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Molecular mechanism of RIPK1 and caspase-8 in homeostatic type I interferon production and regulation

Cited 7 time in Web of Science Cited 7 time in Scopus
Authors

Wang, Yaqiu; Karki, Rajendra; Mall, Raghvendra; Sharma, Bhesh Raj; Kalathur, Ravi C.; Lee, SangJoon; Kancharana, Balabhaskararao; So, Matthew; Combs, Katie L.; Kanneganti, Thirumala-Devi

Issue Date
2022-10
Publisher
Cell Press
Citation
Cell Reports, Vol.41 No.1, p. 111434
Abstract
Type I interferons (IFNs) are essential innate immune proteins that maintain tissue homeostasis through tonic expression and can be upregulated to drive antiviral resistance and inflammation upon stimulation. However, the mechanisms that inhibit aberrant IFN upregulation in homeostasis and the impacts of tonic IFN produc-tion on health and disease remain enigmatic. Here, we report that caspase-8 negatively regulates type I IFN production by inhibiting the RIPK1-TBK1 axis during homeostasis across multiple cell types and tissues. When caspase-8 is deleted or inhibited, RIPK1 interacts with TBK1 to drive elevated IFN production, leading to heightened resistance to norovirus infection in macrophages but also early onset lymphadenopathy in mice. Combined deletion of caspase-8 and RIPK1 reduces the type I IFN signaling and lymphadenopathy, highlighting the critical role of RIPK1 in this process. Overall, our study identifies a mechanism to constrain tonic type I IFN during homeostasis which could be targeted for infectious and inflammatory diseases.
ISSN
2211-1247
URI
https://hdl.handle.net/10371/202989
DOI
https://doi.org/10.1016/j.celrep.2022.111434
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  • College of Natural Sciences
  • School of Biological Sciences
Research Area Cytokine Storm, Host Defense, Innate Immunity in Metabolic and Inflammatory Diseases

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