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1.
Nat Immunol ; 21(11): 1397-1407, 2020 11.
Article in English | MEDLINE | ID: mdl-32989328

ABSTRACT

Antiviral CD8+ T cell responses are characterized by an initial activation/priming of T lymphocytes followed by a massive proliferation, subset differentiation, population contraction and the development of a stable memory pool. The transcription factor BATF3 has been shown to play a central role in the development of conventional dendritic cells, which in turn are critical for optimal priming of CD8+ T cells. Here we show that BATF3 was expressed transiently within the first days after T cell priming and had long-lasting T cell-intrinsic effects. T cells that lacked Batf3 showed normal expansion and differentiation, yet succumbed to an aggravated contraction and had a diminished memory response. Vice versa, BATF3 overexpression in CD8+ T cells promoted their survival and transition to memory. Mechanistically, BATF3 regulated T cell apoptosis and longevity via the proapoptotic factor BIM. By programing CD8+ T cell survival and memory, BATF3 is a promising molecule to optimize adoptive T cell therapy in patients.


Subject(s)
Basic-Leucine Zipper Transcription Factors/genetics , CD8-Positive T-Lymphocytes/immunology , CD8-Positive T-Lymphocytes/metabolism , Cellular Reprogramming/genetics , Immunologic Memory/genetics , Repressor Proteins/genetics , Animals , Basic-Leucine Zipper Transcription Factors/metabolism , Cell Differentiation , Cell Survival/genetics , Gene Expression , Humans , Immunophenotyping , Mice , Mice, Knockout , Mice, Transgenic , Repressor Proteins/metabolism , Transcription Factors/genetics , Transcription Factors/metabolism
2.
Immunity ; 55(4): 656-670.e8, 2022 04 12.
Article in English | MEDLINE | ID: mdl-35366396

ABSTRACT

Reinvigoration of exhausted CD8+ T (Tex) cells by checkpoint immunotherapy depends on the activation of precursors of exhausted T (Tpex) cells, but the local anatomical context of their maintenance, differentiation, and interplay with other cells is not well understood. Here, we identified transcriptionally distinct Tpex subpopulations, mapped their differentiation trajectories via transitory cellular states toward Tex cells, and localized these cell states to specific splenic niches. Conventional dendritic cells (cDCs) were critical for successful αPD-L1 therapy and were required to mediate viral control. cDC1s were dispensable for Tpex cell expansion but provided an essential niche to promote Tpex cell maintenance, preventing their overactivation and T-cell-mediated immunopathology. Mechanistically, cDC1s insulated Tpex cells via MHC-I-dependent interactions to prevent their activation within other inflammatory environments that further aggravated their exhaustion. Our findings reveal that cDC1s maintain and safeguard Tpex cells within distinct anatomical niches to balance viral control, exhaustion, and immunopathology.


Subject(s)
CD8-Positive T-Lymphocytes , Dendritic Cells , Cell Differentiation , Immunotherapy , Lymphocyte Count
3.
Cell ; 162(6): 1322-37, 2015 Sep 10.
Article in English | MEDLINE | ID: mdl-26296422

ABSTRACT

Host defense against viruses and intracellular parasites depends on effector CD8(+) T cells, whose optimal clonal expansion, differentiation, and memory properties require signals from CD4(+) T cells. Here, we addressed the role of dendritic cell (DC) subsets in initial activation of the two T cell types and their co-operation. Surprisingly, initial priming of CD4(+) and CD8(+) T cells was spatially segregated within the lymph node and occurred on different DCs with temporally distinct patterns of antigen presentation via MHCI versus MHCII molecules. DCs that co-present antigen via both MHC molecules were detected at a later stage; these XCR1(+) DCs are the critical platform involved in CD4(+) T cell augmentation of CD8(+) T cell responses. These findings delineate the complex choreography of cellular interactions underlying effective cell-mediated anti-viral responses, with implications for basic DC subset biology, as well as for translational application to the development of vaccines that evoke optimal T cell immunity.


Subject(s)
CD4-Positive T-Lymphocytes/immunology , CD8-Positive T-Lymphocytes/immunology , Cell Communication , Dendritic Cells/immunology , Vaccinia virus/physiology , Vaccinia/immunology , Animals , Antigen Presentation , Antigens, Viral/immunology , Dendritic Cells/cytology , Lymph Nodes/cytology , Lymph Nodes/immunology , Mice , Receptors, Chemokine/genetics , Spleen/cytology , Spleen/immunology
4.
Cell ; 156(3): 456-68, 2014 Jan 30.
Article in English | MEDLINE | ID: mdl-24485454

