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Publication : Characterization of canonical Wnt signalling changes after induced disruption of Müller cell in murine retina.

First Author  Zhu L Year  2018
Journal  Exp Eye Res Volume  175
Pages  173-180 PubMed ID  29913166
Mgi Jnum  J:280459 Mgi Id  MGI:6368285
Doi  10.1016/j.exer.2018.06.016 Citation  Zhu L, et al. (2018) Characterization of canonical Wnt signalling changes after induced disruption of Muller cell in murine retina. Exp Eye Res 175:173-180
abstractText  Muller cells are the primary glia in the retina, playing a critical role in retinal homeostasis and retinal pathology. This study evaluated the canonical Wnt signalling pathway and its downstream effects on retinal degeneration in a transgenic mouse model of inducible Muller cell disruption. Increased expression of the LacZ reporter gene in the retina suggested Wnt signalling had been activated after induced Muller cell disruption. Activation was validated by observing nuclear translocation of beta-Catenin. The mRNA expression of 80 Wnt related genes were assessed using real-time PCR. The Wnt signalling inhibitors Dkk1, Dkk3 and sFRP3 were significantly downregulated. Furthermore, the ubiquitin-mediated beta-Catenin proteolysis genes beta-TrCP and SHFM3, were also significantly downregulated. The downstream target genes of the Wnt signalling, including Fra1, CyclinD2 and C-Myc were upregulated. The changes of these genes at the protein level were validated by Western blot. Their distributions in the retina were evaluated by immunofluorescent staining. Our findings indicate that Muller cells are involved in retinal Wnt signalling. Activation of Wnt signalling and its downstream target genes may play important roles in photoreceptor degeneration and neovascularization occurring in the retina after induced disruption of Muller cells.
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