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Publication : A {gamma}-secretase-independent mechanism of signal transduction by the amyloid precursor protein.

First Author  Hass MR Year  2005
Journal  J Biol Chem Volume  280
Issue  44 Pages  36895-904
PubMed ID  16103124 Mgi Jnum  J:128865
Mgi Id  MGI:3768204 Doi  10.1074/jbc.M502861200
Citation  Hass MR, et al. (2005) A {gamma}-secretase-independent mechanism of signal transduction by the amyloid precursor protein. J Biol Chem 280(44):36895-904
abstractText  It has been proposed that gamma-secretase-mediated release of the amyloid precursor protein (APP) intracellular domain (AICD) results in nuclear translocation and signaling through a complex with the adaptor protein Fe65 and the histone acetyltransferase Tip60. Here, we show that APP and Fe65 activate transcription through a Gal4-Tip60 reporter in presenilin-1/2-deficient cells lacking generation of AICD. APP and Fe65 also activated transcription in the presence of gamma-secretase inhibitors that prevent amyloid beta-peptide production in human embryonic kidney 293 and SH-SY5Y cells. In contrast to the transcriptionally active Notch intracellular domain, expression of AICD did not activate transcription. An alternative mechanism for APP signal transduction is suggested by the identification of essential cyclin-dependent kinase (CDK) phosphorylation sites in Tip60. Mutation of these Tip60 phosphorylation sites or treatment with the CDK inhibitor roscovitine blocked the ability of APP to signal through Tip60. Moreover, APP stabilized Tip60 through CDK-dependent phosphorylation. Subcellular fractionation and confocal immunofluorescence showed that APP recruited Tip60 to membrane compartments. Thus, APP may signal to the nucleus by a gamma-secretase-independent mechanism that involves membrane sequestration and phosphorylation of Tip60.
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