Asymmetric localization of DLC1 defines avian trunk neural crest polarity for directional delamination and migration

DLC1 的不对称定位决定了鸟类躯干神经嵴的极性,从而实现定向分层和迁移

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作者:Jessica Aijia Liu, Yanxia Rao, May Pui Lai Cheung, Man-Ning Hui, Ming-Hoi Wu, Lo-Kong Chan, Irene Oi-Lin Ng, Ben Niu, Kathryn S E Cheah, Rakesh Sharma, Louis Hodgson, Martin Cheung

Abstract

Following epithelial-mesenchymal transition, acquisition of avian trunk neural crest cell (NCC) polarity is prerequisite for directional delamination and migration, which in turn is essential for peripheral nervous system development. However, how this cell polarization is established and regulated remains unknown. Here we demonstrate that, using the RHOA biosensor in vivo and in vitro, the initiation of NCC polarization is accompanied by highly activated RHOA in the cytoplasm at the cell rear and its fluctuating activity at the front edge. This differential RHOA activity determines polarized NC morphology and motility, and is regulated by the asymmetrically localized RhoGAP Deleted in liver cancer (DLC1) in the cytoplasm at the cell front. Importantly, the association of DLC1 with NEDD9 is crucial for its asymmetric localization and differential RHOA activity. Moreover, NC specifiers, SOX9 and SOX10, regulate NEDD9 and DLC1 expression, respectively. These results present a SOX9/SOX10-NEDD9/DLC1-RHOA regulatory axis to govern NCC migratory polarization.

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