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Published on: December 14, 2015
Epidermal Langerhans cell-targeted gene expression by a dectin-2 promoter
M Bonkobara1, P K Zukas, S Shikano
1Department of Dermatology, University of Texas Southwestern Medical Center and Dallas Veterans Affairs Medical Center, Dallas, TX 75390, USA.
Insights
Researchers identified the dectin-2 promoter (Dec2FR) to enable specific gene expression in Langerhans cells (LCs). This breakthrough allows targeted manipulation of LCs, crucial antigen-presenting cells (APCs), for enhanced immune responses and vaccination strategies.
Area of Science:
- Immunology
- Molecular Biology
- Genetics
Background:
- Dendritic cells (DCs) and Langerhans cells (LCs) are vital antigen-presenting cells (APCs) for initiating immune responses.
- Targeting LCs for gene-based manipulation has been limited due to the lack of identified LC/DC-specific regulatory elements.
- Dectin-2, a C-type lectin receptor, is selectively expressed by LC-like cell lines and LCs in mouse epidermis.
Purpose of the Study:
- To identify and characterize regulatory elements for LC/DC-specific gene expression.
- To evaluate the potential of the dectin-2 promoter (Dec2FR) for directing gene expression specifically in LCs.
- To establish a foundation for LC-targeted gene expression systems to enhance vaccination and immune regulation.
Main Methods:
- Isolation and characterization of a 3.2-kb nucleotide fragment from the 5'-flanking region of the dectin-2 gene (Dec2FR).
- Utilized a luciferase (Luc) reporter system to assess transcriptional activity of Dec2FR in LC-like XS cells.
- Generated transgenic mice carrying a Dec2FR-regulated Luc gene to evaluate in vivo LC-specific expression.
Main Results:
- The isolated Dec2FR fragment contains regulatory elements (e.g., TATA box, IFN-stimulated response element) driving gene expression specifically in XS cells.
- Dec2FR comprises repressor and enhancer regions that co-regulate XS cell-specific gene expression.
- In transgenic mice, luciferase activity was predominantly found in the skin, exclusively from epidermal LCs, with minimal activity in other APCs and T cells.
Conclusions:
- Epidermal LCs can be selectively targeted for high-level constitutive gene expression using the Dec2FR in vitro and in vivo.
- The dectin-2 promoter (Dec2FR) serves as a powerful tool for LC-specific gene expression.
- This finding provides a basis for developing LC-targeted gene therapy and vaccination strategies.
Abstract:
Despite their critical function as APCs for primary immune responses, dendritic cells (DC) and Langerhans cells (LC) have been rarely used as targets of gene-based manipulation because well-defined regulatory elements controlling LC/DC-specific expression have not been identified. Previously, we identified dectin-2, a C-type lectin receptor expressed selectively by LC-like XS cell lines and by LC within mouse epidermis. Because these characteristics raised the possibility that dectin-2 promoter may direct LC/DC-specific gene expression, we isolated a 3.2-kb nucleotide fragment from the 5'-flanking region of the dectin-2 gene (Dec2FR) and characterized its regulatory elements and the transcriptional activity using a luciferase (Luc) reporter system. The Dec2FR contains a putative TATA box and cis-acting elements, such as the IFN-stimulated response element, that drive gene expression specifically in XS cells. Dec2FR comprises repressor, enhancer, and promoter regions, and the latter two regions coregulate XS cell-specific gene expression. In transgenic mice bearing a Dec2FR-regulated Luc gene, the skin was the predominant site of Luc activity and LC were the exclusive source of such activity within epidermis. By contrast, other APCs (DC, macrophages, and B cells) and T cells expressed Luc activity close to background levels. We conclude that epidermal LC are targeted selectively for high-level constitutive gene expression by Dec2FR in vitro and in vivo. Our findings lay the foundation for use of the dectin-2 promoter in LC-targeted gene expression systems that may enhance vaccination efficacy and regulate immune responses.
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