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Mapping the IMiD-dependent cereblon interactome using BioID-proximity labelling.
Costacurta, Matteo; Sandow, Jarrod J; Maher, Belinda; Susanto, Olivia; Vervoort, Stephin J; Devlin, Jennifer R; Garama, Daniel; Condina, Mark R; Steele, Joel R; Kahrood, Hossein V; Gough, Daniel; Johnstone, Ricky W; Shortt, Jake.
Afiliação
  • Costacurta M; Monash Haematology, Monash Health, Clayton, Australia.
  • Sandow JJ; Blood Cancer Therapeutics Laboratory, School of Clinical Sciences at Monash Health, Monash University, Clayton, Australia.
  • Maher B; The Walter and Eliza Hall Institute of Medical Research, Melbourne, Australia.
  • Susanto O; Department of Medical Biology, The University of Melbourne, Parkville, Australia.
  • Vervoort SJ; Monash Haematology, Monash Health, Clayton, Australia.
  • Devlin JR; Blood Cancer Therapeutics Laboratory, School of Clinical Sciences at Monash Health, Monash University, Clayton, Australia.
  • Garama D; Monash Haematology, Monash Health, Clayton, Australia.
  • Condina MR; Blood Cancer Therapeutics Laboratory, School of Clinical Sciences at Monash Health, Monash University, Clayton, Australia.
  • Steele JR; The Walter and Eliza Hall Institute of Medical Research, Melbourne, Australia.
  • Kahrood HV; Translational Haematology Program, Peter MacCallum Cancer Centre, Melbourne, Australia.
  • Gough D; Sir Peter MacCallum Department of Oncology, The University of Melbourne, Parkville, Australia.
  • Johnstone RW; Centre for Cancer Research, Hudson Institute of Medical Research, Clayton, Australia.
  • Shortt J; Department of Molecular and Translational Science, Monash University, Clayton, Australia.
FEBS J ; 2024 Jul 08.
Article em En | MEDLINE | ID: mdl-38975872
ABSTRACT
Immunomodulatory imide drugs (IMiDs) are central components of therapy for multiple myeloma (MM). IMiDs bind cereblon (CRBN), an adaptor for the CUL4-DDB1-RBX1 E3 ligase to change its substrate specificity and induce degradation of 'neosubstrate' transcription factors that are essential to MM cells. Mechanistic studies to date have largely focussed on mediators of therapeutic activity and insight into clinical IMiD toxicities is less developed. We adopted BioID2-dependent proximity labelling (BioID2-CRBN) to characterise the CRBN interactome in the presence and absence of various IMiDs and the proteasome inhibitor, bortezomib. We aimed to leverage this technology to further map CRBN interactions beyond what has been achieved by conventional proteomic techniques. In support of this approach, analysis of cells expressing BioID2-CRBN following IMiD treatment displayed biotinylation of known CRBN interactors and neosubstrates. We observed that bortezomib alone significantly modifies the CRBN interactome. Proximity labelling also suggested that IMiDs augment the interaction between CRBN and proteins that are not degraded, thus designating 'neointeractors' distinct from previously disclosed 'neosubstrates'. Here we identify Non-Muscle Myosin Heavy Chain IIA (MYH9) as a putative CRBN neointeractor that may contribute to the haematological toxicity of IMiDs. These studies provide proof of concept for proximity labelling technologies in the mechanistic profiling of IMiDs and related E3-ligase-modulating drugs.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article