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Method for Identifying Small Molecule Inhibitors of the Protein-protein Interaction Between HCN1 and TRIP8b
Published on: November 11, 2016
Identification of chemicals breaking the USP8 interaction with its endocytic substrate CHMP1B
Agnès Journet1, Caroline Barette1, Laurence Aubry2
1Univ. Grenoble Alpes, CEA, Inserm, IRIG, BGE, F-38000 Grenoble, France.
Abstract:
The ubiquitin-specific protease USP8 plays a major role in controlling the stability and intracellular trafficking of numerous cell surface proteins among which the EGF receptor that regulates cell growth and proliferation in many physio-pathological processes. The function of USP8 at the endocytic pathway level partly relies on binding to and deubiquitination of the Endosomal Sorting Complex Required for Transport (ESCRT) protein CHMP1B. In the aim of finding chemical inhibitors of the USP8::CHMP1B interaction, we performed a high-throughput screening campaign using an HTRF® assay to monitor the interaction directly in lysates of cells co-expressing both partners. The assay was carried out in an automated format to screen the academic Fr-PPIChem library (Bosc N et al., 2020), which includes 10,314 compounds dedicated to the targeting of protein-protein interactions (PPIs). Eleven confirmed hits inhibited the USP8::CHMP1B interaction within a range of 30% to 70% inhibition at 50 µM, while they were inactive on a set of other PPI interfaces demonstrating the feasibility of specifically disrupting this particular interface. In parallel, we adapted this HTRF® assay to compare the USP8 interacting capacity of CHMP1B variants. As anticipated from earlier studies, a deletion of the MIM (Microtubule Interacting and Trafficking domain Interacting Motif) domain or mutation of two conserved leucine residues, L192 and L195, in this domain respectively abolished or strongly impeded the USP8::CHMP1B interaction. By contrast, a CHMP1B mutant that displays a highly decreased ubiquitination level following mutation of four lysine residues in arginine interacted at a similar level as the wild-type form with USP8. Therefore, conserved leucine residues within the MIT domain rather than its ubiquitinated status triggers CHMP1B substrate recognition by USP8.
Insights
Researchers screened 10,314 compounds to find inhibitors of the USP8::CHMP1B interaction, crucial for cell surface protein regulation. They identified eleven compounds that specifically disrupt this protein-protein interaction, validating it as a drug target.
Area of Science:
- Biochemistry
- Cell Biology
- Drug Discovery
Background:
- The ubiquitin-specific protease USP8 regulates cell surface protein stability and trafficking, including the EGF receptor.
- USP8's function in the endocytic pathway involves binding and deubiquitinating the ESCRT protein CHMP1B.
- Targeting the USP8::CHMP1B interaction is a potential strategy for modulating cellular processes.
Purpose of the Study:
- To identify chemical inhibitors of the USP8::CHMP1B protein-protein interaction (PPI).
- To validate the USP8::CHMP1B interface as a druggable target.
- To investigate the structural determinants of CHMP1B recognition by USP8.
Main Methods:
- High-throughput screening (HTS) using a homogeneous time-resolved fluorescence (HTRF®) assay.
- Screening of the academic Fr-PPIChem library containing 10,314 compounds.
- Characterization of CHMP1B variants to assess USP8 binding capacity.
Main Results:
- Eleven confirmed hits inhibited the USP8::CHMP1B interaction by 30-70% at 50 µM.
- These hits demonstrated specificity for the USP8::CHMP1B interface.
- Conserved leucine residues in CHMP1B's MIT domain, not ubiquitination status, are critical for USP8 recognition.
Conclusions:
- Specific disruption of the USP8::CHMP1B interaction is feasible using small molecules.
- The study identified potential lead compounds for further drug development.
- Structural insights suggest that specific residues within the MIT domain mediate substrate recognition by USP8.
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