GABAXONETDEV · mechanisms of GABAergic interneurons axonal branching in developing cerebellum network
7РП — „Хора“ (Действия „Мария Кюри“)
- Период
- 2011-08-01 → 2015-07-31
- Финансиране от ЕС
- 100 000 €
- Участници
- 1
- Схема
- MC-CIG
Линиите свързват координатора с партньорите.
Накратко на български
Механизмите на разклоняване на GABA-ергичните интернеурони в малкия мозък се анализират чрез проследяване на пътищата, по които се движат клетките „кошница“ и „звезда“. Това помага да се разбере как средата и времето влияят върху развитието и функцията на невроните.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
mechanisms of GABAergic interneurons axonal branching in developing cerebellum network
Neuronal diversity relies both on genetic program and local instructive cues. However little is known about how neuron circuit integration timing influence cell-type specific differentiation programs. In cerebellar cortex, molecular layer GABAergic interneuron (MLGI) circuit comprises two subtypes: the Basket and the Stellate cells. They display major morphological differences but present no discriminating genetic marker. It has been proposed that their morphological differences are due to substantially different developmental environments. However, due to persisting lack of evidence to support this view, the question has remained controversial. During this period, we unravel stereotyped migration paths that could elicit the emergence of morphological differences. Our in vivo grafts experiments showed that Basket and Stellate used distinct migratory pathways during neuronal circuit integration. We conducted a series of time-lapse experiments on acute slices and uncovered that a proportion of immature MLGI penetrated the External Granule cell Layer (EGL) where they migrated tangentially during a restricted time period. Using organo-graft experiments, we showed that tangentially migrating MLGI, belong to late integrating stellate cells subpopulation. We showed that the age of progenitors does not influence their migrating capacity; that migration by itself is not sufficient to steer towards a stellate-specific differentiation program when cells differentiated in an immature local environment. Moreover, our data showed that timely controlled environmental changes influence functional maturation within a migrating, genetically homogeneous progenitor cell population. To our knowledge, tangential migration of stellate-cells represents the first indication of an early divergence during basket versus stellate maturation process and put forward the importance of the temporal parameter. We propose here that tangential migration acts as a cell diversity maker by specifically extending the maturation process of Stellate-cells progenitors, thus delaying the onset of differentiation and consequently their local developmental environment maturity. Studies of cell fate specification, laminar deployment, connectivity, and network dynamics provide a probe to understand circuit pathogenesis in models of neuropsychiatric disorders.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
The appropriate wiring of neuronal circuits in mammalian brain forms the basis to generate, integrate, and process patterns of neuronal activity, which underlie perception and cognition.GABAergic inhibitory circuits consist of an array of interneuron cell types with distinct morphology, physiological properties, and synaptic connectivity patterns, and may constitute a scaffold to organize local cortical connectivity and activity.A definite feature of GABAergic innervation is their specific axonal morphology and specific target cell and domain recognition, which allow precise spatial and temporal control of neuronal signaling, dynamics, and plasticity. Dysfunctions of GABAergic system have been implicated in a variety of neurological and psychiatric disorders such as epilepsy, schizophrenia, and depression.Although GABAergic connectivity is essential for the construction of functional cortical circuits, the formation and development of exquisite GABAergic axon branches in general are poorly characterized. The purpose of the current proposal is to follow the early events of interneuron neurites outgrowth and branching and to identify the molecules involved during this process using state of the art technical approches. The ultimate goal is to describe how environmental signals specifically shape and build functional neuronal circuit in relation to their genetic content.While physiologists are very well aware about the importance of GABAergic interneurons circuitry in regulating all the aspects of synaptic communication (i.e. input, integration and output as well as synchronization) of principal neurons, the cellular and molecular mechanism of GABAergic circuitry development remained unknown. This field is a new and almost untouched area that will brings new idea and will link together multiple research domains of neuroscience from Gene expression, cell biology and axon guidance to cell signaling and physiology""
Оригинален текст от CORDIS (на английски).
Участници
- INSTITUT NATIONAL DE LA SANTE ET DE LA RECHERCHE MEDICALE · ParisКоординаторФранция
Връзки
Данни: CORDIS, © Европейски съюз
