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Switching of α-Catenin From Epithelial to Neuronal Type During Lens Epithelial Cell Differentiation

PURPOSE: Ocular lens fiber cell elongation, differentiation, and compaction are associated with extensive reorganization of cell adhesive interactions and cytoskeleton; however, our knowledge of proteins critical to these events is still evolving. This study characterizes the distribution pattern of...

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Autores principales: Maddala, Rupalatha, Rao, Ponugoti Vasantha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Association for Research in Vision and Ophthalmology 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5505122/
https://www.ncbi.nlm.nih.gov/pubmed/28692740
http://dx.doi.org/10.1167/iovs.17-21539
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author Maddala, Rupalatha
Rao, Ponugoti Vasantha
author_facet Maddala, Rupalatha
Rao, Ponugoti Vasantha
author_sort Maddala, Rupalatha
collection PubMed
description PURPOSE: Ocular lens fiber cell elongation, differentiation, and compaction are associated with extensive reorganization of cell adhesive interactions and cytoskeleton; however, our knowledge of proteins critical to these events is still evolving. This study characterizes the distribution pattern of neuronal-specific α-catenin (αN-catenin) and its interaction with the N-cadherin–associated adherens junctions (AJs) and their stability in the mouse lens fibers. METHODS: Expression and distribution of αN-catenin in developing mouse and adult human lenses was determined by RT-PCR, immunoblot, and immunofluorescence analyses. Characterization of αN-catenin and N-cadherin interacting proteins and colocalization analyses were performed using immunoprecipitation, mass spectrometry, and confocal imaging. Effects of periaxin deficiency on the stability of lens fiber cell AJs were evaluated using perixin-null mice. RESULTS: αN-catenin exhibits discrete distribution to lens fibers in both mouse and human lenses, undergoing a robust up-regulation during fiber cell differentiation and maturation. Epithelial-specific α-catenin (αE-catenin), in contrast, distributes primarily to the lens epithelium. αN-catenin and N-cadherin reciprocally coimmunoprecipitate and colocalize along with β-catenin, actin, spectrin, vinculin, Armadillo repeat protein deleted in velo-cardio-facial syndrome homolog, periaxin, and ankyrin-B in lens fibers. Fiber cells from periaxin-null mouse lenses revealed disrupted N-cadherin/αN-catenin–based AJs. CONCLUSIONS: These results suggest that the discrete shift in α-catenin expression from αE-catenin to αN-catenin subtype that occurs during lens epithelial cell differentiation may play a key role in fiber cell cytoarchitecture by regulating the assembly and stability of N-cadherin–based AJs. This study also provides evidence for the importance of the fiber cell–specific cytoskeletal interacting periaxin, in the stability of N-cadherin/αN-catenin–based AJs in lens fibers.
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spelling pubmed-55051222017-07-13 Switching of α-Catenin From Epithelial to Neuronal Type During Lens Epithelial Cell Differentiation Maddala, Rupalatha Rao, Ponugoti Vasantha Invest Ophthalmol Vis Sci Lens PURPOSE: Ocular lens fiber cell elongation, differentiation, and compaction are associated with extensive reorganization of cell adhesive interactions and cytoskeleton; however, our knowledge of proteins critical to these events is still evolving. This study characterizes the distribution pattern of neuronal-specific α-catenin (αN-catenin) and its interaction with the N-cadherin–associated adherens junctions (AJs) and their stability in the mouse lens fibers. METHODS: Expression and distribution of αN-catenin in developing mouse and adult human lenses was determined by RT-PCR, immunoblot, and immunofluorescence analyses. Characterization of αN-catenin and N-cadherin interacting proteins and colocalization analyses were performed using immunoprecipitation, mass spectrometry, and confocal imaging. Effects of periaxin deficiency on the stability of lens fiber cell AJs were evaluated using perixin-null mice. RESULTS: αN-catenin exhibits discrete distribution to lens fibers in both mouse and human lenses, undergoing a robust up-regulation during fiber cell differentiation and maturation. Epithelial-specific α-catenin (αE-catenin), in contrast, distributes primarily to the lens epithelium. αN-catenin and N-cadherin reciprocally coimmunoprecipitate and colocalize along with β-catenin, actin, spectrin, vinculin, Armadillo repeat protein deleted in velo-cardio-facial syndrome homolog, periaxin, and ankyrin-B in lens fibers. Fiber cells from periaxin-null mouse lenses revealed disrupted N-cadherin/αN-catenin–based AJs. CONCLUSIONS: These results suggest that the discrete shift in α-catenin expression from αE-catenin to αN-catenin subtype that occurs during lens epithelial cell differentiation may play a key role in fiber cell cytoarchitecture by regulating the assembly and stability of N-cadherin–based AJs. This study also provides evidence for the importance of the fiber cell–specific cytoskeletal interacting periaxin, in the stability of N-cadherin/αN-catenin–based AJs in lens fibers. The Association for Research in Vision and Ophthalmology 2017-07 /pmc/articles/PMC5505122/ /pubmed/28692740 http://dx.doi.org/10.1167/iovs.17-21539 Text en Copyright 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
spellingShingle Lens
Maddala, Rupalatha
Rao, Ponugoti Vasantha
Switching of α-Catenin From Epithelial to Neuronal Type During Lens Epithelial Cell Differentiation
title Switching of α-Catenin From Epithelial to Neuronal Type During Lens Epithelial Cell Differentiation
title_full Switching of α-Catenin From Epithelial to Neuronal Type During Lens Epithelial Cell Differentiation
title_fullStr Switching of α-Catenin From Epithelial to Neuronal Type During Lens Epithelial Cell Differentiation
title_full_unstemmed Switching of α-Catenin From Epithelial to Neuronal Type During Lens Epithelial Cell Differentiation
title_short Switching of α-Catenin From Epithelial to Neuronal Type During Lens Epithelial Cell Differentiation
title_sort switching of α-catenin from epithelial to neuronal type during lens epithelial cell differentiation
topic Lens
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5505122/
https://www.ncbi.nlm.nih.gov/pubmed/28692740
http://dx.doi.org/10.1167/iovs.17-21539
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