Human-specific <i>ARHGAP11B</i> induces hallmarks of neocortical expansion in developing ferret neocortex.

Kalebic, Nereo; Gilardi, Carlotta; Albert, Mareike; Namba, Takashi; Long, Katherine R; Kostic, Milos; Langen, Barbara; Huttner, Wieland B · Elife · 2018

basic_science · Level V

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Abstract

The evolutionary increase in size and complexity of the primate neocortex is thought to underlie the higher cognitive abilities of humans. <i>ARHGAP11B</i> is a human-specific gene that, based on its expression pattern in fetal human neocortex and progenitor effects in embryonic mouse neocortex, has been proposed to have a key function in the evolutionary expansion of the neocortex. Here, we study the effects of <i>ARHGAP11B</i> expression in the developing neocortex of the gyrencephalic ferret. In contrast to its effects in mouse, <i>ARHGAP11B</i> markedly increases proliferative basal radial glia, a progenitor cell type thought to be instrumental for neocortical expansion, and results in extension of the neurogenic period and an increase in upper-layer neurons. Consequently, the postnatal ferret neocortex exhibits increased neuron density in the upper cortical layers and expands in both the radial and tangential dimensions. Thus, human-specific <i>ARHGAP11B</i> can elicit hallmarks of neocortical expansion in the developing ferret neocortex.

Medical subject headings