
For epithelia to function as barriers, the intercellular space must be sealed. Sealing two adjacent cells at bicellular tight junctions (bTJs) is well described with the discovery of the claudins. Yet, there are still barrier weak points at tricellular contacts, where three cells join together. In this study, we identify tricellulin, the first integral membrane protein that is concentrated at the vertically oriented TJ strands of tricellular contacts. When tricellulin expression was suppressed with RNA interference, the epithelial barrier was compromised, and tricellular contacts and bTJs were disorganized. These findings indicate the critical function of tricellulin for formation of the epithelial barrier.
Time Factors, Molecular Sequence Data, Membrane Proteins, Epithelial Cells, Models, Biological, Tight Junctions, Mice, Microscopy, Electron, Dogs, MARVEL Domain Containing 2 Protein, Microscopy, Fluorescence, Occludin, Animals, RNA Interference, Snail Family Transcription Factors, Research Articles, Cells, Cultured, Transcription Factors
Time Factors, Molecular Sequence Data, Membrane Proteins, Epithelial Cells, Models, Biological, Tight Junctions, Mice, Microscopy, Electron, Dogs, MARVEL Domain Containing 2 Protein, Microscopy, Fluorescence, Occludin, Animals, RNA Interference, Snail Family Transcription Factors, Research Articles, Cells, Cultured, Transcription Factors
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