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1.
Nat Immunol ; 17(5): 565-73, 2016 May.
Artículo en Inglés | MEDLINE | ID: mdl-27043411

RESUMEN

Positive selection occurs in the thymic cortex, but critical maturation events occur later in the medulla. Here we defined the precise stage at which T cells acquired competence to proliferate and emigrate. Transcriptome analysis of late gene changes suggested roles for the transcription factor NF-κB and interferon signaling. Mice lacking the inhibitor of NF-κB (IκB) kinase (IKK) kinase TAK1 underwent normal positive selection but exhibited a specific block in functional maturation. NF-κB signaling provided protection from death mediated by the cytokine TNF and was required for proliferation and emigration. The interferon signature was independent of NF-κB; however, thymocytes deficient in the interferon-α (IFN-α) receptor IFN-αR showed reduced expression of the transcription factor STAT1 and phenotypic abnormality but were able to proliferate. Thus, both NF-κB and tonic interferon signals are involved in the final maturation of thymocytes into naive T cells.


Asunto(s)
Diferenciación Celular/inmunología , FN-kappa B/inmunología , Receptor de Interferón alfa y beta/inmunología , Linfocitos T/inmunología , Timo/inmunología , Animales , Diferenciación Celular/genética , Movimiento Celular/genética , Movimiento Celular/inmunología , Proliferación Celular/genética , Citometría de Flujo , Quinasas Quinasa Quinasa PAM/genética , Quinasas Quinasa Quinasa PAM/inmunología , Quinasas Quinasa Quinasa PAM/metabolismo , Ratones Endogámicos C57BL , Ratones Noqueados , Ratones Transgénicos , FN-kappa B/genética , FN-kappa B/metabolismo , Análisis de Secuencia por Matrices de Oligonucleótidos , Receptor de Interferón alfa y beta/metabolismo , Reacción en Cadena de la Polimerasa de Transcriptasa Inversa , Factor de Transcripción STAT1/genética , Factor de Transcripción STAT1/inmunología , Factor de Transcripción STAT1/metabolismo , Linfocitos T/metabolismo , Timocitos/inmunología , Timocitos/metabolismo , Timo/citología , Timo/metabolismo , Transcriptoma/genética , Transcriptoma/inmunología , Factor de Necrosis Tumoral alfa/genética , Factor de Necrosis Tumoral alfa/inmunología , Factor de Necrosis Tumoral alfa/metabolismo
2.
Nature ; 591(7848): 124-130, 2021 03.
Artículo en Inglés | MEDLINE | ID: mdl-33494096

RESUMEN

Although infection with severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has pleiotropic and systemic effects in some individuals1-3, many others experience milder symptoms. Here, to gain a more comprehensive understanding of the distinction between severe and mild phenotypes in the pathology of coronavirus disease 2019 (COVID-19) and its origins, we performed a whole-blood-preserving single-cell analysis protocol to integrate contributions from all major immune cell types of the blood-including neutrophils, monocytes, platelets, lymphocytes and the contents of the serum. Patients with mild COVID-19 exhibit a coordinated pattern of expression of interferon-stimulated genes (ISGs)3 across every cell population, whereas these ISG-expressing cells are systemically absent in patients with severe disease. Paradoxically, individuals with severe COVID-19 produce very high titres of anti-SARS-CoV-2 antibodies and have a lower viral load compared to individuals with mild disease. Examination of the serum from patients with severe COVID-19 shows that these patients uniquely produce antibodies that functionally block the production of the ISG-expressing cells associated with mild disease, by activating conserved signalling circuits that dampen cellular responses to interferons. Overzealous antibody responses pit the immune system against itself in many patients with COVID-19, and perhaps also in individuals with other viral infections. Our findings reveal potential targets for immunotherapies in patients with severe COVID-19 to re-engage viral defence.


Asunto(s)
Anticuerpos Antivirales/inmunología , COVID-19/inmunología , COVID-19/fisiopatología , Interferones/antagonistas & inhibidores , Interferones/inmunología , SARS-CoV-2/inmunología , SARS-CoV-2/patogenicidad , Anticuerpos Antivirales/sangre , Formación de Anticuerpos , Secuencia de Bases , COVID-19/sangre , COVID-19/virología , Femenino , Humanos , Inmunoglobulina G/inmunología , Interferones/metabolismo , Masculino , Neutrófilos/inmunología , Neutrófilos/patología , Dominios Proteicos , Receptor de Interferón alfa y beta/antagonistas & inhibidores , Receptor de Interferón alfa y beta/inmunología , Receptor de Interferón alfa y beta/metabolismo , Receptores de IgG/inmunología , Análisis de la Célula Individual , Carga Viral/inmunología
3.
Nat Immunol ; 15(6): 512-20, 2014 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-24840982

RESUMEN

The activity of a cell is governed by the signals it receives from the extracellular milieu, which are 'translated' into the appropriate biological output, such as activation, survival, proliferation, migration or differentiation. Signaling pathways are responsible for converting environmental cues into discrete intracellular events. The alteration of existing proteins by post-translational modification (PTM) is a key feature of signal-transduction pathways that allows the modulation of protein function. Research into PTMs has long been dominated by the investigation of protein phosphorylation; other PTMs, such as methylation of lysine and arginine residues, acetylation, and nitrosylation of thiol groups and tyrosine residues, have received comparatively little attention. This Review aims to present an overview of these PTMs, with an emphasis on their role in cells of the immune system.


