The translation initiation factor 3 subunit eIF3K interacts with PML and associates with PML nuclear bodies

Jayme Salsman, Jordan Pinder, Brenda Tse, Dale Corkery, Graham Dellaire

Résultat de recherche: Articleexamen par les pairs

12 Citations (Scopus)

Résumé

The promyelocytic leukemia protein (PML) is a tumor suppressor protein that regulates a variety of important cellular processes, including gene expression, DNA repair and cell fate decisions. Integral to its function is the ability of PML to form nuclear bodies (NBs) that serve as hubs for the interaction and modification of over 90 cellular proteins. There are seven canonical isoforms of PML, which encode diverse C-termini generated by alternative pre-mRNA splicing. Recruitment of specific cellular proteins to PML NBs is mediated by protein-protein interactions with individual PML isoforms. Using a yeast two-hybrid screen employing peptide sequences unique to PML isoform I (PML-I), we identified an interaction with the eukaryotic initiation factor 3 subunit K (eIF3K), and in the process identified a novel eIF3K isoform, which we term eIF3K-2. We further demonstrate that eIF3K and PML interact both in vitro via pull-down assays, as well as in vivo within human cells by co-immunoprecipitation and co-immunofluorescence. In addition, eIF3K isoform 2 (eIF3K-2) colocalizes to PML bodies, particularly those enriched in PML-I, while eIF3K isoform 1 associates poorly with PML NBs. Thus, we report eIF3K as the first known subunit of the eIF3 translation pre-initiation complex to interact directly with the PML protein, and provide data implicating alternative splicing of both PML and eIF3K as a possible regulatory mechanism for eIF3K localization at PML NBs.

Langue d'origineEnglish
Pages (de-à)2554-2565
Nombre de pages12
JournalExperimental Cell Research
Volume319
Numéro de publication17
DOI
Statut de publicationPublished - oct. 15 2013

Note bibliographique

Funding Information:
This research was funded by an operating grant to G.D. from the Canadian Institutes of Health Research ( CIHR, MOP-84260 ). J.S., D.C. and J.P. are supported by trainee awards from the Beatrice Hunter Cancer Research Institute with funds provided as part of the Terry Fox Foundation Strategic Health Research Training Program in Cancer Research at CIHR. B.T. received a studentship from the Nova Scotia Health Research Foundation.

ASJC Scopus Subject Areas

  • Cell Biology

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