| Literature DB >> 12815056 |
Jinhe Li1, Gregory J Fici, Chai-An Mao, Richard L Myers, Rongqing Shuang, Gregory P Donoho, Adele M Pauley, Carol S Himes, Wenning Qin, Ismail Kola, Kalpana M Merchant, Jeffrey S Nye.
Abstract
Nicastrin is a component of the gamma-secretase complex that has been shown to adhere to presenilin-1 (PS1), Notch, and APP. Here we demonstrate that Nicastrin-deficient mice showed a phenotype that is indistinguishable from PS1/PS2 double knock-out mice, whereas heterozygotes were healthy and viable. Fibroblasts derived from Nicastrin-deficient embryos were unable to generate amyloid beta-peptide and failed to release the intracellular domain of APP- or Notch1-Gal4-VP16 fusion proteins. Additionally, C- and N-terminal fragments of PS1 and the C-terminal fragments of PS2 were not detectable in Nicastrin-null fibroblasts, whereas full-length PS1 accumulated in null fibroblasts, indicating that Nicastrin is required for the endoproteolytic processing of presenilins. Interestingly, cells derived from Nicastrin heterozygotes produced relatively higher levels of amyloid beta-peptide whether the source was endogenous mouse or transfected human APP. These data demonstrate that Nicastrin is essential for the gamma-secretase cleavage of APP and Notch in mammalian cells and that Nicastrin has both positive and negative functions in the regulation of gamma-secretase activity.Entities:
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Year: 2003 PMID: 12815056 DOI: 10.1074/jbc.M301288200
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157