TRIM37 prevents formation of centriolar protein assemblies by regulating Centrobin

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http://hdl.handle.net/10138/329236

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Balestra , F R , Dominguez-Calvo , A , Wolf , B , Busso , C , Buff , A , Averink , T , Lipsanen-Nyman , M , Huertas , P , Rios , R M & Gönczy , P 2021 , ' TRIM37 prevents formation of centriolar protein assemblies by regulating Centrobin ' , eLife , vol. 10 , 62640 . https://doi.org/10.7554/eLife.62640

Title: TRIM37 prevents formation of centriolar protein assemblies by regulating Centrobin
Author: Balestra, Fernando R.; Dominguez-Calvo, Andres; Wolf, Benita; Busso, Coralie; Buff, Alizee; Averink, Tessa; Lipsanen-Nyman, Marita; Huertas, Pablo; Rios, Rosa M.; Gönczy, Pierre
Contributor organization: HUS Children and Adolescents
Lastentautien yksikkö
Children's Hospital
University of Helsinki
Helsinki University Hospital Area
Date: 2021-01-25
Language: eng
Number of pages: 29
Belongs to series: eLife
ISSN: 2050-084X
DOI: https://doi.org/10.7554/eLife.62640
URI: http://hdl.handle.net/10138/329236
Abstract: TRIM37 is an E3 ubiquitin ligase mutated in Mulibrey nanism, a disease with impaired organ growth and increased tumor formation. TRIM37 depletion from tissue culture cells results in supernumerary foci bearing the centriolar protein Centrin. Here, we characterize these centriolar protein assemblies (Cenpas) to uncover the mechanism of action of TRIM37. We find that an atypical de novo assembly pathway can generate Cenpas that act as microtubule-organizing centers (MTOCs), including in Mulibrey patient cells. Correlative light electron microscopy reveals that Cenpas are centriole-related or electron-dense structures with stripes. TRIM37 regulates the stability and solubility of Centrobin, which accumulates in elongated entities resembling the striped electron dense structures upon TRIM37 depletion. Furthermore, Cenpas formation upon TRIM37 depletion requires PLK4, as well as two parallel pathways relying respectively on Centrobin and PLK1. Overall, our work uncovers how TRIM37 prevents Cenpas formation, which would otherwise threaten genome integrity.
Subject: COILED-COIL PROTEIN
DE-NOVO
MICROTUBULE NUCLEATION
SINGLE PROCENTRIOLE
DAUGHTER CENTRIOLES
MULIBREY NANISM
POLO KINASE
CENTROSOME
PLK4
CELLS
3123 Gynaecology and paediatrics
3122 Cancers
Peer reviewed: Yes
Rights: cc_by
Usage restriction: openAccess
Self-archived version: acceptedVersion


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