Clonal Production and Organization of Inhibitory Interneurons in the Neocortex
Keith N. Brown, She Chen, Zhi Han, Lu Chunhui, Xin Tan, Xin‐Jun Zhang, Liya Ding, Alejandro López-Cruz, Dieter Saur, Stewart A. Anderson, Kun Huang, Song‐Hai Shi
Abstract
Keith N. Brown, She Chen, Zhi Han, Lu Chunhui, Xin Tan, Xin‐Jun Zhang, Liya Ding, Alejandro López-Cruz, Dieter Saur, Stewart A. Anderson, Kun Huang, Song‐Hai Shi
Abstract
The neocortex contains excitatory neurons and inhibitory interneurons. Clones of neocortical excitatory neurons originating from the same progenitor cell are spatially organized and contribute to the formation of functional microcircuits. In contrast, relatively little is known about the production and organization of neocortical inhibitory interneurons. We found that neocortical inhibitory interneurons were produced as spatially organized clonal units in the developing ventral telencephalon. Furthermore, clonally related interneurons did not randomly disperse but formed spatially isolated clusters in the neocortex. Individual clonal clusters consisting of interneurons expressing the same or distinct neurochemical markers exhibited clear vertical or horizontal organization. These results suggest that the lineage relationship plays a pivotal role in the organization of inhibitory interneurons in the neocortex.
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The neocortex contains excitatory neurons and inhibitory interneurons. Clones of neocortical excitatory neurons originating from the same progenitor cell are spatially organized and contribute to the formation of functional microcircuits. In contrast, relatively little is known about the production and organization of neocortical inhibitory interneurons. We found that neocortical inhibitory interneurons were produced as spatially organized clonal units in the developing ventral telencephalon. Furthermore, clonally related interneurons did not randomly disperse but formed spatially isolated clusters in the neocortex. Individual clonal clusters consisting of interneurons expressing the same or distinct neurochemical markers exhibited clear vertical or horizontal organization. These results suggest that the lineage relationship plays a pivotal role in the organization of inhibitory interneurons in the neocortex.
Key concepts: Neocortex, Inhibitory postsynaptic potential, Excitatory postsynaptic potential, Neuroscience, Biology, Interneuron, Cerebrum, Progenitor