UNC Neuroscience Center and the Department of Cell and Molecular Physiology, The University of North Carolina School of Medicine, Chapel Hill, NC 27599, USA.
Development. 2010 Dec;137(23):4101-10. doi: 10.1242/dev.048637.
Polarized radial glia are crucial to the formation of the cerebral cortex. They serve as neural progenitors and as guides for neuronal placement in the developing cerebral cortex. The maintenance of polarized morphology is essential for radial glial functions, but the extent to which the polarized radial glial scaffold is static or dynamic during corticogenesis remains an open question. The developmental dynamics of radial glial morphology, inter-radial glial interactions during corticogenesis, and the role of the cell polarity complexes in these activities remain undefined. Here, using real-time imaging of cohorts of mouse radial glia cells, we show that the radial glial scaffold, upon which the cortex is constructed, is highly dynamic. Radial glial cells within the scaffold constantly interact with one another. These interactions are mediated by growth cone-like endfeet and filopodia-like protrusions. Polarized expression of the cell polarity regulator Cdc42 in radial glia regulates glial endfeet activities and inter-radial glial interactions. Furthermore, appropriate regulation of Gsk3 activity is required to maintain the overall polarity of the radial glia scaffold. These findings reveal dynamism and interactions among radial glia that appear to be crucial contributors to the formation of the cerebral cortex. Related cell polarity determinants (Cdc42, Gsk3) differentially influence radial glial activities within the evolving radial glia scaffold to coordinate the formation of cerebral cortex.
极化的放射状胶质细胞对于大脑皮层的形成至关重要。它们作为神经祖细胞,并在大脑皮层的发育过程中作为神经元放置的指导。维持极化形态对于放射状胶质细胞的功能至关重要,但在皮质发生过程中,极化的放射状胶质支架是静态的还是动态的,仍然是一个悬而未决的问题。放射状胶质形态的发育动力学、皮质发生过程中的放射状胶质间相互作用,以及细胞极性复合物在这些活动中的作用尚不清楚。在这里,我们使用实时成像的小鼠放射状胶质细胞群体,表明构建皮层的放射状胶质支架具有高度动态性。支架内的放射状胶质细胞不断相互作用。这些相互作用是由生长锥样足和丝状伪足样突起介导的。细胞极性调节剂 Cdc42 在放射状胶质细胞中的极化表达调节神经胶质足的活动和放射状胶质间的相互作用。此外,适当调节 Gsk3 活性对于维持放射状胶质支架的整体极性是必需的。这些发现揭示了放射状胶质细胞之间的动态性和相互作用,这些作用似乎是大脑皮层形成的关键贡献者。相关的细胞极性决定因素(Cdc42、Gsk3)以不同的方式影响不断进化的放射状胶质支架内的放射状胶质活性,以协调大脑皮层的形成。