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Ninjurin1 Enhances the Basal Motility and Transendothelial Migration of Immune Cells by Inducing Protrusive Membrane Dynamics
Authors:Bum Ju Ahn  Hoang Le  Min Wook Shin  Sung-Jin Bae  Eun Ji Lee  Sung Yi Lee  Ju Hee Yang  Hee-Jun Wee  Jong-Ho Cha  Ji Hae Seo  Hye Shin Lee  Hyo-Jong Lee  Ken Arai  Eng H Lo  Sejin Jeon  Goo Taeg Oh  Woo Jean Kim  Ji-Kan Ryu  Jun-Kyu Suh  Kyu-Won Kim
Abstract:Ninjurin1 is involved in the pathogenesis of experimental autoimmune encephalomyelitis, an animal model of multiple sclerosis, by mediating leukocyte extravasation, a process that depends on homotypic binding. However, the precise regulatory mechanisms of Ninjurin1 during inflammation are largely undefined. We therefore examined the pro-migratory function of Ninjurin1 and its regulatory mechanisms in macrophages. Interestingly, Ninjurin1-deficient bone marrow-derived macrophages exhibited reduced membrane protrusion formation and dynamics, resulting in the impairment of cell motility. Furthermore, exogenous Ninjurin1 was distributed at the membrane of filopodial structures in Raw264.7 macrophage cells. In Raw264.7 cells, RNA interference of Ninjurin1 reduced the number of filopodial projections, whereas overexpression of Ninjurin1 facilitated their formation and thus promoted cell motility. Ninjurin1-induced filopodial protrusion formation required the activation of Rac1. In Raw264.7 cells penetrating an MBEC4 endothelial cell monolayer, Ninjurin1 was localized to the membrane of protrusions and promoted their formation, suggesting that Ninjurin1-induced protrusive activity contributed to transendothelial migration. Taking these data together, we conclude that Ninjurin1 enhances macrophage motility and consequent extravasation of immune cells through the regulation of protrusive membrane dynamics. We expect these findings to provide insight into the understanding of immune responses mediated by Ninjurin1.
Keywords:Cell Migration  Cell Motility  Inflammation  Macrophage  Ras-related C3 Botulinum Toxin Substrate 1 (Rac1)  Filopodia  Ninjurin1  Transendothelial Migration
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