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N-cadherin regulates spatially polarized signals through distinct p120ctn and ?-catenin-dependent signalling pathways.


ABSTRACT: The spatial distribution of molecular signals within cells is crucial for cellular functions. Here, as a model to study the polarized spatial distribution of molecular activities, we used cells on micropatterned strips of fibronectin with one end free and the other end contacting a neighbouring cell. Phosphoinositide 3-kinase and the small GTPase Rac display greater activity at the free end, whereas myosin II light chain and actin filaments are enriched near the intercellular junction. Phosphoinositide 3-kinase and Rac polarization depend specifically on the N-cadherin-p120 catenin complex, whereas myosin II light chain and actin filament polarization depend on the N-cadherin-?-catenin complex. Integrins promote high phosphoinositide 3-kinase/Rac activities at the free end, and the N-cadherin-p120 catenin complex excludes integrin ?5 at the junctions to suppress local phosphoinositide 3-kinase and Rac activity. We hence conclude that N-cadherin couples with distinct effectors to polarize phosphoinositide 3-kinase/Rac and myosin II light chain/actin filaments in migrating cells.

SUBMITTER: Ouyang M 

PROVIDER: S-EPMC3602931 | biostudies-literature | 2013

REPOSITORIES: biostudies-literature

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N-cadherin regulates spatially polarized signals through distinct p120ctn and β-catenin-dependent signalling pathways.

Ouyang Mingxing M   Lu Shaoying S   Kim Taejin T   Chen Chin-En CE   Seong Jihye J   Leckband Deborah E DE   Wang Fei F   Reynolds Albert B AB   Schwartz Martin A MA   Wang Yingxiao Y  

Nature communications 20130101


The spatial distribution of molecular signals within cells is crucial for cellular functions. Here, as a model to study the polarized spatial distribution of molecular activities, we used cells on micropatterned strips of fibronectin with one end free and the other end contacting a neighbouring cell. Phosphoinositide 3-kinase and the small GTPase Rac display greater activity at the free end, whereas myosin II light chain and actin filaments are enriched near the intercellular junction. Phosphoin  ...[more]

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