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The miR-183/96/182 Cluster Regulates the Functions of Corneal Resident Macrophages
Ardian Coku1, Sharon A McClellan1, Eric Van Buren2
1Department of Ophthalmology, Visual and Anatomical Sciences, Wayne State University, Detroit, MI 48201; and.
Abstract:
Tissue-resident macrophages (ResMϕ) play important roles in the normal development and physiological functions as well as tissue repair and immune/inflammatory response to both internal and external insults. In cornea, ResMϕ are critical to the homeostasis and maintenance, wound healing, ocular immune privilege, and immune/inflammatory response to injury and microbial infection. However, the roles of microRNAs in corneal ResMϕ are utterly unknown. Previously, we demonstrated that the conserved miR-183/96/182 cluster (miR-183/96/182) plays important roles in sensory neurons and subgroups of both innate and adaptive immune cells and modulates corneal response to bacterial infection. In this study, we provide direct evidence that the mouse corneal ResMϕ constitutively produce both IL-17f and IL-10. This function is regulated by miR-183/96/182 through targeting Runx1 and Maf, key transcriptional regulators for IL-17f and IL-10 expression, respectively. In addition, we show that miR-183/96/182 has a negative feedback regulation on the TLR4 pathway in mouse corneal ResMϕ. Furthermore, miR-183/96/182 regulates the number of corneal ResMϕ. Inactivation of miR-183/96/182 in mouse results in more steady-state corneal resident immune cells, including ResMϕ, and leads to a simultaneous early upregulation of innate IL-17f and IL-10 production in the cornea after Pseudomonas aeruginosa infection. Its multiplex regulations on the simultaneous production of IL-17f and IL-10, TLR4 signaling pathway and the number of corneal ResMϕ place miR-183/96/182 in the center of corneal innate immunity, which is key to the homeostasis of the cornea, ocular immune privilege, and the corneal response to microbial infections.
Insights
The miR-183/96/182 microRNA cluster regulates corneal resident macrophages (ResMϕ), controlling IL-17f and IL-10 production and influencing corneal immunity and infection response.
Area of Science:
- Immunology
- Ophthalmology
- Molecular Biology
Background:
- Tissue-resident macrophages (ResMϕ) are crucial for corneal homeostasis, wound healing, and immune responses.
- The role of microRNAs in corneal ResMϕ function was previously unknown.
- The miR-183/96/182 cluster was known to affect immune cells and corneal response to infection.
Purpose of the Study:
- To investigate the role of the miR-183/96/182 cluster in mouse corneal ResMϕ.
- To elucidate the regulatory mechanisms of microRNAs in corneal innate immunity.
- To understand the impact of miR-183/96/182 on IL-17f and IL-10 production in corneal macrophages.
Main Methods:
- Analysis of microRNA regulation in mouse corneal ResMϕ.
- Investigated the targeting of Runx1 and Maf by miR-183/96/182.
- Studied the effect of miR-183/96/182 on the TLR4 pathway and macrophage numbers.
- Examined corneal immune response after *Pseudomonas aeruginosa* infection in mice with altered miR-183/96/182 levels.
Main Results:
- Mouse corneal ResMϕ constitutively produce IL-17f and IL-10, regulated by miR-183/96/182 via Runx1 and Maf.
- miR-183/96/182 negatively regulates the TLR4 pathway in corneal ResMϕ.
- miR-183/96/182 controls the number of corneal ResMϕ.
- Inactivation of miR-183/96/182 increased corneal immune cells and IL-17f/IL-10 production post-infection.
Conclusions:
- The miR-183/96/182 cluster is central to corneal innate immunity.
- This cluster regulates IL-17f and IL-10 production, TLR4 signaling, and ResMϕ numbers.
- miR-183/96/182 plays a key role in maintaining corneal homeostasis and responding to microbial infections.
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