NEURONAL MIGRATION · New migratory targets in the postnatal brain for neuroblasts generated in the sub-ventricular zone: molecular and functional characterization
FP6 — Marie Curie Actions (Human Resources and Mobility)
- Duration
- 2007-10-01 → 2009-09-30
- EU contribution
- €150,856
- Participants
- 1
- Scheme
- IIF
Lines connect the coordinator with its partners.
Results in brief
Final Activity Report Summary - NEURONAL MIGRATION (New migratory targets in the postnatal brain for neuroblasts generated in the subventricular zone: molecular and functional characterization)
Mammalian neurogenesis occurs primarily during embryonic development. Throughout postnatal development and adulthood, neurogenesis persists in only two regions, the subventricular zone (SVZ) of the lateral ventricles and the subgranular zone of the hippocampus. New neurons generated in the SVZ migrate to the olfactory bulb (OB) through the rostral migratory stream (RMS) where they functionally integrate into pre-existing neuronal networks. In Prof. Monyers lab a transgenic mouse expressing the in vivo marker enhanced green fluorescent protein (EGFP) under the control of the 5-HT3 receptor promoter was generated. In these mice, immature neuroblasts arising from the SVZ were labelled, allowing for the visualisation of the migration patterns followed by newborn interneurons. In a first manuscript, published in 2008, we used BrdU injections and retroviral labelling to show that, during the first month after birth, numerous neuroblasts born in the SVZ exited the RMS and migrated not only to the OB but also to the cortex, where they developed into mature GABAergic interneurons. In a second manuscript, which was under preparation by the time of the project completion, we performed patch-clamp recordings from cortical postnatally-born interneurons at different stages of maturation. We found that the majority of these cells developed into small axonless interneurons, a distinct new subtype of cortical interneurons endowed with unique physiological and morphological properties. These cells got functionally integrated into pre-established neocortical networks. In the light of the role played by postnatal neurogenesis in the olfactory bulb and the dentate gyrus, postnatally-born cortical neurons might contribute to information processing in the cortex. As a parallel project within this research line, we aimed to identify novel factors involved in neuroblast migration. Starting from an messenger ribonucleic acid (mRNA) profile of migrating neuroblasts that was performed in the lab, we selected a group of candidate genes based on their expression levels. With the results from this screen we decided to pursue in vivo experiments for the selected genes. We used retroviral vectors to over-express or knock down the expression levels of the specific sequences in living animals, along with time-lapse imaging. We found that a highly expressed sequence in the RMS that encoded for the gene known as diazepam binding inhibitor (DBI) affected neuroblast migration. The mechanism of action of this novel role for DBI was currently under investigation by the time of elaboration of this final report.
Data: CORDIS, © European Union
Project objective
The sub-ventricular zone (SVZ) of the lateral ventricles is a source of new neurons throughout postnatal development into adulthood. These young neurons migrate through the rostral migratory stream (RMS) to reach the olfactory bulb, where they mature into gamma-aminobutyric acid-producing (GABAergic) interneurons. Recently, experiments from H. Monyer's lab have shown that in addition to the RMS, newly born neurons from the SVZ can also migrate in two other streams termed dorsal migratory stream (DMS) and external migratory stream (EMS), leading to the integration of GABAergic interneurons into other brain areas such as cortex, hippocampus striatum and amygdala. Neuroblasts within these migratory streams are serotonin receptor (5-HT)3A-expressing cells and activation of these receptors is essential for their migration.So far, little is known about which factors determine migration in the RMS, DMS and EMS. The main goal of this project is to gain insight into the processes of newborn cell migration and maturation in the distinct streams as well as the identification of factors that influence their integration in an already existing microcircuit. We will analyse whether molecules known to be involved in the RMS migration and guidance could also be acting within t he dorsal and external migration streams. In addition, we will analyse the functional significance of postnatal neurogenesis originating in the SVZ at the network level by selective elimination of the 5HT3A expressing cell population.The project proposed here consists on an integrative research from molecular to behavioural analysis of neuronal migration in the adult mammalian brain. I will take advantage of my formation on molecular and cellular neurobiology but I will also have the possibility of learning other methodologies such as virally mediated gene expression in neurons and time-lapse imaging recording with expert investigators in the field, which represents a great opportunity for my career.
Original text from CORDIS.
Participants
- Max-Planck-Gesellschaft zur Förderung der Wissenschaften eV · MÜNCHENCoordinatorGermany
Links
Data: CORDIS, © European Union
