TY - JOUR
T1 - Interaction of the phosphotyrosine interaction/phosphotyrosine binding- related domains of Fe65 with wild-type and mutant Alzheimer's β-amyloid precursor proteins
AU - Zambrano, Nicola
AU - Buxbaum, Joseph D.
AU - Minopoli, Giuseppina
AU - Fiore, Francesca
AU - De Candia, Paola
AU - De Renzis, Stefano
AU - Faraonio, Raffaella
AU - Sabo, Shasta
AU - Cheetham, Jim
AU - Sudol, Marius
AU - Russo, Tommaso
PY - 1997/3/7
Y1 - 1997/3/7
N2 - The two tandem phosphotyrosine interaction/phosphotyrosine binding (PID/PTB) domains of the Fe65 protein interact with the intracellular region of the Alzheimer's β-amyloid precursor protein (APP). This interaction, previously demonstrated in vitro and in the yeast two hybrid system, also takes place in vivo in mammalian cells, as demonstrated here by anti-Fe65 co- immunoprecipitation experiments. This interaction differs from that occurring between other PID/PTB domain-containing proteins, such as Shc and insulin receptor substrate 1, and activated growth factor receptors as follows: (i) the Fe65-APP interaction is phosphorylation-independent; (ii) the region of the APP intracellular domain involved in the binding is larger than that of the growth factor receptor necessary for the formation of the complex with She; and (iii) despite a significant similarity the carboxyl-terminal regions of PID/PTB of Fe65 and of Shc are not functionally interchangeable in terms of binding cognate ligands. A role for Fe65 in the pathogenesis of familial Alzheimer's disease is suggested by the finding that mutant APP, responsible for some cases of familial Alzheimer's disease, shows an altered in vivo interaction with Fe65.
AB - The two tandem phosphotyrosine interaction/phosphotyrosine binding (PID/PTB) domains of the Fe65 protein interact with the intracellular region of the Alzheimer's β-amyloid precursor protein (APP). This interaction, previously demonstrated in vitro and in the yeast two hybrid system, also takes place in vivo in mammalian cells, as demonstrated here by anti-Fe65 co- immunoprecipitation experiments. This interaction differs from that occurring between other PID/PTB domain-containing proteins, such as Shc and insulin receptor substrate 1, and activated growth factor receptors as follows: (i) the Fe65-APP interaction is phosphorylation-independent; (ii) the region of the APP intracellular domain involved in the binding is larger than that of the growth factor receptor necessary for the formation of the complex with She; and (iii) despite a significant similarity the carboxyl-terminal regions of PID/PTB of Fe65 and of Shc are not functionally interchangeable in terms of binding cognate ligands. A role for Fe65 in the pathogenesis of familial Alzheimer's disease is suggested by the finding that mutant APP, responsible for some cases of familial Alzheimer's disease, shows an altered in vivo interaction with Fe65.
UR - http://www.scopus.com/inward/record.url?scp=0030894021&partnerID=8YFLogxK
U2 - 10.1074/jbc.272.10.6399
DO - 10.1074/jbc.272.10.6399
M3 - Article
C2 - 9045663
AN - SCOPUS:0030894021
SN - 0021-9258
VL - 272
SP - 6399
EP - 6405
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 10
ER -