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1.
Mol Cell ; 83(1): 90-104.e4, 2023 01 05.
Article in English | MEDLINE | ID: mdl-36521492

ABSTRACT

RIG-I is essential for host defense against viral pathogens, as it triggers the release of type I interferons upon encounter with viral RNA molecules. In this study, we show that RIG-I is rapidly and efficiently activated by small quantities of incoming viral RNA and that it relies exclusively on the constitutively expressed resident pool of RIG-I receptors for a strong antiviral response. Live-cell imaging of RIG-I following stimulation with viral or synthetic dsRNA reveals that RIG-I signaling occurs without mass aggregation at the mitochondrial membrane. By contrast, interferon-induced RIG-I protein becomes embedded in cytosolic aggregates that are functionally unrelated to signaling. These findings suggest that endogenous RIG-I efficiently recognizes viral RNA and rapidly relays an antiviral signal to MAVS via a transient signaling complex and that cellular aggregates of RIG-I have a function that is distinct from signaling.


Subject(s)
Interferon Type I , Signal Transduction , Signal Transduction/genetics , DEAD Box Protein 58/genetics , DEAD Box Protein 58/metabolism , Antiviral Agents/pharmacology , Interferon Type I/genetics , RNA, Double-Stranded/genetics , RNA, Viral/genetics , Immunity, Innate
2.
PLoS Genet ; 12(7): e1006150, 2016 07.
Article in English | MEDLINE | ID: mdl-27414798

ABSTRACT

The Sonic hedgehog (Shh) signaling pathway regulates developmental, homeostatic, and repair processes throughout the body. In the skin, touch domes develop in tandem with primary hair follicles and contain sensory Merkel cells. The developmental signaling requirements for touch dome specification are largely unknown. We found dermal Wnt signaling and subsequent epidermal Eda/Edar signaling promoted Merkel cell morphogenesis by inducing Shh expression in early follicles. Lineage-specific gene deletions revealed intraepithelial Shh signaling was necessary for Merkel cell specification. Additionally, a Shh signaling agonist was sufficient to rescue Merkel cell differentiation in Edar-deficient skin. Moreover, Merkel cells formed in Fgf20 mutant skin where primary hair formation was defective but Shh production was preserved. Although developmentally associated with hair follicles, fate mapping demonstrated Merkel cells primarily originated outside the hair follicle lineage. These findings suggest that touch dome development requires Wnt-dependent mesenchymal signals to establish reciprocal signaling within the developing ectoderm, including Eda signaling to primary hair placodes and ultimately Shh signaling from primary follicles to extrafollicular Merkel cell progenitors. Shh signaling often demonstrates pleiotropic effects within a structure over time. In postnatal skin, Shh is known to regulate the self-renewal, but not the differentiation, of touch dome stem cells. Our findings relate the varied effects of Shh in the touch dome to the ligand source, with locally produced Shh acting as a morphogen essential for lineage specification during development and neural Shh regulating postnatal touch dome stem cell maintenance.


Subject(s)
Ectodysplasins/metabolism , Gene Expression Regulation, Developmental , Hedgehog Proteins/metabolism , Merkel Cells/cytology , Wnt1 Protein/metabolism , Animals , Cell Lineage , DNA Repair , Female , Fibroblast Growth Factors/metabolism , Gene Deletion , Genotype , Hair Follicle/embryology , Hair Follicle/metabolism , Homeostasis , Ligands , Male , Mice , Microscopy, Fluorescence , Morphogenesis , Mutation , Neurons/metabolism , Signal Transduction , Skin/embryology , Skin/metabolism , Touch
3.
Proc Natl Acad Sci U S A ; 112(23): 7195-200, 2015 Jun 09.
Article in English | MEDLINE | ID: mdl-26015562

ABSTRACT

The touch dome is a highly patterned mechanosensory structure in the epidermis composed of specialized keratinocytes in juxtaposition with innervated Merkel cells. The touch dome epithelium is maintained by tissue-specific stem cells, but the signals that regulate the touch dome are not known. We identify touch dome stem cells that are unique among epidermal cells in their activated Hedgehog signaling and ability to maintain the touch dome as a distinct lineage compartment. Skin denervation reveals that renewal of touch dome stem cells requires a perineural microenvironment, and deleting Sonic hedgehog (Shh) in neurons or Smoothened in the epidermis demonstrates that Shh is an essential niche factor that maintains touch dome stem cells. Up-regulation of Hedgehog signaling results in neoplastic expansion of touch dome keratinocytes but no Merkel cell neoplasia. These findings demonstrate that nerve-derived Shh is a critical regulator of lineage-specific stem cells that maintain specialized sensory compartments in the epidermis.


Subject(s)
Hedgehog Proteins/metabolism , Sensory Receptor Cells/cytology , Signal Transduction , Stem Cells/cytology , Touch , Animals , Epithelial Cells/metabolism , Homeostasis , Mice , Sensory Receptor Cells/metabolism
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