Remodeling Epithelial Cell Organization: Transitions Between Front-Rear and Apical-Basal Polarity

Ремоделирование организации эпителиальных клеток: переходы между переднезадней и апикобазальной полярностью
W. James Nelson
2009-07-01

Rho family GTPasesapical-basal polarityepithelial cell organizationfront-rear polaritypolarity complexes
Polarized epithelial cells have a distinctive apical-basal axis of polarity for vectorial transport of ions and solutes across the epithelium. In contrast, migratory mesenchymal cells have a front-rear axis of polarity. During development, mesenchymal cells convert to epithelia by coalescing into aggregates that undergo epithelial differentiation. Signaling networks and protein complexes comprising Rho family GTPases, polarity complexes (Crumbs, PAR, and Scribble), and their downstream effectors, including the cytoskeleton and the endocytic and exocytic vesicle trafficking pathways, together regulate the distributions of plasma membrane and cytoskeletal proteins between front-rear and apical-basal polarity. The challenge is to understand how these regulators and effectors are adapted to regulate symmetry breaking processes that generate cell polarities that are specialized for different cellular activities and functions.
1
A central unresolved challenge is explaining how shared regulators generate distinct symmetry-breaking programs specialized for migration versus epithelial transport and organization.
2
During development, mesenchymal cells transition into epithelia by aggregating and undergoing epithelial differentiation.
3
Epithelial cells use an apical-basal polarity axis for vectorial ion and solute transport, whereas migratory mesenchymal cells use a front-rear polarity axis.
4
Rho GTPases, Crumbs, PAR, and Scribble polarity complexes coordinate cytoskeletal organization and endocytic/exocytic trafficking during polarity remodeling.
5
These regulatory networks redistribute plasma-membrane and cytoskeletal proteins to establish either front-rear or apical-basal polarity.

epithelial and migratory mesenchymal cells undergoing transitions between front-rear and apical-basal polarity

the signaling networks, polarity complexes, cytoskeletal systems, and vesicle-trafficking pathways that regulate symmetry breaking and the redistribution of plasma-membrane and cytoskeletal proteins during polarity transitions

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2009-07-01
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W. James Nelson
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