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1.
Cell Mol Life Sci ; 78(2): 573-580, 2021 Jan.
Article in English | MEDLINE | ID: mdl-32803399

ABSTRACT

Epidermal resident γδ T cells, or dendritic epidermal T cells (DETCs) in mice, are a unique and conserved population of γδ T cells enriched in the epidermis, where they serve as the regulators of immune responses and sense skin injury. Despite the great advances in the understanding of the development, homeostasis, and function of DETCs in the past decades, the origin and the underlying molecular mechanisms remain elusive. Here, we reviewed the recent research progress on DETCs, including their origin and homeostasis in the skin, especially at transcriptional and epigenetic levels, and discuss the involvement of DETCs in skin diseases.


Subject(s)
Epidermis/immunology , Intraepithelial Lymphocytes/immunology , Skin Diseases/immunology , Skin/immunology , Animals , Cell Differentiation , Disease Models, Animal , Epidermis/metabolism , Epigenesis, Genetic , Humans , Intraepithelial Lymphocytes/cytology , Intraepithelial Lymphocytes/metabolism , Mice , Skin/cytology , Skin/metabolism , Skin Diseases/genetics , Thymus Gland/cytology , Thymus Gland/immunology , Thymus Gland/metabolism , Yolk Sac/cytology , Yolk Sac/immunology , Yolk Sac/metabolism
2.
Front Immunol ; 11: 912, 2020.
Article in English | MEDLINE | ID: mdl-32457763

ABSTRACT

Epidermal Langerhans cells (LCs) are skin-resident dendritic cells that are essential for the induction of skin immunity and tolerance. Transforming growth factor-ß 1 (TGFß1) is a crucial factor for LC maintenance and function. However, the underlying TGFß1 signaling pathways remain unclear. Our previous research has shown that the TGFß1/Smad3 signaling pathway does not impact LC homeostasis and maturation. In this study, we generated mice with conditional deletions of either individual Smad2, Smad4, or both Smad2 and Smad4 in the LC lineage or myeloid lineage, to further explore the impact of TGFß1/Smad signaling pathways on LCs. We found that interruption of Smad2 or Smad4 individually or simultaneously in the LC lineage did not significantly impact the maintenance, maturation, antigen uptake, and migration of LCs in vivo or in vitro during steady state. However, the interruption of both Smad2 and Smad4 pathways in the myeloid lineage led to a dramatic inhibition of bone marrow-derived LCs in the inflammatory state. Overall, our data suggest that canonical TGFß1/Smad2/4 signaling pathways are dispensable for epidermal LC homeostasis and maturation at steady state, but are critical for the long-term LC repopulation directly originating from the bone marrow in the inflammatory state.


Subject(s)
Cell Proliferation , Dermatitis/metabolism , Epidermis/metabolism , Langerhans Cells/metabolism , Smad2 Protein/metabolism , Smad4 Protein/metabolism , Animals , Bone Marrow Cells/immunology , Bone Marrow Cells/metabolism , Bone Marrow Cells/pathology , Cell Lineage , Cell Movement , Cells, Cultured , Dermatitis/genetics , Dermatitis/immunology , Dermatitis/pathology , Disease Models, Animal , Epidermis/immunology , Epidermis/pathology , Female , Langerhans Cells/immunology , Langerhans Cells/pathology , Lymph Nodes/immunology , Lymph Nodes/metabolism , Lymph Nodes/pathology , Male , Mice, Inbred C57BL , Mice, Knockout , Phagocytosis , Receptors, Granulocyte-Macrophage Colony-Stimulating Factor/genetics , Receptors, Granulocyte-Macrophage Colony-Stimulating Factor/metabolism , Signal Transduction , Smad2 Protein/deficiency , Smad2 Protein/genetics , Smad4 Protein/deficiency , Smad4 Protein/genetics , Transforming Growth Factor beta1/metabolism
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