Target intelligence / Profile preview

Cereblon (CRBN)–G1 to S phase transition 1 (GSPT1) interface (CRBN–GSPT1 interface)

Target
CRBN–GSPT1 interface
Molecular classification
E3 ubiquitin ligase substrate receptor, Translation termination factor, Protein-protein interaction interface
01

Overview

The CRBN–GSPT1 interface is a pharmacologically induced protein-protein interaction between the E3 ubiquitin ligase substrate receptor Cereblon (CRBN) and the translation termination factor G1 to S phase transition 1 (GSPT1, also known as eRF3a) (Matyskiela et al., Nature 2016). This interface is not naturally occurring but is stabilized by a class of small molecules known as molecular glues or Cereblon E3 ligase modulators (CELMoDs), such as CC-90009 (Valtematug) (Hansen et al., J. Med. Chem. 2021). When these drugs bind to the thalidomide-binding domain of CRBN, they alter its surface to create a high-affinity docking site for GSPT1 (Surka et al., Blood 2021). The resulting ternary complex facilitates the polyubiquitination of GSPT1 by the CRL4-CRBN E3 ligase complex, leading to its rapid degradation by the 26S proteasome. GSPT1 is essential for the termination of protein synthesis; its depletion triggers an integrated stress response and induces apoptosis, particularly in MYC-driven cancers (Ishizawa et al., Cancer Cell 2019). This target is currently being explored primarily for the treatment of acute myeloid leukemia (AML), where GSPT1 degradation has shown potent anti-leukemic activity in clinical trials (NCT02848001). However, therapeutic application is challenged by potential toxicities such as neutropenia and the development of resistance through mutations in the CRBN-binding pocket or GSPT1 itself.

Other names
CRBN-eRF3a interfaceCereblon-GSPT1 complexCRL4-CRBN-GSPT1 ternary complexCereblon-GSPT1 neo-substrate interface
02

Mechanism of action

Molecular glue-induced recruitment of GSPT1 to the CRL4-CRBN E3 ubiquitin ligase complex, leading to polyubiquitination and proteasomal degradation of GSPT1.

03

Biological functions

Targeted protein degradationTranslation terminationApoptosis inductionCell cycle regulationIntegrated stress response activation
04

Disease associations

Acute myeloid leukemia (AML)Solid tumors
05

Safety considerations

NeutropeniaThrombocytopeniaOff-target degradation of other zinc-finger proteinsAcquired resistance via CRBN or GSPT1 mutations
06

Interacting drugs

CC-90009 (Valtematug)

2 more in the full profile.

07

Biomarkers

GSPT1 protein levelsCereblon (CRBN) expression levelsMYC expression levelsATF4 induction

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