
Journal of Medicinal Chemistry
August 25, 2021
Cited by 67Open Access
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Abstract

Receptor-interacting serine/threonine protein kinase 2 (RIPK2) is an important kinase of the innate immune system. Herein, we describe the optimization of a series of RIPK2 PROTACs which recruit members of the inhibitor of apoptosis (IAP) family of E3 ligases. Our PROTAC optimization strategy focused on reducing the lipophilicity of the early lead which resulted in the identification of analogues with improved solubility and increased human and rat microsomal stability. We identified a range of IAP binders that were successfully incorporated into potent RIPK2 PROTACs with attractive pharmacokinetic profiles. Compound 20 possessed the best overall profile with good solubility, potent degradation of RIPK2, and associated inhibition of TNFα release. A proof-of-concept study utilizing a slow release matrix demonstrated the feasibility of a long-acting parenteral formulation with >1 month duration. This represents an attractive alternative dosing paradigm to oral delivery, especially for chronic diseases where compliance can be challenging.


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