Mutant Presenilin 1 Increases the Expression and Activity of BACE1

作者:Giliberto Luca; Borghi Roberta; Piccini Alessandra; Mangerini Rosa; Sorbi Sandro; Cirmena Gabriella; Garuti Anna; Ghetti Bernardino; Tagliavini Fabrizio; Mughal Mohamed R; Mattson Mark P; Zhu Xiongwei; Wang Xinglong; Guglielmotto Michela; Tamagno Elena; Tabatona Massimo*
来源:JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284(14): 9027-9038.
DOI:10.1074/jbc.M805685200

摘要

Mutations of the presenilin 1 (PS1) gene are the most common cause of early onset familial Alzheimer disease (FAD). PS1 mutations alter the activity of the gamma-secretase on the beta-amyloid precursor protein (APP), leading to selective overproduction of beta-amyloid (A beta) 42 peptides, the species that forms oligomers that may exert toxic effects on neurons. Here we show that PS1 mutations, expressed both transiently and stably, in non-neuronal and neuronal cell lines increase the expression and the activity of the beta-secretase (BACE1), the rate-limiting step of A beta production. Also, BACE1 expression and activity are elevated in brains of PS1 mutant knock-in mice compared with wild type littermates as well as in cerebral cortex of FAD cases bearing various PS1 mutations compared with in sporadic AD cases and controls. The up-regulation of BACE1 by PS1 mutations requires the gamma-secretase cleavage of APP and is proportional to the amount of secreted A beta 42. A beta 42, and not AICD (APP intracellular domain), is indeed the APP derivative that mediates the overexpression of BACE1. The effect of PS1 mutations on BACE1 may contribute to determine the wide clinical and pathological phenotype of early onset FAD.

  • 出版日期2009-4-3