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Updated: Aug 8, 2026

A Simplified and Efficient Method to Isolate Primary Human Keratinocytes from Adult Skin Tissue
Published on: August 25, 2018
Interkeratinocyte adherens junctions: immunocytochemical visualization of cell-cell junctional structures, distinct
M Haftek1, M U Hansen, H W Kaiser
1Department of Dermatology, INSERM, Edouard Herriot Hospital, Lyon, France.
Insights
This study identifies zonulae adherentes in human epidermis by localizing vinculin and beta-catenin. These findings clarify the presence and potential function of these cell-cell junctions near desmosomes.
Area of Science:
- Cell Biology
- Dermatology
- Molecular Biology
Background:
- Cell-cell adhesion is crucial for tissue integrity.
- Adherens junctions (zonulae adherentes) and desmosomes are key junctional structures.
- Recognition of zonulae adherentes in human epidermis has been challenging.
Purpose of the Study:
- To investigate the presence and localization of zonula adherens-associated proteins in human epidermis.
- To correlate protein expression with ultrastructural junctional formations.
- To explore potential functional relationships between zonulae adherentes and desmosomes.
Main Methods:
- Immunogold labeling on ultrathin sections of embedded human epidermis and mouse jejunum.
- Immunofluorescence and laser confocal scanning microscopy on frozen human epidermis sections.
- Utilized antibodies against vinculin, beta-catenin, E-cadherin, actin, and desmosomal proteins.
Main Results:
- Vinculin and beta-catenin localized to junctional structures distinct from desmosomes, confirming zonulae adherentes.
- Actin and E-cadherin were also found at zonulae adherentes, co-localizing with vinculin and beta-catenin.
- Zonula adherens-associated protein labeling was observed near desmosomes in human epidermis.
Conclusions:
- Zonulae adherentes are present in human epidermis, associated with vinculin, beta-catenin, E-cadherin, and actin.
- These findings provide clear ultrastructural and molecular evidence for zonulae adherentes in human epidermis.
- The proximity of zonulae adherentes to desmosomes suggests a potential functional interplay between these junction types.
Abstract:
Vinculin and beta-catenin are intracellular attachment proteins linking transmembrane adhesion molecules (E-cadherin) to the actin microfilament cytoskeleton, thus participating in formation of cell-cell adherens junctions, or zonulae adherentes. This type of junction was only recently described in human epidermis due to the imprecise morphological criteria for its recognition. In this study, we investigated the relationship between the expression of the zonula adherens-associated proteins vinculin, beta-catenin, E-cadherin, and actin, on the one hand, and the presence of electron microscopically discernable structures in normal human epidermis on the other. Mouse jejunal epithelium with its orderly arrangement of various junctional structures served as a positive control. Simple and dual post-embedding immunogold labeling was performed on ultrathin sections of Lowicryl K4M and Lowicryl K11M embedded tissues. The overall distribution of the antigens in human epidermis was evaluated on frozen tissue sections using immunofluorescence and laser confocal scanning microscopy. Antibodies against proteins associated with desmosomes (i.e., keratins, desmoglein 1, and plakoglobin) were used as controls. Vinculin and beta-catenin were localized to junctional structures distinct from desmosomes, thus defining the presence of zonulae adherentes. Labeling of actin and E-cadherin was less clearly restricted to the junctions, but these two proteins were also co-expressed at zonulae adherentes and not at desmosomes. In human epidermis, zonula adherens-associated labeling was consistently detected near desmosomes, indicating the possibility of a functional relationship between the two types of junctions.
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