AI Article Synopsis

  • The Amyloid Precursor Protein (APP) is linked to Alzheimer's disease but its normal function is not well understood.
  • A mutation (Y682) in APP disrupts its interaction with adaptor proteins, leading to problems in cellular trafficking, autophagy, and resulting in neuronal degeneration.
  • Research identified Clathrin heavy chain and Adaptor Protein 2 as key proteins involved in APP's function, suggesting these could be targets for new Alzheimer's therapies.

Article Abstract

The Amyloid Precursor Protein (APP) has been extensively studied for its role as the precursor of the β-amyloid protein (Aβ) in Alzheimer's disease (AD). However, our understanding of the normal function of APP is still patchy. Emerging evidence indicates that a dysfunction in APP trafficking and degradation can be responsible for neuronal deficits and progressive degeneration in humans. We recently reported that the Y682 mutation in the 682YENPTY687 domain of APP affects its binding to specific adaptor proteins and leads to its anomalous trafficking, to defects in the autophagy machinery and to neuronal degeneration. In order to identify adaptors that influence APP function, we performed pull-down experiments followed by quantitative mass spectrometry (MS) on hippocampal tissue extracts of three month-old mice incubated with either the 682YENPTY687 peptide, its mutated form, 682GENPTY687 or its phosphorylated form, 682pYENPTY687. Our experiments resulted in the identification of two proteins involved in APP internalization and trafficking: Clathrin heavy chain (hc) and its Adaptor Protein 2 (AP-2). Overall our results consolidate and refine the importance of Y682 in APP normal functions from an animal model of premature aging and dementia. Additionally, they open the perspective to consider Clathrin hc and AP-2 as potential targets for the design and development of new therapeutic strategies.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4691124PMC
http://dx.doi.org/10.3390/ijms161226181DOI Listing

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