TY - JOUR
T1 - Increased secretion of the amino-terminal fragment of amyloid precursor protein in brains of rats with a constitutive up-regulation of protein kinase C
AU - Caputi, A.
AU - Barindelli, S.
AU - Pastorino, L.
AU - Cimino, M.
AU - Buxbaum, J. D.
AU - Cattabeni, F.
AU - Di Luca, M.
PY - 1997/6
Y1 - 1997/6
N2 - Protein kinase C (PKC) activation stimulates release of secreted amyloid precursor protein (APP(s)) in several cell lines. To ascertain the role of PKC in regulating APP metabolism in vivo, we used an animal model (methylazoxymethanol-treated rats; MAM rats) in which PKC is permanently hyperactivated in selected brain areas, i.e., cortex and hippocampus. A significant decrease in membrane-bound APP concentration was found in synaptosomes derived from cortex and hippocampus of MAM rats, where PKC is up-regulated, with a concomitant increase in APP(s) production in soluble fractions of the same brain areas. In contrast, in a brain area not affected by MAM treatment (i.e., cerebellum), APP secretion is similar in control and MAM rats, indicating that altered metabolism of APP is restricted to only those areas in which the PKC system is up-regulated. In addition, phorbol esters or H-7 modulate APP(s) release in hippocampal slices from both control and MAM rats, further supporting an in vivo role for this enzyme in regulating metabolism of mature APP.
AB - Protein kinase C (PKC) activation stimulates release of secreted amyloid precursor protein (APP(s)) in several cell lines. To ascertain the role of PKC in regulating APP metabolism in vivo, we used an animal model (methylazoxymethanol-treated rats; MAM rats) in which PKC is permanently hyperactivated in selected brain areas, i.e., cortex and hippocampus. A significant decrease in membrane-bound APP concentration was found in synaptosomes derived from cortex and hippocampus of MAM rats, where PKC is up-regulated, with a concomitant increase in APP(s) production in soluble fractions of the same brain areas. In contrast, in a brain area not affected by MAM treatment (i.e., cerebellum), APP secretion is similar in control and MAM rats, indicating that altered metabolism of APP is restricted to only those areas in which the PKC system is up-regulated. In addition, phorbol esters or H-7 modulate APP(s) release in hippocampal slices from both control and MAM rats, further supporting an in vivo role for this enzyme in regulating metabolism of mature APP.
KW - Alzheimer's disease
KW - Amyloid precursor protein
KW - Methylazoxymethanol
KW - Protein kinase C
KW - Rat
UR - http://www.scopus.com/inward/record.url?scp=0030921730&partnerID=8YFLogxK
U2 - 10.1046/j.1471-4159.1997.68062523.x
DO - 10.1046/j.1471-4159.1997.68062523.x
M3 - Article
C2 - 9166748
AN - SCOPUS:0030921730
SN - 0022-3042
VL - 68
SP - 2523
EP - 2529
JO - Journal of Neurochemistry
JF - Journal of Neurochemistry
IS - 6
ER -