A delta-secretase-truncated APP fragment activates CEBPB, mediating Alzheimer’s disease pathologies

Author:

Yao Yinan12,Kang Seong Su2,Xia Yiyuan2,Wang Zhi-Hao2ORCID,Liu Xia2,Muller Thorsten34,Sun Yi E15,Ye Keqiang2

Affiliation:

1. Tongji Hospital, Tongji University School of Medicine, Shanghai 20065, P.R. China

2. Department of Pathology and Laboratory Medicine, Emory University School of Medicine, Atlanta, GA 30322, USA

3. Department of Molecular Biochemistry, Cell Signalling, Ruhr-University Bochum, 44801 Bochum, Germany

4. Institute of Psychiatric Phenomics and Genomics (IPPG), University Hospital, LMU Munich, Munich 80336, Germany

5. Shanghai Institute of Stem Cell Research and Clinical Translation, Shanghai East Hospital, Tongji University School of Medicine, Shanghai 200120, China

Abstract

Abstract Amyloid-β precursor protein (APP) is sequentially cleaved by secretases and generates amyloid-β, the major components in senile plaques in Alzheimer’s disease. APP is upregulated in human Alzheimer’s disease brains. However, the molecular mechanism of how APP contributes to Alzheimer’s disease pathogenesis remains incompletely understood. Here we show that truncated APP C586-695 fragment generated by δ-secretase directly binds to CCAAT/enhancer-binding protein beta (CEBPB), an inflammatory transcription factor, and enhances its transcriptional activity, escalating Alzheimer’s disease-related gene expression and pathogenesis. The APP C586-695 fragment, but not full-length APP, strongly associates with CEBPB and elicits its nuclear translocation and augments the transcriptional activities on APP itself, MAPT (microtubule-associated protein tau), δ-secretase and inflammatory cytokine mRNA expression, finally triggering Alzheimer’s disease pathology and cognitive disorder in a viral overexpression mouse model. Blockade of δ-secretase cleavage of APP by mutating the cleavage sites reduces its stimulatory effect on CEBPB, alleviating amyloid pathology and cognitive dysfunctions. Clearance of APP C586-695 from 5xFAD mice by antibody administration mitigates Alzheimer’s disease pathologies and restores cognitive functions. Thus, in addition to the sequestration of amyloid-β, APP implicates in Alzheimer’s disease pathology by activating CEBPB upon δ-secretase cleavage.

Funder

NIH

National Key Research and Development Program

China Natural Science Foundation

Foundation of Shanghai Municipal Education Commission

CSC fellowship

Publisher

Oxford University Press (OUP)

Subject

Clinical Neurology

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