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Addressing a Trapped High-Energy Water: Design and Synthesis of Highly Potent Pyrimidoindole-Based Glycogen Synthase Kinase-3β Inhibitors

Authors :
Stanislav Andreev
Christian Geibel
Ahmed El-Gokha
Jenny Romasco
Niclas Kahlke
Francesco Ansideri
Stefan Knapp
Michael Lämmerhofer
Stefan Laufer
Lukas Grätz
Andrea Tarozzi
Giulia Sita
Roberta Tesch
Pierre Koch
Tatu Pantsar
Andreev S.
Pantsar T.
Tesch R.
Kahlke N.
El-Gokha A.
Ansideri F.
Gratz L.
Romasco J.
Sita G.
Geibel C.
Lammerhofer M.
Tarozzi A.
Knapp S.
Laufer S.A.
Koch P.
Source :
Journal of Medicinal Chemistry
Publication Year :
2021

Abstract

In small molecule binding, water is not a passive bystander but rather takes an active role in the binding site, which may be decisive for the potency of the inhibitor. Here, by addressing a high-energy water, we improved the IC50 value of our co-crystallized glycogen synthase kinase-3β (GSK-3β) inhibitor by nearly two orders of magnitude. Surprisingly, our results demonstrate that this high-energy water was not displaced by our potent inhibitor (S)-3-(3-((7-ethynyl-9H-pyrimido[4,5-b]indol-4-yl)(methyl)amino)piperidin-1-yl)propanenitrile ((S)-15, IC50 value of 6 nM). Instead, only a subtle shift in the location of this water molecule resulted in a dramatic decrease in the energy of this high-energy hydration site, as shown by the WaterMap analysis combined with microsecond timescale molecular dynamics simulations. (S)-15 demonstrated both a favorable kinome selectivity profile and target engagement in a cellular environment and reduced GSK-3 autophosphorylation in neuronal SH-SY5Y cells. Overall, our findings highlight that even a slight adjustment in the location of a high-energy water can be decisive for ligand binding.

Details

ISSN :
00222623
Database :
OpenAIRE
Journal :
Journal of Medicinal Chemistry
Accession number :
edsair.doi.dedup.....4e377866f5d0e530badd69ab77a6a253
Full Text :
https://doi.org/10.1021/acs.jmedchem.0c02146