Disruption of the COP9 Signalosome Csn2 Subunit in Mice Causes Deficient Cell Proliferation, Accumulation of p53 and Cyclin E, and Early Embryonic Death

Author:

Lykke-Andersen Karin1,Schaefer Laura2,Menon Suchithra1,Deng Xing-Wang1,Miller Jeffrey Boone2,Wei Ning1

Affiliation:

1. Department of Molecular, Cellular, and Developmental Biology, Yale University, New Haven, Connecticut 06520-8104

2. Neuromuscular Biology & Disease Group, Boston Biomedical Research Institute, Watertown, Massachusetts 02478

Abstract

ABSTRACT Csn2 (Trip15/Cops2/Alien ) encodes the second subunit of the COP9 signalosome (CSN), an eight-subunit heteromeric complex homologous to the lid subcomplex of the 26S proteasome. CSN is a regulator of SCF (Skp1-cullin-F-box protein)ubiquitin ligases, mostly through the enzymatic activity that deconjugates the ubiquitin-like protein Nedd8 from the SCF Cul1 component. In addition, CSN associates with protein kinase activities targeting p53, c-Jun, and IκB for phosphorylation. Csn2 also interacts with and regulates a subset of nuclear hormone receptors and is considered a novel corepressor. We report that targeted disruption of Csn2 in mice caused arrest of embryo development at the peri-implantation stage. Csn2 −/− blastocysts failed to outgrow in culture and exhibited a cell proliferation defect in inner cell mass, accompanied by a slight decrease in Oct4. In addition, lack of Csn2 disrupted the CSN complex and resulted in a drastic increase in cyclin E, supporting a role for CSN in cooperating with the SCF-ubiquitin-proteasome system to regulate protein turnover. Furthermore, Csn2 −/− embryos contained elevated levels of p53 and p21, which may contribute to premature cell cycle arrest of the mutant.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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