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A lateral belt of cortical LGN and NuMA guides mitotic spindle movements and planar division in neuroepithelial cells
Authors:Peyre Elise  Jaouen Florence  Saadaoui Mehdi  Haren Laurence  Merdes Andreas  Durbec Pascale  Morin Xavier
Affiliation:1Université de la Méditerranée/Aix-Marseille II, Developmental Biology Institute (IBDML), Centre National de la Recherche Scientifique UMR6216, Case 907, Campus de Luminy, 13288 Marseille, France;2CNRS-Pierre Fabre, 31400 Toulouse, France;3Ecole Normale Supérieure, Institut de Biologie de l’ENS, IBENS, Paris, Inserm U1024, Paris, F-75005 France
Abstract:To maintain tissue architecture, epithelial cells divide in a planar fashion, perpendicular to their main polarity axis. As the centrosome resumes an apical localization in interphase, planar spindle orientation is reset at each cell cycle. We used three-dimensional live imaging of GFP-labeled centrosomes to investigate the dynamics of spindle orientation in chick neuroepithelial cells. The mitotic spindle displays stereotypic movements during metaphase, with an active phase of planar orientation and a subsequent phase of planar maintenance before anaphase. We describe the localization of the NuMA and LGN proteins in a belt at the lateral cell cortex during spindle orientation. Finally, we show that the complex formed of LGN, NuMA, and of cortically located Gαi subunits is necessary for spindle movements and regulates the dynamics of spindle orientation. The restricted localization of LGN and NuMA in the lateral belt is instructive for the planar alignment of the mitotic spindle, and required for its planar maintenance.
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