Cortical Divergent Projections in Mice Originate from Two Sequentially Generated, Distinct Populations of Excitatory Cortical Neurons with Different Initial Axonal Outgrowth Characteristics

Дивергентные корковые проекции у мышей происходят из двух последовательно порождаемых, различных популяций возбуждающих корковых нейронов с различными начальными характеристиками отростков аксона
Yasuo Kawaguchi, Kenta Yamauchi, Yumiko Hatanaka, Tomohiro Namikawa
2015-04-16

Ctip2 and Satb2 expressionaxonal outgrowth in intermediate zoneearly-born lateral projection neuronslater-born medial (callosal) projection neuronssparse-labeling in utero electroporation
Excitatory cortical neurons project to various subcortical and intracortical regions, and exhibit diversity in their axonal connections. Although this diversity may develop from primary axons, how many types of axons initially occur remains unknown. Using a sparse-labeling in utero electroporation method, we investigated the axonal outgrowth of these neurons in mice and correlated the data with axonal projections in adults. Examination of lateral cortex neurons labeled during the main period of cortical neurogenesis (E11.5-E15.5) indicated that axonal outgrowth commonly occurs in the intermediate zone. Conversely, the axonal direction varied; neurons labeled before E12.5 and the earliest cortical plate neurons labeled at E12.5 projected laterally, whereas neurons labeled thereafter projected medially. The expression of Ctip2 and Satb2 and the layer destinations of these neurons support the view that lateral and medial projection neurons are groups of prospective subcortical and callosal projection neurons, respectively. Consistently, birthdating experiments demonstrated that presumptive lateral projection neurons were generated earlier than medial projection neurons, even within the same layer. These results suggest that the divergent axonal connections of excitatory cortical neurons begin from two types of primary axons, which originate from two sequentially generated distinct subpopulations: early-born lateral (subcortical) and later-born medial (callosal) projection neuron groups.
1
Axonal outgrowth of excitatory cortical neurons commonly initiates in the intermediate zone during E11.5–E15.5 in mice.
2
Birthdating shows lateral (subcortical) projection neurons are generated earlier than medial (callosal) projection neurons, even within the same cortical layer.
3
Divergent adult axonal connections arise from two types of primary axons produced by two sequentially generated, distinct excitatory neuron subpopulations: early-born lateral and later-born medial projection groups.
4
Lateral-projecting neurons express markers and layer destinations consistent with prospective subcortical (Ctip2-positive) projection neurons; medial-projecting neurons align with prospective callosal (Satb2-positive) projection neurons.
5
Neurons labeled before E12.5 and earliest E12.5 cortical plate neurons extend axons laterally, while neurons labeled after E12.5 extend axons medially.

Excitatory cortical neurons in mouse lateral cortex (two sequentially generated subpopulations: early-born lateral and later-born medial projection neurons)

Initial axonal outgrowth characteristics and resulting divergent projection patterns (lateral/subcortical versus medial/callosal) of the two sequentially generated excitatory neuron subpopulations

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2015-04-16
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Yasuo Kawaguchi
Kenta Yamauchi
Yumiko Hatanaka
Tomohiro Namikawa
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