4.5 Article

Differential regulation of BACE1 promoter activity by nuclear factor-κB in neurons and glia upon exposure to β-amyloid peptides

Journal

JOURNAL OF NEUROSCIENCE RESEARCH
Volume 85, Issue 6, Pages 1194-1204

Publisher

WILEY-LISS
DOI: 10.1002/jnr.21252

Keywords

BACE1; Alzheimer's disease; NF-kappa B; astrocytes; A beta

Categories

Funding

  1. NINDS NIH HHS [NS39161] Funding Source: Medline
  2. PHS HHS [T32-07254] Funding Source: Medline

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The brains of Alzheimer's disease (AD) patients display cerebrovascular and parenchymal deposits of P-amyloid (AP) peptides, which are derived by proteolytic processing by the P-site APP-cleaving enzyme 1 (BACE1) of the amyloid precursor protein (APP). The rat BACE1 promoter has a nuclear factor-kappa B (NF-KB) binding site. Deletion studies with a BACE1 promoter/luciferase reporter suggest that the NF-KB binding DNA consensus sequence plays a suppressor role, when occupied by NF-KB, in the regulation of neuronal brain BACE1 expression. Here we characterize a signal transduction pathway that may be responsible for the increases in Ap associated with AD. We propose that the transcription factor NF-KB acts as a repressor in neurons but as an activator of BACE1 transcription in activated astrocytes present in the CNS under chronic stress, a feature present in the AD brain. The activated astrocytic stimulation of BACE1 may in part account for increased BACE1 transcription and subsequent processing of A beta in a cell-specific manner in the aged and AD brain. As measured by reporter gene promoter constructs and endogenous BACE1 protein expression, a functional NF-kappa B site was stimulatory in activated astrocytes and A beta-exposed neuronal cells and repressive in neuronal and nonactivated astrocytic cells. Given the evidence for increased levels of activated astrocytes in the aged brain, the age- and AD-associated increases in NF-kappa B in brain may be significant contributors to increases in A beta, acting as a positive feedback loop of chronic inflammation, astrocyte activation, increased p65/p50 activation of BACE1 transcription, and further inflammation. (C) 2007 Wiley-Liss, Inc.

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