Wnt signaling drives WRM-1/β-catenin asymmetries in early C. elegans embryos

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Abstract

β-Catenin regulates cell adhesion and cellular differentiation during development, and misregulation of β-catenin contributes to numerous forms of cancer in humans. Here we describe Caenorhabditis elegans conditional alleles of mom-2/Wnt, mom-4/Tak1, and wrm-1/β-catenin. We use these reagents to examine the regulation of WRM-1/β-catenin during a Wnt-signaling-induced asymmetric cell division. While WRM-1 protein initially accumulates in the nuclei of all cells, signaling promotes the retention of WRM-1 in nuclei of responding cells. We show that both PRY-1/Axin and the nuclear exportin homolog IMB-4/CRM-1 antagonize signaling. These findings reveal how Wnt signals direct the asymmetric localization of β-catenin during polarized cell division. © 2005 by Cold Spring Harbor Laboratory Press.

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Nakamura, K., Kim, S., Ishidate, T., Bei, Y., Pang, K., Shirayama, M., … Mello, C. C. (2005). Wnt signaling drives WRM-1/β-catenin asymmetries in early C. elegans embryos. Genes and Development, 19(15), 1749–1754. https://doi.org/10.1101/gad.1323705

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