MicroRNA-338 modulates cortical neuronal placement and polarity

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Abstract

The precise spatial and temporal regulation of gene expression orchestrates the many intricate processes during brain development. In the present study we examined the role of the brain-enriched microRNA-338 (miR-338) during mouse cortical development. Reduction of miR-338 levels in the developing mouse cortex, using a sequence-specific miR-sponge, resulted in a loss of neuronal polarity in the cortical plate and significantly reduced the number of neurons within this cortical layer. Conversely, miR-338 overexpression in developing mouse cortex increased the number of neurons, which exhibited a multipolar morphology. All together, our results raise the possibility for a direct role for this non-coding RNA, which was recently associated with schizophrenia, in the regulation of cortical neuronal polarity and layer placement.

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Kos, A., de Mooij-Malsen, A. J., van Bokhoven, H., Kaplan, B. B., Martens, G. J., Kolk, S. M., & Aschrafi, A. (2017). MicroRNA-338 modulates cortical neuronal placement and polarity. RNA Biology, 14(7), 905–913. https://doi.org/10.1080/15476286.2017.1325067

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