CRIS
Permanent URI for this communityhttps://investigadores.udd.cl/handle/123456789/1
Browse
4 results
Search Results
Now showing 1 - 4 of 4
- Some of the metrics are blocked by yourconsent settings
Item type:Publication, Histiocitosis de Erdheim Chester como desafío diagnóstico ante un cuadro sistémico: Reporte de un caso(2024) ;Dominga García ;Yorman Flores ;Maximiliano VergaraCristian Labarca SolarScopus© Citations 1 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Safety, Tolerability, Bioavailability, and Biological Activity of Inhaled Interferon-α2b in Healthy Adults: The IN2COVID Phase I Randomized Trial(2023) ;Diego Garcia-Huidobro ;Carolina Iturriaga ;Guillermo Perez-Mateluna ;Paula FajuriNicolás SeverinoScopus© Citations 2 1 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Protein kinase R is an innate immune sensor of proteotoxic stress via accumulation of cytoplasmic IL-24(2022) ;Sophia Davidson ;Chien-Hsiung Yu ;Annemarie Steiner ;Frédéric EbsteinPaul J. Baker<jats:p>Proteasome dysfunction can lead to autoinflammatory disease associated with elevated type I interferon (IFN-αβ) and NF-κB signaling; however, the innate immune pathway driving this is currently unknown. Here, we identified protein kinase R (PKR) as an innate immune sensor for proteotoxic stress. PKR activation was observed in cellular models of decreased proteasome function and in multiple cell types from patients with proteasome-associated autoinflammatory disease (PRAAS). Furthermore, genetic deletion or small-molecule inhibition of PKR in vitro ameliorated inflammation driven by proteasome deficiency. In vivo, proteasome inhibitor–induced inflammatory gene transcription was blunted in PKR-deficient mice compared with littermate controls. PKR also acted as a rheostat for proteotoxic stress by triggering phosphorylation of eIF2α, which can prevent the translation of new proteins to restore homeostasis. Although traditionally known as a sensor of RNA, under conditions of proteasome dysfunction, PKR sensed the cytoplasmic accumulation of a known interactor, interleukin-24 (IL-24). When misfolded IL-24 egress into the cytosol was blocked by inhibition of the endoplasmic reticulum–associated degradation pathway, PKR activation and subsequent inflammatory signaling were blunted. Cytokines such as IL-24 are normally secreted from cells; therefore, cytoplasmic accumulation of IL-24 represents an internal danger-associated molecular pattern. Thus, we have identified a mechanism by which proteotoxic stress is detected, causing inflammation observed in the disease PRAAS.</jats:p>Scopus© Citations 55 3 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Integrin Alpha E (CD103) Limits Virus-Induced IFN-I Production in Conventional Dendritic Cells(2021) ;Vikas Duhan ;Vishal Khairnar ;Simo Kitanovski ;Thamer A. Hamdan<jats:p>Early and strong production of IFN-I by dendritic cells is important to control vesicular stomatitis virus (VSV), however mechanisms which explain this cell-type specific innate immune activation remain to be defined. Here, using a genome wide association study (GWAS), we identified Integrin alpha-E (<jats:italic>Itgae</jats:italic>, CD103) as a new regulator of antiviral IFN-I production in a mouse model of vesicular stomatitis virus (VSV) infection. CD103 was specifically expressed by splenic conventional dendritic cells (cDCs) and limited IFN-I production in these cells during VSV infection. Mechanistically, CD103 suppressed AKT phosphorylation and mTOR activation in DCs. Deficiency in CD103 accelerated early IFN-I in cDCs and prevented death in VSV infected animals. In conclusion, CD103 participates in regulation of cDC specific IFN-I induction and thereby influences immune activation after VSV infection.</jats:p>1Scopus© Citations 4