Nox1-based NADPH oxidase regulates the Par protein complex activity to control cell polarization
Abstract
Cell migration is essential for many biological and pathological processes. Establishing cell polarity with a trailing edge and forming a single lamellipodium at the leading edge of the cell is crucial for efficient directional cell migration and is a hallmark of mesenchymal cell motility. Lamellipodia formation is regulated by spatial-temporal activation of the small GTPases Rac and Cdc42 at the front edge, and RhoA at the rear end. At a molecular level, partitioning-defective (Par) protein complex comprising Par3, Par6, and atypical Protein Kinase (aPKC isoforms ? and ?/?) regulates front-rear axis polarization. At the front edge, integrin clustering activates Cdc42, prompting the formation of Par3/Par6/aPKC complexes to modulate MTOC positioning and microtubule stabilization. Consequently, the Par3/Par6/aPKC complex recruits Rac1-GEF Tiam to activate Rac1, leading to lamellipodium formation. At the rear end, RhoA-ROCK phosphorylates Par3 disrupting its interaction with Tiam and inactivating Rac1. RhoA activity at the rear end allows the formation of focal adhesions and stress fibers necessary to generate the traction forces that allow cell movement. Nox1-based NADPH oxidase is necessary for PDGF-induced migration in vitro and in vivo for many cell types, including fibroblasts and smooth muscle cells. Here, we report that Nox1-deficient cells failed to acquire a normal front-to-rear polarity, polarize MTOC, and form a single lamellipodium. Instead, these cells form multiple protrusions that accumulate Par3 and active Tiam. The exogenous addition of H
Más información
| Título según WOS: | Nox1-based NADPH oxidase regulates the Par protein complex activity to control cell polarization |
| Título según SCOPUS: | Nox1-based NADPH oxidase regulates the Par protein complex activity to control cell polarization |
| Título de la Revista: | Frontiers in Cell and Developmental Biology |
| Volumen: | 11 |
| Editorial: | FRONTIERS MEDIA SA |
| Fecha de publicación: | 2023 |
| Idioma: | English |
| DOI: |
10.3389/fcell.2023.1231489 |
| Notas: | ISI, SCOPUS |