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1 March 2005 Inhibition of the Beta-Catenin Signaling Pathway in Blastocyst and Uterus During the Window of Implantation in Mice
Jing Li, Jian V. Zhang, Yu-Jing Cao, Jia-Xi Zhou, Wei-Min Liu, Xiu-Jun Fan, En-Kui Duan
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Abstract

Beta-catenin, the mammalian homolog of Drosophila armadillo protein, was first identified as a cadherin-associated protein at cell-cell junctions. Another function of beta-catenin is the transduction of cytosolic signals to the nucleus in a variety of cellular contexts, which usually are elicited by the active form of beta-catenin. The aim of the present study was to examine the potential role of active beta-catenin in the mouse embryo and uterus during embryo implantation. Active beta-catenin was detected differentially in mouse embryos and uteri during the peri-implantation period. Aberrant activation of beta-catenin by LiCl, a well-known glycogen synthase kinase-3 inhibitor, significantly inhibited blastocyst hatching and subsequent adhesion and outgrowth on fibronectin. Results obtained from pseudopregnant and implantation-delayed mice imply an important role for implanting blastocysts in the temporal and spatial changes of active beta-catenin in the uterus during the window of implantation. Collectively, these results suggest that the beta-catenin signaling pathway is inhibited in both blastocyst and uterus during the window of implantation, which may represent a new mechanism to synchronize the development of preimplantation embryos and differentiation of the uterus during this process.

Jing Li, Jian V. Zhang, Yu-Jing Cao, Jia-Xi Zhou, Wei-Min Liu, Xiu-Jun Fan, and En-Kui Duan "Inhibition of the Beta-Catenin Signaling Pathway in Blastocyst and Uterus During the Window of Implantation in Mice," Biology of Reproduction 72(3), 700-706, (1 March 2005). https://doi.org/10.1095/biolreprod.104.033837
Received: 29 June 2004; Accepted: 1 October 2004; Published: 1 March 2005
KEYWORDS
embryo
implantation
pregnancy
signal transduction
steroid hormones
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