Expression of extracellular matrix molecules in the embryonic rat olfactory pathway
- 1 September 1996
- journal article
- research article
- Published by Wiley in Journal of Neurobiology
- Vol. 31 (1) , 41-55
- https://doi.org/10.1002/(sici)1097-4695(199609)31:1<41::aid-neu4>3.0.co;2-f
Abstract
Primary olfactory neurons arise from placodal neuroepithelium that is separate from the neuroepithelial plate that forms the neural tube and crest. The axons of these neurons course along a stereotypical pathway and invade the rostral telencephalic vesicle where they induce the formation of the olfactory bulb. In the present study we examined the expression of several extracellular matrix constituents during formation of the olfactory nerve pathway in order to identify putative developmentally significant molecules. Double-label immunofluorescence was used to simultaneously map the trajectory of growing primary olfactory axons by expression of growth associated protein 43 (GAP-43) and the distribution of either laminin, heparan sulfate proteoglycans (HSPG), or chondroitin sulfate proteoglycans (CSPG). At embryonic day 12.5 (E12.5) primary olfactory axons have exited the olfactory neuroepithelium of the nasal pit and formed a rudimentary olfactory nerve. These axons together with migrating neural cells form a large mass outside the rostral surface of the telencephalon. This nerve pathway is clearly defined by a punctate distribution of laminin and HSPG. CSPG is selectively present in the mesenchyme between the olfactory nerve pathway and the nasal pit and in the marginal zone of the telencephalon. At E14.5 primary olfactory axons pierce the telencephalon through gaps that have emerged in the basement membrane. At this age both laminin and HSPG are colocalized with the primary olfactory axons that have entered the marginal zone of the telencephalon. CSPG expression becomes downregulated in this same region while it remains highly expressed in the marginal zone adjacent to the presumptive olfactory bulb. By E16.5 most of the basement membrane separating the olfactory nerve from the telencephalon has degraded, and there is direct continuity between the olfactory nerve pathway and the central nervous system. This strict spatiotemporal regulation of extracellular matrix constituents in the olfactory nerve pathway supports an important role of these molecules in axon guidance. We propose that laminin and HSPG are expressed by migrating olfactory Schwann cells in the developing olfactory nerve pathway and that these molecules provide a conducive substrate for axon growth between the olfactory neuroepithelium and the brain. CSPG in the surrounding mesenchyme may act to restrict axon growth to within this pathway. The regional degradation of the basement membrane of the telencephalon and the downregulation of CSPG within the marginal zone probably facilitates the passage of primary olfactory axons into the brain to form the presumptive nerve fiber layer of the olfactory bulb. © 1996 John Wiley & Sons, Inc.Keywords
This publication has 38 references indexed in Scilit:
- Expression of extracellular matrix molecules and cell surface molecules in the olfactory nerve pathway during early developmentJournal of Comparative Neurology, 1996
- In vitro analysis of neurite outgrowth indicate a potential role for tenascin-like molecules in the development of insect olfactory glomeruliJournal of Neurobiology, 1994
- Role of Astroglial Extracellular Matrix in the Formation of Rat Olfactory Bulb GlomeruliExperimental Neurology, 1993
- Establishment and neurite outgrowth properties of neonatal and adult rat olfactory bulb glial cell linesBrain Research, 1993
- Involvement of a chondroitin sulfate proteoglycan in the avoidance of chick epidermis by dorsal root ganglia fibers: A study using β-d-xylosideDevelopmental Biology, 1991
- Relationship between neuronal migration and cell-substratum adhesion: laminin and merosin promote olfactory neuronal migration but are anti-adhesive.The Journal of cell biology, 1991
- Differentiation and survival of rat olfactory epithelial neurons in dissociated cell cultureDevelopmental Brain Research, 1991
- Monoclonal antibodies show that kinase C phosphorylation of GAP-43 during axonogenesis is both spatially and temporally restricted in vivo.The Journal of cell biology, 1991
- Glial cells of mammalian brain produce a variant form of lamininExperimental Neurology, 1989
- Origin of luteinizing hormone-releasing hormone neuronsNature, 1989