Cyclic peptide inhibitors function as molecular glues to stabilize Gq/11 heterotrimers

J Jonas Mühle (Laboratory of Biomolecular Research, PSI Center for Life Sciences) J Judith Alenfelder (Molecular, Cellular and Pharmacobiology Section, Institute of Pharmaceutical Biology, University of Bonn) M Matthew J. Rodrigues (Laboratory of Biomolecular Research, PSI Center for Life Sciences) L Lars Jürgenliemke (Molecular, Cellular and Pharmacobiology Section, Institute of Pharmaceutical Biology, University of Bonn) R Ramon Guixà-González (Condensed Matter Theory Group, PSI Center for Scientific Computing, Theory and Data) L Lukas Grätz F Fabio Andres (LeadXpro AG, Park Innovaare) A Arianna Bacchin (LeadXpro AG, Park Innovaare) M Michael Hennig (LeadXpro AG, Park Innovaare) H Hannes Schihada M Max Crüsemann (Institute for Pharmaceutical Biology, University of Bonn) G Gabriele M. König (Institute for Pharmaceutical Biology, University of Bonn) G Gebhard Schertler (Laboratory of Biomolecular Research, PSI Center for Life Sciences) E Evi Kostenis (Molecular, Cellular and Pharmacobiology Section, Institute of Pharmaceutical Biology, University of Bonn) X Xavier Deupi (Laboratory of Biomolecular Research, PSI Center for Life Sciences)

Abstract

Heterotrimeric Gα:Gβγ G proteins function as molecular switches downstream of G protein–coupled receptors (GPCRs). They alternate between a heterotrimeric GDP-bound OFF-state and a GTP-bound ON-state in which Gα GTP is separated from the Gβγ dimer. Consequently, pharmacological tools to securely prevent the OFF-ON transition are of utmost importance to investigate their molecular switch function, specific contribution to GPCR signal transduction, and potential as drug targets. FR900359 (FR) and YM-254890 (YM), two natural cyclic peptides and highly specific inhibitors of Gq/11 heterotrimers, are exactly such tools. To date, their efficient and long-lasting inhibition of Gq/11 signaling has been attributed solely to a wedge-like binding to Gα, thereby preventing separation of the GTPase and α-helical domains and thus GDP release. Here, we use X-ray crystallography, biochemical and signaling assays, and BRET-based biosensors to show that FR and YM also function as stabilizers of the Gα:Gβγ subunit interface. Our high-resolution structures reveal a network of residues in Gα and two highly conserved amino acids in Gβ that are targeted by FR and YM to glue the Gβγ complex to the inactive Gα GDP subunit. Unlike all previously developed nucleotide-state specific inhibitors that sequester Gα in its OFF-state but compete with Gβγ, FR and YM actively promote the inhibitory occlusion of Gα GDP by Gβγ. In doing so, they securely lock the entire heterotrimer, not just Gα, in its inactive state. Our results identify FR and YM as molecular glues for Gα and Gβγ that combine simultaneous binding to both subunits with inhibition of G protein signaling.

Article Details

Volume / Issue Vol. 122, Issue 19
Published May 13, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (15)

J

Jonas Mühle

Laboratory of Biomolecular Research, PSI Center for Life Sciences

J

Judith Alenfelder

Molecular, Cellular and Pharmacobiology Section, Institute of Pharmaceutical Biology, University of Bonn

M

Matthew J. Rodrigues

Laboratory of Biomolecular Research, PSI Center for Life Sciences

L

Lars Jürgenliemke

Molecular, Cellular and Pharmacobiology Section, Institute of Pharmaceutical Biology, University of Bonn

R

Ramon Guixà-González

Condensed Matter Theory Group, PSI Center for Scientific Computing, Theory and Data

L

Lukas Grätz

F

Fabio Andres

LeadXpro AG, Park Innovaare

A

Arianna Bacchin

LeadXpro AG, Park Innovaare

M

Michael Hennig

LeadXpro AG, Park Innovaare

H

Hannes Schihada

M

Max Crüsemann

Institute for Pharmaceutical Biology, University of Bonn

G

Gabriele M. König

Institute for Pharmaceutical Biology, University of Bonn

G

Gebhard Schertler

Laboratory of Biomolecular Research, PSI Center for Life Sciences

E

Evi Kostenis

Molecular, Cellular and Pharmacobiology Section, Institute of Pharmaceutical Biology, University of Bonn

X

Xavier Deupi

Laboratory of Biomolecular Research, PSI Center for Life Sciences