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PMID: 28111074 Published · ppublish English Journal Article Research Support, N.I.H., Extramural

ApoE2, ApoE3, and ApoE4 Differentially Stimulate APP Transcription and Aβ Secretion.

Cell ·Vol. 168 ·No. 3 ·2017-00-26 ·Pages 427-441.e21

Huang YA, Zhou B, Wernig M, Südhof TC

Abstract

Human apolipoprotein E (ApoE) apolipoprotein is primarily expressed in three isoforms (ApoE2, ApoE3, and ApoE4) that differ only by two residues. ApoE4 constitutes the most important genetic risk factor for Alzheimer's disease (AD), ApoE3 is neutral, and ApoE2 is protective. How ApoE isoforms influence AD pathogenesis, however, remains unclear. Using ES-cell-derived human neurons, we show that ApoE secreted by glia stimulates neuronal Aβ production with an ApoE4 > ApoE3 > ApoE2 potency rank order. We demonstrate that ApoE binding to ApoE receptors activates dual leucine-zipper kinase (DLK), a MAP-kinase kinase kinase that then activates MKK7 and ERK1/2 MAP kinases. Activated ERK1/2 induces cFos phosphorylation, stimulating the transcription factor AP-1, which in turn enhances transcription of amyloid-β precursor protein (APP) and thereby increases amyloid-β levels. This molecular mechanism also regulates APP transcription in mice in vivo. Our data describe a novel signal transduction pathway in neurons whereby ApoE activates a non-canonical MAP kinase cascade that enhances APP transcription and amyloid-β synthesis.

Keywords
APP Alzheimer’s disease ApoE Aβ CRISPR CRISPRi DLK MAP kinase signaling amyloid precursor protein apolipoprotein E beta amyloid cFos dual leucine-zipper kinase transcription
MeSH Terms
Alzheimer Disease/metabolism Amyloid beta-Protein Precursor/genetics Animals Apolipoproteins E/metabolism Embryonic Stem Cells/cytology,metabolism Fibroblasts/metabolism Humans MAP Kinase Signaling System Mice Neurons/metabolism Protein Isoforms/metabolism
Chemicals
APP protein, human Amyloid beta-Protein Precursor ApoE protein, human Apolipoproteins E Protein Isoforms
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Huang Yu-Wen Alvin
Department of Molecular and Cellular Physiology and Howard Hughes Medical Institute, Stanford University Medical School, Stanford, CA 94305, USA.
Zhou Bo
Department of Molecular and Cellular Physiology and Howard Hughes Medical Institute, Stanford University Medical School, Stanford, CA 94305, USA; Institute for Stem Cell Biology and Regenerative Medicine and Department of Pathology, Stanford University Medical School, Stanford, CA 94305, USA.
Wernig Marius
Institute for Stem Cell Biology and Regenerative Medicine and Department of Pathology, Stanford University Medical School, Stanford, CA 94305, USA.
Südhof Thomas C
Department of Molecular and Cellular Physiology and Howard Hughes Medical Institute, Stanford University Medical School, Stanford, CA 94305, USA. Electronic address: [email protected].
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Article Info
Journal
Cell
Abbr.
Cell
ISSN
1097-4172
Published
2017-00-26
Epub
2017-00-19
Pages
427-441.e21
Language
English
Region
United States
NLM ID
0413066
PMCID
PMC5310835
Subset
IM
Grants
NIA NIH HHS · RF1 AG048131 · United States
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