Asunto(s)
Hidrolasas/inmunología , Sistema Inmunológico/inmunología , Procesamiento Proteico-Postraduccional/inmunología , Proteína-Arginina N-Metiltransferasas/inmunología , Acetilación , Acetiltransferasas/inmunología , Animales , Diferenciación Celular/inmunología , Humanos , Hidrolasas/genética , Metilación , Metiltransferasas/inmunología , Ratones , Fosforilación , Procesamiento Proteico-Postraduccional/genética , Desiminasas de la Arginina Proteica , Proteína-Arginina N-Metiltransferasas/genética , Receptor de Interferón alfa y beta/inmunología , Transducción de Señal/inmunología
4.
J Immunol ; 213(8): 1202-1211, 2024 Oct 15.
Artículo en Inglés | MEDLINE | ID: mdl-39212415

RESUMEN

The increased incidence of invasive pulmonary aspergillosis, caused by Aspergillus fumigatus, occurring in patients infected with severe influenza or SARS-CoV-2, suggests that antiviral immune responses create an environment permissive to fungal infection. Our recent evidence suggests that absence of the type I IFN receptor 2 subunit (IFNAR2) of the heterodimeric IFNAR1/2 receptor is allowing for this permissive immune environment of the lung through regulation of damage responses. Because damage is associated with poor outcome to invasive pulmonary aspergillosis, this suggested that IFNAR2 may be involved in A. fumigatus susceptibility. In this study, we determined that absence of IFNAR2 resulted in increased inflammation, morbidity, and damage in the lungs in response to A. fumigatus challenge, whereas absence of IFNAR1 did not. Although the Ifnar2-/- mice had increased morbidity, we found that the Ifnar2-/- mice cleared more conidia compared with both wild-type and Ifnar1-/- mice. However, this early clearance did not prevent invasive disease from developing in the Ifnar2-/- mice as infection progressed. Importantly, by altering the inflamed environment of the Ifnar2-/- mice early during A. fumigatus infection, by neutralizing TNF-α, we were able to reduce the morbidity and fungal clearance in these mice back to wild-type levels. Together, our results establish a distinct role for IFNAR2 in regulating host damage responses to A. fumigatus and contributing to an A. fumigatus-permissive environment through regulation of inflammation. Specifically, our data reveal a role for IFNAR2 in regulating TNF-α-mediated damage and morbidity during A. fumigatus infection.


Asunto(s)
Aspergillus fumigatus , Ratones Endogámicos C57BL , Ratones Noqueados , Receptor de Interferón alfa y beta , Factor de Necrosis Tumoral alfa , Animales , Ratones , Receptor de Interferón alfa y beta/genética , Receptor de Interferón alfa y beta/inmunología , Aspergillus fumigatus/inmunología , Factor de Necrosis Tumoral alfa/inmunología , Factor de Necrosis Tumoral alfa/metabolismo , Inflamación/inmunología , Pulmón/inmunología , Humanos
5.
Immunity ; 44(4): 901-12, 2016 Apr 19.
Artículo en Inglés | MEDLINE | ID: mdl-27096319

RESUMEN

Sickness behavior and cognitive dysfunction occur frequently by unknown mechanisms in virus-infected individuals with malignancies treated with type I interferons (IFNs) and in patients with autoimmune disorders. We found that during sickness behavior, single-stranded RNA viruses, double-stranded RNA ligands, and IFNs shared pathways involving engagement of melanoma differentiation-associated protein 5 (MDA5), retinoic acid-inducible gene 1 (RIG-I), and mitochondrial antiviral signaling protein (MAVS), and subsequently induced IFN responses specifically in brain endothelia and epithelia of mice. Behavioral alterations were specifically dependent on brain endothelial and epithelial IFN receptor chain 1 (IFNAR). Using gene profiling, we identified that the endothelia-derived chemokine ligand CXCL10 mediated behavioral changes through impairment of synaptic plasticity. These results identified brain endothelial and epithelial cells as natural gatekeepers for virus-induced sickness behavior, demonstrated tissue specific IFNAR engagement, and established the CXCL10-CXCR3 axis as target for the treatment of behavioral changes during virus infection and type I IFN therapy.


Asunto(s)
Encéfalo/citología , Quimiocina CXCL10/inmunología , Trastornos del Conocimiento/genética , Células Endoteliales/inmunología , Células Epiteliales/inmunología , Conducta de Enfermedad/fisiología , Receptor de Interferón alfa y beta/genética , Proteínas Adaptadoras Transductoras de Señales/metabolismo , Animales , Encéfalo/inmunología , Comunicación Celular/inmunología , Células Cultivadas , Trastornos del Conocimiento/psicología , Proteína 58 DEAD Box , ARN Helicasas DEAD-box/metabolismo , Endotelio/citología , Endotelio/inmunología , Epitelio/inmunología , Interferón Tipo I/uso terapéutico , Helicasa Inducida por Interferón IFIH1 , Masculino , Ratones , ARN Bicatenario/genética , Receptor de Interferón alfa y beta/inmunología , Receptores CXCR3/inmunología , Transducción de Señal/inmunología , Virosis/inmunología
6.
Nature ; 561(7722): 258-262, 2018 09.
Artículo en Inglés | MEDLINE | ID: mdl-30135585

