β-catenin is a central component of adherent junctions and a key effector of canonical Wnt signaling, in which dephosphorylated Ser/Thr β-catenin regulates gene transcription. β-catenin phosphorylation at Tyr142 (PTyr142 β-catenin), which is induced by receptor and Src family Tyr kinases, represents a previously described β-catenin switch from adhesive to migratory roles. In addition to classical β-catenin roles, phosphorylated Ser/Thr β-catenin and total β-catenin were involved in centrosomal functions, including mitotic spindle formation and centrosome separation. Here we find that PTyr142 β-catenin is present in centrosomes in non-transformed and glioblastoma cells and that, in contrast to the Ser/Thr phosphorylated β-catenin, PTyr142 β-catenin centrosomal levels drop in mitosis. Furthermore, we show that the inhibitor of Spleen Tyrosine Kinase (Syk) piceatannol decreases centrosomal PTyr142 β-catenin levels, indicating that Syk regulates centrosome PTyr142 β-catenin. Our findings suggest that PTyr142 β-catenin and Syk may regulate centrosomal cohesion. This study highlights the contribution of different phosphorylated β-catenin forms to the cell and centrosome cycles.

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http://dx.doi.org/10.1002/jcb.26571DOI Listing

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Article Synopsis
  • Histone H2AX has a phosphorylation switch crucial for the DNA damage response, transitioning from pTyr142 to pSer139, with its specific functions still being studied.
  • Research indicates that the constantly present H2AX-pY142, influenced by the WSTF protein, interacts with RNA polymerase II, promoting active transcription in cells that are dividing.
  • The removal of H2AX-pY142 by certain phosphatases halts this interaction, causing transcriptional silencing at damaged DNA sites, while its reintroduction helps facilitate a specific type of DNA repair using active RNA transcripts as templates, thereby supporting genome stability.
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β-catenin is a central component of adherent junctions and a key effector of canonical Wnt signaling, in which dephosphorylated Ser/Thr β-catenin regulates gene transcription. β-catenin phosphorylation at Tyr142 (PTyr142 β-catenin), which is induced by receptor and Src family Tyr kinases, represents a previously described β-catenin switch from adhesive to migratory roles. In addition to classical β-catenin roles, phosphorylated Ser/Thr β-catenin and total β-catenin were involved in centrosomal functions, including mitotic spindle formation and centrosome separation.

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BAZ1B is dispensable for H2AX phosphorylation on Tyrosine 142 during spermatogenesis.

Biol Open

May 2015

Division of Reproductive Sciences, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229, USA Division of Developmental Biology, Perinatal Institute, Cincinnati Children's Hospital Medical Center, Cincinnati, OH 45229, USA Department of Pediatrics, University of Cincinnati College of Medicine, Cincinnati, OH 45267, USA

Meiosis is precisely regulated by the factors involved in DNA damage response in somatic cells. Among them, phosphorylation of H2AX on Serine 139 (γH2AX) is an essential signal for the silencing of unsynapsed sex chromosomes during male meiosis. However, it remains unknown how adjacent H2AX phosphorylation on Tyrosine 142 (pTyr142) is regulated in meiosis.

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Tyr142, the C-terminal amino acid of histone variant H2A.X is phosphorylated by WSTF (Williams-Beuren syndrome transcription factor), a component of the WICH complex (WSTF-ISWI chromatin-remodeling complex), under basal conditions in the cell. In response to DNA double-strand breaks (DSBs), H2A.

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