A Novel Role for PA28γ-Proteasome in Nuclear Speckle Organization and SR Protein Trafficking

Author:

Baldin Véronique1,Militello Muriel1,Thomas Yann1,Doucet Christine1,Fic Weronika2,Boireau Stephanie2,Jariel-Encontre Isabelle2,Piechaczyk Marc2,Bertrand Edouard2,Tazi Jamal2,Coux Olivier1

Affiliation:

1. *Centre de Recherche de Biochimie Macromoléculaire (CRBM-CNRS UMR 5237) and

2. Institut de Génétique Moléculaire de Montpellier (IGMM-CNRS UMR 5535), IFR122, Universités Montpellier 1 et 2, Montpellier, France

Abstract

In eukaryotic cells, proteasomes play an essential role in intracellular proteolysis and are involved in the control of most biological processes through regulated degradation of key proteins. Analysis of 20S proteasome localization in human cell lines, using ectopic expression of its CFP-tagged α7 subunit, revealed the presence in nuclear foci of a specific and proteolytically active complex made by association of the 20S proteasome with its PA28γ regulator. Identification of these foci as the nuclear speckles (NS), which are dynamic subnuclear structures enriched in splicing factors (including the SR protein family), prompted us to analyze the role(s) of proteasome-PA28γ complexes in the NS. Here, we show that knockdown of these complexes by small interfering RNAs directed against PA28γ strongly impacts the organization of the NS. Further analysis of PA28γ-depleted cells demonstrated an alteration of intranuclear trafficking of SR proteins. Thus, our data identify proteasome-PA28γ complexes as a novel regulator of NS organization and function, acting most likely through selective proteolysis. These results constitute the first demonstration of a role of a specific proteasome complex in a defined subnuclear compartment and suggest that proteolysis plays important functions in the precise control of splicing factors trafficking within the nucleus.

Publisher

American Society for Cell Biology (ASCB)

Subject

Cell Biology,Molecular Biology

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