β‐catenin at the centrosome: discrete pools of β‐catenin communicate during mitosis and may co‐ordinate centrosome functions and cell cycle progression

BC Mbom, WJ Nelson, A Barth - Bioessays, 2013 - Wiley Online Library
BC Mbom, WJ Nelson, A Barth
Bioessays, 2013Wiley Online Library
Beta‐catenin is a multifunctional protein with critical roles in cell‐cell adhesion, Wnt‐
signaling and the centrosome cycle. Whereas the roles of β‐catenin in cell‐cell adhesion
and Wnt‐signaling have been studied extensively, the mechanism (s) involving β‐catenin in
centrosome functions are poorly understood. β‐Catenin localizes to centrosomes and
promotes mitotic progression. NIMA‐related protein kinase 2 (Nek2), which stimulates
centrosome separation, binds to and phosphorylates β‐catenin. β‐Catenin interacting …
Beta‐catenin is a multifunctional protein with critical roles in cell‐cell adhesion, Wnt‐signaling and the centrosome cycle. Whereas the roles of β‐catenin in cell‐cell adhesion and Wnt‐signaling have been studied extensively, the mechanism(s) involving β‐catenin in centrosome functions are poorly understood. β‐Catenin localizes to centrosomes and promotes mitotic progression. NIMA‐related protein kinase 2 (Nek2), which stimulates centrosome separation, binds to and phosphorylates β‐catenin. β‐Catenin interacting proteins involved in Wnt signaling such as adenomatous polyposis coli, Axin, and GSK3β, are also localized at centrosomes and play roles in promoting mitotic progression. Additionally, proteins associated with cell‐cell adhesion sites, such as dynein, regulate mitotic spindle positioning. These roles of proteins at the cell cortex and Wnt signaling that involve β‐catenin indicate a cross‐talk between different sub‐cellular sites in the cell at mitosis, and that different pools of β‐catenin may co‐ordinate centrosome functions and cell cycle progression.
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