EXPRESSION OF THE AMYLOID PROTEIN-PRECURSOR OF ALZHEIMERS-DISEASE IN THE DEVELOPING RAT OLFACTORY SYSTEM

Citation
Hj. Clarris et al., EXPRESSION OF THE AMYLOID PROTEIN-PRECURSOR OF ALZHEIMERS-DISEASE IN THE DEVELOPING RAT OLFACTORY SYSTEM, Developmental brain research, 88(1), 1995, pp. 87-95
Citations number
49
Categorie Soggetti
Neurosciences
ISSN journal
01653806
Volume
88
Issue
1
Year of publication
1995
Pages
87 - 95
Database
ISI
SICI code
0165-3806(1995)88:1<87:EOTAPO>2.0.ZU;2-C
Abstract
The expression of the amyloid protein precursor (APP) of Alzheimer's d isease (AD) was examined in the olfactory system of the developing rat . Two monoclonal antibodies were used to detect APP: Alz-90, which spe cifically recognizes APP, and 22C11 which recognizes both APP and the structurally related protein APLP-2. Very similar patterns of immunore activity were observed with both antibodies. APP immunoreactivity was first detected in a subpopulation of olfactory epithelial cells at emb ryonic day 16 (E16), at a time when primary sensory olfactory axons ar e first beginning to pierce the glia limitans of the olfactory bulb. A t E16, there were more olfactory receptor neurons which expressed APP than the olfactory marker protein (OMP), indicating that some APP-cont aining neurons were not fully mature. Between E16 and postnatal day 8 (P8), there was a marked increase in the number of primary sensory olf actory neurons expressing APP. In the olfactory bulb, APP was first de tected in the mitral cell layer at E18, at a time when synapses are fi rst beginning to form between the dendrites of these cells and primary sensory axons. The level of APP detected within mitral cell perikarya decreased after birth and could no longer be detected between P3 and P8. This indicated that once synaptic connections had been initiated w ithin olfactory glomeruli, the expression of APP within the mitral cel ls was down-regulated. High levels of APP were, however, detected with in the olfactory nerve fiber layer and glomeruli between P3 and P8. Th e results demonstrate that APP expression in the olfactory system is c oordinately regulated with the major periods of synaptogenesis. Since APP is a known neurite outgrowth promoting molecule, we suspect that i t may play an important regulatory role in terminal sprouting during s ynaptogenesis in the olfactory bulb.