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Telophase correction refines division orientation in stratified epithelia.

eLife (2019-12-14)
Kendall J Lough, Kevin M Byrd, Carlos P Descovich, Danielle C Spitzer, Abby J Bergman, Gerard Mj Beaudoin, Louis F Reichardt, Scott E Williams
ZUSAMMENFASSUNG

During organogenesis, precise control of spindle orientation balances proliferation and differentiation. In the developing murine epidermis, planar and perpendicular divisions yield symmetric and asymmetric fate outcomes, respectively. Classically, division axis specification involves centrosome migration and spindle rotation, events occurring early in mitosis. Here, we identify a novel orientation mechanism which corrects erroneous anaphase orientations during telophase. The directionality of reorientation correlates with the maintenance or loss of basal contact by the apical daughter. While the scaffolding protein LGN is known to determine initial spindle positioning, we show that LGN also functions during telophase to reorient oblique divisions toward perpendicular. The fidelity of telophase correction also relies on the tension-sensitive adherens junction proteins vinculin, α-E-catenin, and afadin. Failure of this corrective mechanism impacts tissue architecture, as persistent oblique divisions induce precocious, sustained differentiation. The division orientation plasticity provided by telophase correction may enable progenitors to adapt to local tissue needs.

MATERIALIEN
Produktnummer
Marke
Produktbeschreibung

Sigma-Aldrich
Monoklonaler Anti-Vinculin-Antikörper in Maus hergestellte Antikörper, clone hVIN-1, ascites fluid
Millipore
Bilirubin, Principal pigment of bile and one of the major end products of hemoglobin decomposition.
Sigma-Aldrich
Anti-PARD3-Antikörper, Upstate®, from rabbit
Sigma-Aldrich
Anti-l/s-Afadin antibody produced in rabbit, affinity isolated antibody
Sigma-Aldrich
Anti-LGN Antibody, serum, from rabbit