RESUMEN

Although serum from patients with Parkinson's disease contains elevated levels of numerous pro-inflammatory cytokines including IL-6, TNF, IL-1ß, and IFNγ, whether inflammation contributes to or is a consequence of neuronal loss remains unknown1. Mutations in parkin, an E3 ubiquitin ligase, and PINK1, a ubiquitin kinase, cause early onset Parkinson's disease2,3. Both PINK1 and parkin function within the same biochemical pathway and remove damaged mitochondria from cells in culture and in animal models via mitophagy, a selective form of autophagy4. The in vivo role of mitophagy, however, is unclear, partly because mice that lack either PINK1 or parkin have no substantial Parkinson's-disease-relevant phenotypes5-7. Mitochondrial stress can lead to the release of damage-associated molecular patterns (DAMPs) that can activate innate immunity8-12, suggesting that mitophagy may mitigate inflammation. Here we report a strong inflammatory phenotype in both Prkn-/- and Pink1-/- mice following exhaustive exercise and in Prkn-/-;mutator mice, which accumulate mutations in mitochondrial DNA (mtDNA)13,14. Inflammation resulting from either exhaustive exercise or mtDNA mutation is completely rescued by concurrent loss of STING, a central regulator of the type I interferon response to cytosolic DNA15,16. The loss of dopaminergic neurons from the substantia nigra pars compacta and the motor defect observed in aged Prkn-/-;mutator mice are also rescued by loss of STING, suggesting that inflammation facilitates this phenotype. Humans with mono- and biallelic PRKN mutations also display elevated cytokines. These results support a role for PINK1- and parkin-mediated mitophagy in restraining innate immunity.


Asunto(s)
Inmunidad Innata , Inflamación/metabolismo , Proteínas de la Membrana/metabolismo , Mitofagia , Proteínas Quinasas/metabolismo , Ubiquitina-Proteína Ligasas/metabolismo , Alarminas/metabolismo , Animales , ADN Mitocondrial/sangre , ADN Mitocondrial/genética , Humanos , Inflamación/genética , Inflamación/prevención & control , Proteínas de la Membrana/deficiencia , Proteínas de la Membrana/genética , Ratones , Ratones Endogámicos C57BL , Enfermedad de Parkinson/metabolismo , Condicionamiento Físico Animal , Proteínas Quinasas/deficiencia , Proteínas Quinasas/genética , Receptor de Interferón alfa y beta/antagonistas & inhibidores , Receptor de Interferón alfa y beta/inmunología , Estrés Fisiológico , Ubiquitina-Proteína Ligasas/deficiencia , Ubiquitina-Proteína Ligasas/genética
7.
Int J Mol Sci ; 25(4)2024 Feb 08.
Artículo en Inglés | MEDLINE | ID: mdl-38396742

RESUMEN

African horse sickness (AHS) is a highly severe disease caused by a viral etiological agent, African horse sickness virus (AHSV). It is endemic in sub-Saharan Africa, while sporadic outbreaks have occurred in North Africa, Asia, and Europe, with the most recent cases in Thailand. AHSV transmission between equines occurs primarily by biting midges of the genus Culicoides, especially C. imicola, with a wide distribution globally. As research in horses is highly restricted due to a variety of factors, small laboratory animal models that reproduce clinical signs and pathology observed in natural infection of AHSV are highly needed. Here, we investigated the expression profile of several pro-inflammatory cytokines in target organs and serum of IFNAR (-/-) mice, to continue characterizing this established animal model and to go deep into the innate immune responses that are still needed.


Asunto(s)
Virus de la Enfermedad Equina Africana , Enfermedad Equina Africana , Receptor de Interferón alfa y beta , Animales , Ratones , África del Sur del Sahara , Enfermedad Equina Africana/genética , Virus de la Enfermedad Equina Africana/metabolismo , Virus de la Enfermedad Equina Africana/patogenicidad , Ceratopogonidae , Europa (Continente) , Caballos/genética , ARN Mensajero/genética , Receptor de Interferón alfa y beta/genética , Receptor de Interferón alfa y beta/inmunología
8.
J Virol ; 96(6): e0172421, 2022 03 23.
Artículo en Inglés | MEDLINE | ID: mdl-35045268

RESUMEN

Previous studies by our group identified a highly efficacious vaccine 0ΔNLS (deficient in the nuclear localization signal of infected cell protein 0) against herpes simplex virus 1 (HSV-1) in an experimental ocular mouse model. However, details regarding fundamental differences in the initial innate and adaptive host immune response were not explored. Here, we present a side-by-side analysis of the primary infection characterizing differences of the host immune response in mice infected with 0ΔNLS versus the parental, GFP105. The results show that local viral infection and replication are controlled more efficiently in mice exposed to 0ΔNLS versus GFP105 but that the clearance of infectious virus is equivalent when the two groups are compared. Moreover, the 0ΔNLS-infected mice displayed enhanced effector CD8+ but not CD4+ T cell responses from the draining lymph nodes at day 7 postinfection measured by gamma interferon (IFN-γ) and tumor necrosis factor alpha production along with changes in cell metabolism. The increased effector function of CD8+ T cells from 0ΔNLS-infected mice was not driven by changes in antigen presentation but lost in the absence of a functional type I IFN pathway. These results are further supported by enhanced local expression of type I IFN and IFN-inducible genes along with increased IL-12 production by CD8α+ dendritic cells in the draining lymph nodes of 0ΔNLS-infected mice compared to the GFP105-infected animals. It was also noted the recall to HSV-1 antigen by CD8+ T cells was elevated in mice infected with HSV-1 0ΔNLS compared to GFP105. Collectively, the results underscore the favorable qualities of HSV-1 0ΔNLS as a candidate vaccine against HSV-1 infection. IMPORTANCE Cytotoxic T lymphocytes (CTLs) play a critical role in the clearance for many viral pathogens including herpes simplex virus 1 (HSV-1). Here, we compared the cellular innate and adaptive immune response in mice infected with an attenuated HSV-1 (0ΔNLS) found to be a highly successful experimental prophylactic vaccine to parental HSV-1 virus. We found that CD8+ T cell effector function is elevated in 0ΔNLS-infected mice through noncognate signals, including interleukin-12 and type I interferon pathways along with changes in CD8+ T cell metabolism, whereas other factors, including cell proliferation, costimulatory molecule expression, and antigen presentation, were dispensable. Thus, an increase in CTL activity established by exposure to HSV-1 0ΔNLS in comparison to parental HSV-1 likely contributes to the efficacy of the vaccine and underscores the nature of the attenuated virus as a vaccine candidate for HSV-1 infection.


