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Publication : Cytoplasmic plaque formation in hemidesmosome development is dependent on SoxF transcription factor function.

First Author  Oommen S Year  2012
Journal  PLoS One Volume  7
Issue  9 Pages  e43857
PubMed ID  22962592 Mgi Jnum  J:191641
Mgi Id  MGI:5462268 Doi  10.1371/journal.pone.0043857
Citation  Oommen S, et al. (2012) Cytoplasmic plaque formation in hemidesmosome development is dependent on SoxF transcription factor function. PLoS One 7(9):e43857
abstractText  Hemidesmosomes are composed of intricate networks of proteins, that are an essential attachment apparatus for the integrity of epithelial tissue. Disruption leads to blistering diseases such as epidermolysis bullosa. Members of the Sox gene family show dynamic and diverse expression patterns during development and mutation analyses in humans and mice provide evidence that they play a remarkable variety of roles in development and human disease. Previous studies have established that the mouse mutant ragged-opossum (Ra(op)) expresses a dominant-negative form of the SOX18 transcription factor that interferes with the function of wild type SOX18 and of the related SOXF-subgroup proteins SOX7 and -17. Here we show that skin and oral mucosa in homozygous Ra(op) mice display extensive detachment of epithelium from the underlying mesenchymal tissue, caused by tearing of epithelial cells just above the plasma membrane due to hemidesmosome disruption. In addition, several hemidesmosome proteins expression were found to be dysregulated in the Ra(op) mice. Our data suggest that SOXF transcription factors play a role in regulating formation of cytoplasmic plaque protein assembly, and that disrupted SOXF function results in epidermolysis bullosa-like skin phenotypes.
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