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1.
J Neurosci ; 34(33): 11159-72, 2014 Aug 13.
Article in English | MEDLINE | ID: mdl-25122912

ABSTRACT

Accumulating evidence suggests that the copper-binding amyloid precursor protein (APP) has an essential synaptic function. APP synaptogenic function depends on trans-directed dimerization of the extracellular E1 domain encompassing a growth factor-like domain (GFLD) and a copper-binding domain (CuBD). Here we report the 1.75 Å crystal structure of the GFLD in complex with a copper ion bound with high affinity to an extended hairpin loop at the dimerization interface. In coimmunoprecipitation assays copper binding promotes APP interaction, whereas mutations in the copper-binding sites of either the GFLD or CuBD result in a drastic reduction in APP cis-orientated dimerization. We show that copper is essential and sufficient to induce trans-directed dimerization of purified APP. Furthermore, a mixed culture assay of primary neurons with HEK293 cells expressing different APP mutants revealed that APP potently promotes synaptogenesis depending on copper binding to the GFLD. Together, these findings demonstrate that copper binding to the GFLD of APP is required for APP cis-/trans-directed dimerization and APP synaptogenic function. Thus, neuronal activity or disease-associated changes in copper homeostasis likely go along with altered APP synaptic function.


Subject(s)
Amyloid beta-Protein Precursor/metabolism , Copper/metabolism , Neurons/metabolism , Binding Sites/physiology , Crystallography, X-Ray , HEK293 Cells , Humans , Protein Conformation , Protein Multimerization
2.
FEBS Lett ; 585(20): 3229-35, 2011 Oct 20.
Article in English | MEDLINE | ID: mdl-21968187

ABSTRACT

Neuronal Fe65 is a central adapter for the intracellular protein network of Alzheimer's disease related amyloid precursor protein (APP). It contains a unique tandem array of phosphotyrosine-binding (PTB) domains that recognize NPXY internalization motifs present in the intracellular domains of APP (AICD) and the low-density lipoprotein receptor-related protein LRP1 (LICD). The ternary APP/Fe65/LRP1 complex is an important mediator of APP processing and affects ß-amyloid peptide production. Here we dissect by biochemical and biophysical methods the direct interactions within the ternary complex and reveal a phosphorylation-dependent insulin receptor substrate (IRS-) like interaction of the distal NPVY(4507) motif of LICD with Fe65-PTB1.


Subject(s)
Alzheimer Disease/metabolism , Amyloid beta-Protein Precursor/metabolism , Low Density Lipoprotein Receptor-Related Protein-1/metabolism , Multiprotein Complexes/metabolism , Nerve Tissue Proteins/metabolism , Nuclear Proteins/metabolism , Alzheimer Disease/genetics , Amino Acid Motifs , Amyloid beta-Protein Precursor/chemistry , Amyloid beta-Protein Precursor/genetics , Humans , Low Density Lipoprotein Receptor-Related Protein-1/chemistry , Low Density Lipoprotein Receptor-Related Protein-1/genetics , Multiprotein Complexes/chemistry , Multiprotein Complexes/genetics , Nerve Tissue Proteins/chemistry , Nerve Tissue Proteins/genetics , Nuclear Proteins/chemistry , Nuclear Proteins/genetics , Protein Structure, Tertiary
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