Asunto(s)
Linfocitos T CD8-positivos , Vacunas contra el Virus del Herpes Simple , Herpesvirus Humano 1 , Animales , Linfocitos T CD8-positivos/inmunología , Herpes Simple/inmunología , Vacunas contra el Virus del Herpes Simple/inmunología , Interferón gamma/inmunología , Ratones , Ratones Endogámicos C57BL , Receptor de Interferón alfa y beta/inmunología
9.
Nat Immunol ; 13(2): 181-7, 2011 Dec 18.
Artículo en Inglés | MEDLINE | ID: mdl-22179202

RESUMEN

Thymic output is a dynamic process, with high activity at birth punctuated by transient periods of involution during infection. Interferon-α (IFN-α) is a critical molecular mediator of pathogen-induced thymic involution, yet despite the importance of thymic involution, relatively little is known about the molecular integrators that establish sensitivity. Here we found that the microRNA network dependent on the endoribonuclease Dicer, and specifically microRNA miR-29a, was critical for diminishing the sensitivity of the thymic epithelium to simulated infection signals, protecting the thymus against inappropriate involution. In the absence of Dicer or the miR-29a cluster in the thymic epithelium, expression of the IFN-α receptor by the thymic epithelium was higher, which allowed suboptimal signals to trigger rapid loss of thymic cellularity.


Asunto(s)
ARN Helicasas DEAD-box/inmunología , MicroARNs/inmunología , Receptor de Interferón alfa y beta/inmunología , Ribonucleasa III/inmunología , Timo/inmunología , Animales , Artritis/genética , Artritis/inmunología , ARN Helicasas DEAD-box/genética , Femenino , Factores de Transcripción Forkhead/genética , Factores de Transcripción Forkhead/inmunología , Masculino , Ratones , Ribonucleasa III/genética , Timo/citología
10.
Immunity ; 40(6): 861-2, 2014 Jun 19.
Artículo en Inglés | MEDLINE | ID: mdl-24950208

RESUMEN

In this issue of Immunity, Crouse et al., (2014) and Xu et al., (2014), show that by modulating the expression of natural killer (NK) cell receptor ligands, type I interferons protect responding T cells against culling by NK cells.


Asunto(s)
Antígenos Ly/inmunología , Linfocitos T CD8-positivos/inmunología , Citotoxicidad Inmunológica , Interferón Tipo I/inmunología , Células Asesinas Naturales/inmunología , Coriomeningitis Linfocítica/inmunología , Receptor 1 Gatillante de la Citotoxidad Natural/inmunología , Receptor de Interferón alfa y beta/genética , Receptor de Interferón alfa y beta/inmunología , Animales
11.
Immunity ; 40(6): 949-60, 2014 Jun 19.
Artículo en Inglés | MEDLINE | ID: mdl-24909887

RESUMEN

Despite development of new antiviral drugs, viral infections are still a major health problem. The most potent antiviral defense mechanism is the innate production of type I interferon (IFN-I), which not only limits virus replication but also promotes antiviral T cell immunity through mechanisms, which remain insufficiently studied. Using the murine lymphocytic choriomeningitis virus model system, we show here that IFN-I signaling on T cells prevented their rapid elimination in vivo. Microarray analyses uncovered that IFN-I triggered the expression of selected inhibitory NK-cell-receptor ligands. Consequently, T cell immunity of IFN-I receptor (IFNAR)-deficient T cells could be restored by NK cell depletion or in NK-cell-deficient hosts (Nfil3(-/-)). The elimination of Ifnar1(-/-) T cells was dependent on NK-cell-mediated perforin expression. In summary, we identified IFN-I as a key player regulating the protection of T cells against regulatory NK cell function.


Asunto(s)
Linfocitos T CD8-positivos/inmunología , Citotoxicidad Inmunológica , Interferón Tipo I/inmunología , Células Asesinas Naturales/inmunología , Coriomeningitis Linfocítica/inmunología , Receptor de Interferón alfa y beta/inmunología , Animales , Factores de Transcripción con Cremalleras de Leucina de Carácter Básico/genética , Células Cultivadas , Inmunidad Innata , Coriomeningitis Linfocítica/virología , Virus de la Coriomeningitis Linfocítica/inmunología , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Perforina/biosíntesis , Receptor de Interferón alfa y beta/genética , Transducción de Señal/inmunología , Replicación Viral/inmunología
12.
Immunity ; 41(5): 843-52, 2014 Nov 20.
Artículo en Inglés | MEDLINE | ID: mdl-25517616

RESUMEN

Ionizing radiation-mediated tumor regression depends on type I interferon (IFN) and the adaptive immune response, but several pathways control I IFN induction. Here, we demonstrate that adaptor protein STING, but not MyD88, is required for type I IFN-dependent antitumor effects of radiation. In dendritic cells (DCs), STING was required for IFN-? induction in response to irradiated-tumor cells. The cytosolic DNA sensor cyclic GMP-AMP (cGAMP) synthase (cGAS) mediated sensing of irradiated-tumor cells in DCs. Moreover, STING was essential for radiation-induced adaptive immune responses, which relied on type I IFN signaling on DCs. Exogenous IFN-? treatment rescued the cross-priming by cGAS or STING-deficient DCs. Accordingly, activation of STING by a second messenger cGAMP administration enhanced antitumor immunity induced by radiation. Thus radiation-mediated antitumor immunity in immunogenic tumors requires a functional cytosolic DNA-sensing pathway and suggests that cGAMP treatment might provide a new strategy to improve radiotherapy.


