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Published on: June 27, 2011
E-Cadherin is Dispensable to Maintain Langerhans Cells in the Epidermis
Anna Brand1, Nathalie Diener1, Sonja P Zahner2
1Institute for Molecular Medicine, University Medical Center of the Johannes Gutenberg-University Mainz, Mainz, Germany.
Insights
E-cadherin is not essential for Langerhans cells (LC) in the epidermis. Removing E-cadherin in these skin dendritic cells (DC) did not affect their numbers, migration, or immune function.
Area of Science:
- Immunology
- Dermatology
- Cell Biology
Background:
- E-cadherin is crucial for cell adhesion in adherens junctions.
- Langerhans cells (LC), the epidermis's dendritic cell (DC) population, express E-cadherin for keratinocyte attachment.
- LC activation and migration necessitate reduced E-cadherin expression.
Purpose of the Study:
- To investigate the role of E-cadherin in regulating LC homeostasis and function.
- To determine if E-cadherin is essential for maintaining LC numbers and their immune roles.
Main Methods:
- Generated CD11c-specific E-cadherin knockout mice (CD11c-Ecaddel).
- Analyzed LC numbers, morphology, maturation, and migration under steady-state and inflammatory conditions.
- Assessed contact hypersensitivity and imiquimod-induced skin inflammation.
Main Results:
- LC numbers remained stable in CD11c-Ecaddel mice, even in aged animals.
- E-cadherin-deficient LC showed altered morphology (rounded, fewer dendrites) but normal maturation and migration.
- Contact hypersensitivity and skin inflammation responses were comparable between knockout and control mice.
Conclusions:
- E-cadherin is dispensable for maintaining LC homeostasis in the epidermis.
- E-cadherin on LC does not regulate their maturation, migration, or T cell-mediated immune function.
Abstract:
The cell adhesion molecule E-cadherin is a major component of adherens junctions and marks Langerhans cells (LC), the only dendritic cell (DC) population of the epidermis. LC form a dense network and attach themselves to the surrounding keratinocytes via homophilic E-cadherin binding. LC activation, mobilization, and migration require a reduction in LC E-cadherin expression. To determine whether E-cadherin plays a role in regulating LC homeostasis and function, we generated CD11c-specific E-cadherin knockout mice (CD11c-Ecaddel). In the absence of E-cadherin-mediated cell adhesion, LC numbers remained stable and similar as in control mice, even in aged animals. Intriguingly, E-cadherin-deficient LC displayed a dramatically changed morphology characterized by a more rounded cell body and fewer dendrites than wild-type cells. Nevertheless, maturation and migration of LC lacking E-cadherin was not altered, neither under steady-state nor inflammatory conditions. Accordingly, CD11c-Ecaddel and control mice developed comparable contact hypersensitivity reactions and imiquimod-triggered psoriatic skin inflammation, indicating that E-cadherin on LC does not influence their ability to orchestrate T cell-mediated immunity. In conclusion, our data demonstrate that E-cadherin is dispensable to maintain LC in the epidermis and does not regulate LC maturation, migration, and function.
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