Phosphoprotein Enriched in Astrocytes-15 kDa Expression Inhibits Astrocyte Migration by a Protein Kinase Cδ-dependent Mechanism

Author:

Renault-Mihara François1,Beuvon Frédéric2,Iturrioz Xavier3,Canton Brigitte1,De Bouard Sophie4,Léonard Nadine2,Mouhamad Shahul5,Sharif Ariane1,Ramos Joe W.6,Junier Marie-Pierre1,Chneiweiss Hervé1

Affiliation:

1. *Institut National de la Santé et de la Recherche Médicale U752, Collège de France, 75005 Paris, France;

2. Department of Pathology-Neurooncology, Hopital Sainte-Anne, 75674, Paris Cedex 14, France;

3. Institut National de la Santé et de la Recherche Médicale U691, Collège de France, 75005 Paris, France;

4. Institut National de la Santé et de la Recherche Médicale U421, Faculté de Médecine, 94010 Creteil, France;

5. Institut National de la Santé et de la Recherche Médicale U542, Hopital Paul Brousse, 94807 Villejuif Cedex, France; and

6. Cancer Research Center of Hawaii, University of Hawaii at Manoa, Honolulu, HI 96813

Abstract

Phosphoprotein enriched in astrocytes-15 kDa (PEA-15), a phosphoprotein enriched in astrocytes, inhibits both apoptosis and proliferation in normal and cancerous cells. Here, analysis of PEA-15 expression in glioblastoma organotypic cultures revealed low levels of PEA-15 in tumor cells migrating away from the explants, regardless of the expression levels in the originating explants. Because glioblastomas are highly invasive primary brain tumors that can originate from astrocytes, we explored the involvement of PEA-15 in the control of astrocyte migration. PEA-15−/− astrocytes presented an enhanced motility in vitro compared with their wild-type counterparts. Accordingly, NIH-3T3 cells transfected by green fluorescent protein-PEA-15 displayed a reduced migration. Reexpression of PEA-15 restored PEA-15−/− astrocyte motility to wild-type levels. Pharmacological manipulations excluded a participation of extracellular signal-regulated kinase/mitogen-activated protein kinase, phosphatidylinositol 3-kinase/Akt, and calcium/calmodulin-dependent protein kinase II in this effect of PEA-15. In contrast, treatment by bisindolylmaleimide, Gö6976, and rottlerin, and chronic application of phorbol 12-myristate 13-acetate and/or bryostatin-1 indicated that PKCδ mediated PEA-15 inhibition of astrocyte migration. PEA-15−/− astrocytes constitutively expressed a 40-kDa form of PKCδ that was down-regulated upon PEA-15 reexpression. Together, these data reveal a new function for PEA-15 in the inhibitory control of astrocyte motility through a PKCδ-dependent pathway involving the constitutive expression of a catalytic fragment of PKCδ.

Publisher

American Society for Cell Biology (ASCB)

Subject

Cell Biology,Molecular Biology

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