Asunto(s)
ADN/inmunología , Proteínas de la Membrana/genética , Neoplasias/radioterapia , Nucleotidiltransferasas/inmunología , Inmunidad Adaptativa , Proteínas Adaptadoras del Transporte Vesicular/genética , Animales , Antineoplásicos/farmacología , Células Cultivadas , Reactividad Cruzada/inmunología , Células Dendríticas/inmunología , Inmunidad Innata , Interferón beta/biosíntesis , Interferón beta/inmunología , Interferón beta/farmacología , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Factor 88 de Diferenciación Mieloide/genética , Neoplasias/inmunología , Nucleótidos Cíclicos/farmacología , Interferencia de ARN , ARN Interferente Pequeño , Radiación Ionizante , Receptor de Interferón alfa y beta/genética , Receptor de Interferón alfa y beta/inmunología , Transducción de Señal/inmunología , Xantonas/farmacología
13.
Cell Mol Life Sci ; 79(2): 83, 2022 Jan 20.
Artículo en Inglés | MEDLINE | ID: mdl-35048182

RESUMEN

Breast cancer is the leading cause of cancer death in female. Until now, advanced breast cancer is still lack effective treatment strategies and reliable prognostic markers. In the present article, we introduced the physiologic and pathologic functions and regulation mechanisms of ZBTB28, a tumor suppressor gene, in breast cancer. ZBTB28 is frequently silenced in breast cancer due to promoter CpG methylation, and its expression is positively correlated with breast cancer patient survival. The antineoplastic effect of ZBTB28 in breast cancer was elucidated through a series of in vitro and in vivo measurements, including cell proliferation, apoptosis, cell cycle, epithelial mesenchymal transition (EMT), and growth of xenografts. Furthermore, ZBTB28 can directly regulate IFNAR to activate interferon-stimulated genes and potentiate macrophage activation. Ectopic ZBTB28 expression in breast cancer cells was sufficient to downregulate CD24 and CD47 to promote phagocytosis of macrophages, demonstrating that ZBTB28 was beneficial for the combination treatment of anti-CD24 and anti-CD47. Collectively, our results reveal a mode of action of ZBTB28 as a tumor suppressor gene and suggest that ZBTB28 is an important regulator of macrophage phagocytosis in breast cancer, holding promise for the development of novel therapy strategies for breast cancer patients.


Asunto(s)
Neoplasias de la Mama/genética , Antígeno CD24/genética , Antígeno CD47/genética , Fagocitosis , Receptor de Interferón alfa y beta/genética , Proteínas Represoras/genética , Animales , Neoplasias de la Mama/inmunología , Antígeno CD24/inmunología , Antígeno CD47/inmunología , Línea Celular Tumoral , Femenino , Regulación Neoplásica de la Expresión Génica , Humanos , Activación de Macrófagos , Macrófagos/inmunología , Macrófagos/metabolismo , Ratones Endogámicos BALB C , Ratones Desnudos , Receptor de Interferón alfa y beta/inmunología , Proteínas Represoras/inmunología , Células THP-1
14.
PLoS Genet ; 16(10): e1009199, 2020 10.
Artículo en Inglés | MEDLINE | ID: mdl-33104735

RESUMEN

Interferons (IFNs) are cytokines that are central to the host defence against viruses and other microorganisms. If not properly regulated, IFNs may contribute to the pathogenesis of inflammatory autoimmune, or infectious diseases. To identify genetic polymorphisms regulating the IFN system we performed an unbiased genome-wide protein-quantitative trait loci (pQTL) mapping of cell-type specific type I and type II IFN receptor levels and their responses in immune cells from 303 healthy individuals. Seven genome-wide significant (p < 5.0E-8) pQTLs were identified. Two independent SNPs that tagged the multiple sclerosis (MS)-protective HLA class I alleles A*02/A*68 and B*44, respectively, were associated with increased levels of IFNAR2 in B and T cells, with the most prominent effect in IgD-CD27+ memory B cells. The increased IFNAR2 levels in B cells were replicated in cells from an independent set of healthy individuals and in MS patients. Despite increased IFNAR2 levels, B and T cells carrying the MS-protective alleles displayed a reduced response to type I IFN stimulation. Expression and methylation-QTL analysis demonstrated increased mRNA expression of the pseudogene HLA-J in B cells carrying the MS-protective class I alleles, possibly driven via methylation-dependent transcriptional regulation. Together these data suggest that the MS-protective effects of HLA class I alleles are unrelated to their antigen-presenting function, and propose a previously unappreciated function of type I IFN signalling in B and T cells in MS immune-pathogenesis.


