4.5 Article

Cell-cycle-dependent TGFβ-BMP antagonism regulates neural tube closure by modulating tight junctions

Journal

JOURNAL OF CELL SCIENCE
Volume 130, Issue 1, Pages 119-131

Publisher

COMPANY OF BIOLOGISTS LTD
DOI: 10.1242/jcs.179192

Keywords

Apicobasal polarity; Hinge point; LGL; Midbrain; Neural tube closure defects; Organogenesis; PAR3

Categories

Funding

  1. National Institutes of Health (NIH) (National Institute of Neurological Disorders and Stroke) [R01 NS049091]

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Many organs form by invaginating and rolling flat epithelial cell sheets into tubes. Invagination of the ventral midline of the neural plate forms the median hinge point (MHP), an event that elevates the neural folds and is essential for neural tube closure (NTC). MHP formation involves dynamic spatiotemporal modulations of cell shape, but how these are achieved is not understood. Here, we show that cell-cycle-dependent BMP and TGF beta antagonism elicits MHP formation by dynamically regulating interactions between apical (PAR complex) and basolateral (LGL) polarity proteins. TGF beta and BMP-activated receptor (r)-SMADs [phosphorylated SMAD2 or SMAD3 (pSMAD2,3), or phosphorylated SMAD1, SMAD5 or SMAD8 (pSMAD1,5,8)] undergo cell-cycle-dependent modulations and nucleo-cytosolic shuttling along the apicobasal axis of the neural plate. Non-canonical TGF beta and BMP activity in the cytosol determines whether pSMAD2,3 or pSMAD1,5,8 associates with the tight junction (PAR complex) or with LGL, and whether cell shape changes can occur at the MHP. Thus, the interactions of BMP and TGF beta with polarity proteins dynamically modulate MHP formation by regulating r-SMAD competition for tight junctions and r-SMAD sequestration by LGL.

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