Molecular Pathways Underlying Projection Neuron Production and Migration during Cerebral Cortical Development
نویسندگان
چکیده
Glutamatergic neurons of the mammalian cerebral cortex originate from radial glia (RG) progenitors in the ventricular zone (VZ). During corticogenesis, neuroblasts migrate toward the pial surface using two different migration modes. One is multipolar (MP) migration with random directional movement, and the other is locomotion, which is a unidirectional movement guided by the RG fiber. After reaching their final destination, the neurons finalize their migration by terminal translocation, which is followed by maturation via dendrite extension to initiate synaptogenesis and thereby complete neural circuit formation. This switching of migration modes during cortical development is unique in mammals, which suggests that the RG-guided locomotion mode may contribute to the evolution of the mammalian neocortical 6-layer structure. Many factors have been reported to be involved in the regulation of this radial neuronal migration process. In general, the radial migration can be largely divided into four steps; (1) maintenance and departure from the VZ of neural progenitor cells, (2) MP migration and transition to bipolar cells, (3) RG-guided locomotion, and (4) terminal translocation and dendrite maturation. Among these, many different gene mutations or knockdown effects have resulted in failure of the MP to bipolar transition (step 2), suggesting that it is a critical step, particularly in radial migration. Moreover, this transition occurs at the subplate layer. In this review, we summarize recent advances in our understanding of the molecular mechanisms underlying each of these steps. Finally, we discuss the evolutionary aspects of neuronal migration in corticogenesis.
منابع مشابه
Corrigendum: Molecular Pathways Underlying Projection Neuron Production and Migration during Cerebral Cortical Development
[This corrects the article on p. 447 in vol. 9, PMID: 26733777.].
متن کاملFunction and regulation of Rnd proteins in cortical projection neuron migration
The mammalian cerebral cortex contains a high variety of neuronal subtypes that acquire precise spatial locations and form long or short-range connections to establish functional neuronal circuits. During embryonic development, cortical projection neurons are generated in the areas lining the lateral ventricles and they subsequently undergo radial migration to reach the position of their final ...
متن کاملRadial versus tangential migration of neuronal clones in the developing cerebral cortex.
The cerebral cortex is a striking example of an ingenious and economic design of nature. Although the surface area of the neocortex is vastly different in the wide variety ofmammals, the consistent feature of the cortex is its organization into horizontal and vertical arrays of neurons that form anatomically and physiologically distinct laminar and columnar compartments (1, 2). The application ...
متن کاملEna/VASP Is Required for Neuritogenesis in the Developing Cortex
Mammalian cortical development involves neuronal migration and neuritogenesis; this latter process forms the structural precursors to axons and dendrites. Elucidating the pathways that regulate the cytoskeleton to drive these processes is fundamental to our understanding of cortical development. Here we show that loss of all three murine Ena/VASP proteins, a family of actin regulatory proteins,...
متن کاملRegulation of cerebral cortex development by Rho GTPases: insights from in vivo studies
The cerebral cortex is the site of higher human cognitive and motor functions. Histologically, it is organized into six horizontal layers, each containing unique populations of molecularly and functionally distinct excitatory projection neurons and inhibitory interneurons. The stereotyped cellular distribution of cortical neurons is crucial for the formation of functional neural circuits and it...
متن کامل