Asunto(s)
Predisposición Genética a la Enfermedad , Antígeno HLA-A2/genética , Esclerosis Múltiple/genética , Sitios de Carácter Cuantitativo/genética , Adulto , Anciano , Anciano de 80 o más Años , Alelos , Linfocitos B/inmunología , Linfocitos B/patología , Femenino , Citometría de Flujo , Antígeno HLA-A2/inmunología , Humanos , Interferón Tipo I/genética , Interferón Tipo I/inmunología , Interferón gamma/genética , Interferón gamma/inmunología , Células Asesinas Naturales/inmunología , Masculino , Persona de Mediana Edad , Esclerosis Múltiple/epidemiología , Esclerosis Múltiple/inmunología , Esclerosis Múltiple/patología , Polimorfismo de Nucleótido Simple/genética , Receptor de Interferón alfa y beta/genética , Receptor de Interferón alfa y beta/inmunología , Receptores de Interferón/genética , Receptores de Interferón/inmunología , Linfocitos T/inmunología , Linfocitos T/patología
15.
Eur J Immunol ; 51(12): 3186-3193, 2021 12.
Artículo en Inglés | MEDLINE | ID: mdl-34624928

RESUMEN

Interleukin (IL)-17-producing gamma delta (γδ) T (γδT17) cells are an essential part of innate type 3 immunity against numerous pathogens. At the same time, a large body of evidence from mouse models and human clinical studies suggests that γδT17 cells contribute to the pathogenesis of many inflammatory diseases as well as cancer. It is therefore relevant to elucidate their immunobiology in detail and identify molecules and pathways that can regulate their function. Herein, we investigated the importance of the type I interferon (IFN) signaling system in γδT17 homeostasis and activation. We found that the IFN alpha receptor 1 (IFNAR1) was critical to maintain their normal homeostasis and to promote their activation during cutaneous inflammation. However, this did not require γδT17-intrinsic expression of IFNAR1. In contrast, expression of IFNAR1 by γδT17 cells was required in order to suppress IL-17 production during viral infection. Our data delineate direct from indirect IFNAR1 signaling and reveal an important immunoregulatory role for both tonic and inducible type I IFN in γδT17 cells.


Asunto(s)
Interferón Tipo I/inmunología , Activación de Linfocitos , Receptor de Interferón alfa y beta/inmunología , Receptores de Antígenos de Linfocitos T gamma-delta/inmunología , Transducción de Señal/inmunología , Linfocitos T/inmunología , Animales , Interferón Tipo I/genética , Ratones , Ratones Noqueados , Receptor de Interferón alfa y beta/genética , Receptores de Antígenos de Linfocitos T gamma-delta/genética , Transducción de Señal/genética
16.
J Virol ; 95(4)2021 01 28.
Artículo en Inglés | MEDLINE | ID: mdl-33208448

RESUMEN

Mammalian orthoreovirus (reovirus) spreads from the site of infection to every organ system in the body via the blood. However, mechanisms that underlie reovirus hematogenous spread remain undefined. Nonstructural protein σ1s is a critical determinant of reovirus bloodstream dissemination that is required for efficient viral replication in many types of cultured cells. Here, we used the specificity of the σ1s protein for promoting hematogenous spread as a platform to uncover a role for lymphatic type 1 interferon (IFN-1) responses in limiting reovirus systemic dissemination. We found that replication of a σ1s-deficient reovirus was restored to wild-type levels in cells with defective interferon-α receptor (IFNAR1) signaling. Reovirus spreads systemically following oral inoculation of neonatal mice, whereas the σ1s-null virus remains localized to the intestine. We found that σ1s enables reovirus spread in the presence of a functional IFN-1 response, as the σ1s-deficient reovirus disseminated comparably to wild-type virus in IFNAR1-/- mice. Lymphatics are hypothesized to mediate reovirus spread from the intestine to the bloodstream. IFNAR1 deletion from cells expressing lymphatic vessel endothelium receptor 1 (LYVE-1), a marker for lymphatic endothelial cells, enabled the σ1s-deficient reovirus to disseminate systemically. Together, our findings indicate that IFN-1 responses in lymphatics limit reovirus dissemination. Our data further suggest that the lymphatics are an important conduit for reovirus hematogenous spread.IMPORTANCE Type 1 interferons (IFN-1) are critical host responses to viral infection. However, the contribution of IFN-1 responses to control of viruses in specific cell and tissue types is not fully defined. Here, we identify IFN-1 responses in lymphatics as important for limiting reovirus dissemination. We found that nonstructural protein σ1s enhances reovirus resistance to IFN-1 responses, as a reovirus mutant lacking σ1s was more sensitive to IFN-1 than wild-type virus. In neonatal mice, σ1s is required for reovirus systemic spread. We used tissue-specific IFNAR1 deletion in combination with the IFN-1-sensitive σ1s-null reovirus as a tool to test how IFN-1 responses in lymphatics affect reovirus systemic spread. Deletion of IFNAR1 in lymphatic cells using Cre-lox technology enabled dissemination of the IFN-1-sensitive σ1s-deficient reovirus. Together, our results indicate that IFN-1 responses in lymphatics are critical for controlling reovirus systemic spread.


