Myosin X interaction with KIF13B, a crucial pathway for Netrin-1-Induced axonal development

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Abstract

Myosin X (Myo X) transports cargos to the tips of filopodia for cell adhesion, migration, and neuronal axon guidance. Deleted in Colorectal Cancer (DCC) is one of the Myo X cargos that is essential for Netrin-1-regulated axon pathfinding. The function of Myo X in axon development in vivo and the underlying mechanisms remain elusive. Here, we provide evidence for the role of Myo X in Netrin-1-DCC-regulated axon development in developing mouse neocortex. The knockout (KO) or knockdown (KD) of Myo X in cortical neurons of embryonic mouse brain impairs axon initiation and contralateral branching/targeting. Similar axon deficits are detected in Netrin-1-KO or DCC-KD cortical neurons. Further proteomic analysis of Myo X binding proteins identifies KIF13B (a kinesin family motor protein). The Myo X interaction with KIF13B is induced by Netrin-1. Netrin-1 promotes anterograde transportation of Myo X into axons in a KIF13B-dependent manner. KIF13B-KD cortical neurons exhibit similar axon deficits. Together, these results reveal Myo X-KIF13B as a critical pathway for Netrin-1promoted axon initiation and branching/targeting.

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Yu, H. L., Peng, Y., Zhao, Y., Lan, Y. S., Wang, B., Zhao, L., … Xiong, W. C. (2020). Myosin X interaction with KIF13B, a crucial pathway for Netrin-1-Induced axonal development. Journal of Neuroscience, 40(48), 9169–9185. https://doi.org/10.1523/JNEUROSCI.0929-20.2020

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