Asunto(s)
Células Endoteliales/inmunología , Interferón Tipo I/inmunología , Orthoreovirus de los Mamíferos/fisiología , Receptor de Interferón alfa y beta/inmunología , Infecciones por Reoviridae , Proteínas no Estructurales Virales/inmunología , Animales , Animales Recién Nacidos , Células Endoteliales/citología , Fibroblastos , Células HEK293 , Humanos , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Infecciones por Reoviridae/inmunología , Infecciones por Reoviridae/virología
17.
J Neurosci ; 40(11): 2357-2370, 2020 03 11.
Artículo en Inglés | MEDLINE | ID: mdl-32029532

RESUMEN

DNA damage and type I interferons (IFNs) contribute to inflammatory responses after traumatic brain injury (TBI). TBI-induced activation of microglia and peripherally-derived inflammatory macrophages may lead to tissue damage and neurological deficits. Here, we investigated the role of IFN-ß in secondary injury after TBI using a controlled cortical impact model in adult male IFN-ß-deficient (IFN-ß-/-) mice and assessed post-traumatic neuroinflammatory responses, neuropathology, and long-term functional recovery. TBI increased expression of DNA sensors cyclic GMP-AMP synthase and stimulator of interferon genes in wild-type (WT) mice. IFN-ß and other IFN-related and neuroinflammatory genes were also upregulated early and persistently after TBI. TBI increased expression of proinflammatory mediators in the cortex and hippocampus of WT mice, whereas levels were mitigated in IFN-ß-/- mice. Moreover, long-term microglia activation, motor, and cognitive function impairments were decreased in IFN-ß-/- TBI mice compared with their injured WT counterparts; improved neurological recovery was associated with reduced lesion volume and hippocampal neurodegeneration in IFN-ß-/- mice. Continuous central administration of a neutralizing antibody to the IFN-α/ß receptor (IFNAR) for 3 d, beginning 30 min post-injury, reversed early cognitive impairments in TBI mice and led to transient improvements in motor function. However, anti-IFNAR treatment did not improve long-term functional recovery or decrease TBI neuropathology at 28 d post-injury. In summary, TBI induces a robust neuroinflammatory response that is associated with increased expression of IFN-ß and other IFN-related genes. Inhibition of IFN-ß reduces post-traumatic neuroinflammation and neurodegeneration, resulting in improved neurological recovery. Thus, IFN-ß may be a potential therapeutic target for TBI.SIGNIFICANCE STATEMENT TBI frequently causes long-term neurological and psychiatric changes in head injury patients. TBI-induced secondary injury processes including persistent neuroinflammation evolve over time and can contribute to chronic neurological impairments. The present study demonstrates that TBI is followed by robust activation of type I IFN pathways, which have been implicated in microglial-associated neuroinflammation and chronic neurodegeneration. We examined the effects of genetic or pharmacological inhibition of IFN-ß, a key component of type I IFN mechanisms to address its role in TBI pathophysiology. Inhibition of IFN-ß signaling resulted in reduced neuroinflammation, attenuated neurobehavioral deficits, and limited tissue loss long after TBI. These preclinical findings suggest that IFN-ß may be a potential therapeutic target for TBI.


Asunto(s)
Daño Encefálico Crónico/fisiopatología , Lesiones Traumáticas del Encéfalo/fisiopatología , Interferón beta/fisiología , Degeneración Nerviosa/etiología , Animales , Daño Encefálico Crónico/etiología , Lesiones Traumáticas del Encéfalo/complicaciones , Corteza Cerebral/metabolismo , Conducta Exploratoria/fisiología , Regulación de la Expresión Génica , Hipocampo/metabolismo , Inflamación , Interferón beta/biosíntesis , Interferón beta/deficiencia , Interferón beta/genética , Masculino , Aprendizaje por Laberinto/fisiología , Trastornos de la Memoria/etiología , Trastornos de la Memoria/fisiopatología , Ratones , Ratones Endogámicos C57BL , Microglía/fisiología , Trastornos del Movimiento/etiología , Trastornos del Movimiento/fisiopatología , Distribución Aleatoria , Receptor de Interferón alfa y beta/inmunología , Transducción de Señal , Regulación hacia Arriba
18.
Cell Physiol Biochem ; 55(3): 256-264, 2021 May 14.
Artículo en Inglés | MEDLINE | ID: mdl-33984198

RESUMEN

BACKGROUND/AIMS: During an immune response, type I interferon (IFN-I) signaling induces a wide range of changes, including those which are required to overcome viral infection and those which suppress cytotoxic T cells to avoid immunopathology. During certain bacterial infections, IFN-I signaling exerts largely detrimental effects. Although the IFN-I family of proteins all share one common receptor, biologic responses to signaling vary depending on IFN-I subtype. Here, we asked if one IFN-I subtype dominates the pro-bacterial effect of IFN-I signaling and found that control of Listeria monocytogenes (L.m.) infection is more strongly suppressed by IFN-ß than IFN-α. METHODS: To study this, we measured bacterial titers in IFNAR-/-, IFN-ß­/­, Stat2-/-, Usp18fl/fl and Usp18fl/fl x CD11c-Cre mice models in addition to IFN-I blocking antibodies. Moreover, we measured interferon stimulated genes in bone marrow derived dendritic cells after treatment with IFN-α4 and IFN-ß. RESULTS: Specifically, we show that genetic deletion of IFN-ß or antibody-mediated IFN-ß neutralization was sufficient to reduce bacterial titers to levels similar to those observed in mice that completely lack IFN-I signaling (IFNAR-/- mice). However, IFN-α blockade failed to significantly reduce L.m. titers, suggesting that IFN-ß is the dominant IFN-I subtype responsible for the pro-bacterial effect of IFN-I. Mechanistically, when focusing on IFN-I signals to dendritic cells, we found that IFN-ß induces ISGs more robustly than IFN-α, including USP18, the protein we previously identified as driving the pro-bacterial effects of IFN-I. Further, we found that this induction was STAT1/STAT2 heterodimer- or STAT2/STAT2 homodimer-dependent, as STAT2-deficient mice were more resistant to L.m. infection. CONCLUSION: In conclusion, IFN-Β is the principal member of the IFN-I family responsible for driving the pro-bacterial effect of IFN-I.


Asunto(s)
Interferón-alfa/inmunología , Interferón beta/inmunología , Listeria monocytogenes/inmunología , Listeriosis/inmunología , Animales , Femenino , Interferón-alfa/genética , Interferón beta/genética , Listeriosis/genética , Masculino , Ratones , Ratones Noqueados , Receptor de Interferón alfa y beta/deficiencia , Receptor de Interferón alfa y beta/inmunología
19.
Cancer Immunol Immunother ; 70(8): 2125-2138, 2021 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-33449132

RESUMEN

Competent type I IFN signaling is the lynchpin of most immune surveillance mechanisms and has recently proven critical to the efficacy of several anticancer agents. Expression of the type I IFN receptor, IFNAR, underpins type I IFN responsiveness in all cells and facilitates the activation and cytotoxic potential of lymphocytes, while loss of IFNAR on lymphocytes has previously been associated with tumor progression and poor patient survival. This study underscores the importance of intact type I IFN signaling to NK cells in the regulation of tumorigenesis and metastasis, whereby ablation of NK cell IFNAR1 impairs antitumor activity and tumor clearance. Using a preclinical model of triple negative breast cancer, we identified that intact IFNAR on NK cells is required for an effective response to type I IFN-inducing immunotherapeutics that may be mediated by pathways associated with NK cell degranulation. Taken together, these data provide a rationale for considering the IFNAR status on NK cells when devising therapeutic strategies aimed at inducing systemic type I IFN signaling in breast cancer.


Asunto(s)
Neoplasias de la Mama/inmunología , Interferón Tipo I/inmunología , Células Asesinas Naturales/inmunología , Animales , Carcinogénesis/inmunología , Línea Celular Tumoral , Femenino , Activación de Linfocitos/inmunología , Linfocitos/inmunología , Ratones , Ratones Endogámicos C57BL , Receptor de Interferón alfa y beta/inmunología , Transducción de Señal/inmunología
20.
J Neuroinflammation ; 18(1): 136, 2021 Jun 15.
Artículo en Inglés | MEDLINE | ID: mdl-34130738

RESUMEN

BACKGROUND: The crucial role of type I interferon (IFN-I, IFN-α/ß) is well known to control central nervous system (CNS) neuroinflammation caused by neurotrophic flaviviruses such as Japanese encephalitis virus (JEV) and West Nile virus. However, an in-depth analysis of IFN-I signal-dependent cellular factors that govern CNS-restricted tropism in JEV infection in vivo remains to be elucidated. METHODS: Viral dissemination, tissue tropism, and cytokine production were examined in IFN-I signal-competent and -incompetent mice after JEV inoculation in tissues distal from the CNS such as the footpad. Bone marrow (BM) chimeric models were used for defining hematopoietic and tissue-resident cells in viral dissemination and tissue tropism. RESULTS: The paradoxical and interesting finding was that IFN-I signaling was essentially required for CNS neuroinflammation following JEV inoculation in distal footpad tissue. IFN-I signal-competent mice died after a prolonged neurological illness, but IFN-I signal-incompetent mice all succumbed without neurological signs. Rather, IFN-I signal-incompetent mice developed hemorrhage-like disease as evidenced by thrombocytopenia, functional injury of the liver and kidney, increased vascular leakage, and excessive cytokine production. This hemorrhage-like disease was closely associated with quick viral dissemination and impaired IFN-I innate responses before invasion of JEV into the CNS. Using bone marrow (BM) chimeric models, we found that intrinsic IFN-I signaling in tissue-resident cells in peripheral organs played a major role in inducing the hemorrhage-like disease because IFN-I signal-incompetent recipients of BM cells from IFN-I signal-competent mice showed enhanced viral dissemination, uncontrolled cytokine production, and increased vascular leakage. IFN-I signal-deficient hepatocytes and enterocytes were permissive to JEV replication with impaired induction of antiviral IFN-stimulated genes, and neuron cells derived from both IFN-I signal-competent and -incompetent mice were vulnerable to JEV replication. Finally, circulating CD11b+Ly-6C+ monocytes infiltrated into the distal tissues inoculated by JEV participated in quick viral dissemination to peripheral organs of IFN-I signal-incompetent mice at an early stage. CONCLUSION: An IFN-I signal-dependent model is proposed to demonstrate how CD11b+Ly-6C+ monocytes are involved in restricting the tissue tropism of JEV to the CNS.


Asunto(s)
Antígeno CD11b/inmunología , Virus de la Encefalitis Japonesa (Especie)/inmunología , Interferón Tipo I/inmunología , Interferón Tipo I/metabolismo , Monocitos/inmunología , Monocitos/microbiología , Receptor de Interferón alfa y beta , Animales , Sistema Nervioso Central/microbiología , Sistema Nervioso Central/patología , Síndrome de Liberación de Citoquinas/inmunología , Síndrome de Liberación de Citoquinas/microbiología , Modelos Animales de Enfermedad , Virus de la Encefalitis Japonesa (Especie)/patogenicidad , Encefalitis Japonesa/inmunología , Encefalitis Japonesa/microbiología , Hemorragia/inmunología , Hemorragia/microbiología , Interacciones Huésped-Patógeno , Mediadores de Inflamación/inmunología , Tejido Linfoide/inmunología , Tejido Linfoide/patología , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Receptor de Interferón alfa y beta/genética , Receptor de Interferón alfa y beta/inmunología , Receptor de Interferón alfa y beta/metabolismo , Transducción de Señal/inmunología , Tropismo Viral
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