ABSTRACT

The phagocytes of the innate immune system, macrophages and neutrophils, contribute to antibacterial defense, but their functional specialization and cooperation is unclear. Here, we report that three distinct phagocyte subsets play highly coordinated roles in bacterial urinary tract infection. Ly6C(-) macrophages acted as tissue-resident sentinels that attracted circulating neutrophils and Ly6C(+) macrophages. Such Ly6C(+) macrophages played a previously undescribed helper role: once recruited to the site of infection, they produced the cytokine TNF, which caused Ly6C(-) macrophages to secrete CXCL2. This chemokine activated matrix metalloproteinase-9 in neutrophils, allowing their entry into the uroepithelium to combat the bacteria. In summary, the sentinel macrophages elicit the powerful antibacterial functions of neutrophils only after confirmation by the helper macrophages, reminiscent of the licensing role of helper T cells in antiviral adaptive immunity. These findings identify helper macrophages and TNF as critical regulators in innate immunity against bacterial infections in epithelia.


Subject(s)
Bacterial Infections/immunology , Macrophages/immunology , Neutrophils/immunology , Urinary Tract Infections/immunology , Animals , Antigens, Ly/metabolism , Chemokine CXCL2/immunology , Female , Immune System Diseases , Kinetics , Leukocyte Disorders , Macrophages/cytology , Matrix Metalloproteinase 9/metabolism , Mice , Neutrophils/cytology , Specific Pathogen-Free Organisms , Tumor Necrosis Factor-alpha/immunology
5.
Nat Immunol ; 17(1): 57-64, 2016 Jan.
Article in English | MEDLINE | ID: mdl-26523868

ABSTRACT

Rapid activation of memory CD4(+) T helper 2 (TH2) cells during allergic inflammation requires their recruitment into the affected tissue. Here we demonstrate that group 2 innate lymphoid (ILC2) cells have a crucial role in memory TH2 cell responses, with targeted depletion of ILC2 cells profoundly impairing TH2 cell localization to the lungs and skin of sensitized mice after allergen re-challenge. ILC2-derived interleukin 13 (IL-13) is critical for eliciting production of the TH2 cell-attracting chemokine CCL17 by IRF4(+)CD11b(+)CD103(-) dendritic cells (DCs). Consequently, the sentinel function of DCs is contingent on ILC2 cells for the generation of an efficient memory TH2 cell response. These results elucidate a key innate mechanism in the regulation of the immune memory response to allergens.


Subject(s)
Dendritic Cells/immunology , Hypersensitivity/immunology , Immunologic Memory/immunology , Lymphocyte Activation/immunology , Lymphocytes/immunology , Th2 Cells/immunology , Animals , Disease Models, Animal , Flow Cytometry , Immunity, Innate/immunology , Mice , Mice, Inbred C57BL , Mice, Transgenic , Oligonucleotide Array Sequence Analysis
6.
Nature ; 609(7928): 801-807, 2022 09.
Article in English | MEDLINE | ID: mdl-35901960

ABSTRACT

Anorexia and fasting are host adaptations to acute infection, and induce a metabolic switch towards ketogenesis and the production of ketone bodies, including ß-hydroxybutyrate (BHB)1-6. However, whether ketogenesis metabolically influences the immune response in pulmonary infections remains unclear. Here we show that the production of BHB is impaired in individuals with SARS-CoV-2-induced acute respiratory distress syndrome (ARDS) but not in those with  influenza-induced ARDS. We found that BHB promotes both the survival of and the production of interferon-γ by CD4+ T cells. Applying a metabolic-tracing analysis, we established that BHB provides an alternative carbon source to fuel oxidative phosphorylation (OXPHOS) and the production of bioenergetic amino acids and glutathione, which is important for maintaining the redox balance. T cells from patients with SARS-CoV-2-induced ARDS were exhausted and skewed towards glycolysis, but could be metabolically reprogrammed by BHB to perform OXPHOS, thereby increasing their functionality. Finally, we show in mice that a ketogenic diet and the delivery of BHB as a ketone ester drink restores CD4+ T cell metabolism and function in severe respiratory infections, ultimately reducing the mortality of mice infected with SARS-CoV-2. Altogether, our data reveal that BHB is an alternative source of carbon that promotes T cell responses in pulmonary viral infections, and highlight impaired ketogenesis as a potential confounding factor in severe COVID-19.


Subject(s)
COVID-19 , Energy Metabolism , Ketones , Respiratory Distress Syndrome , SARS-CoV-2 , T-Lymphocytes , 3-Hydroxybutyric Acid/biosynthesis , 3-Hydroxybutyric Acid/metabolism , Amino Acids/biosynthesis , Amino Acids/metabolism , Animals , COVID-19/complications , COVID-19/immunology , COVID-19/pathology , Diet, Ketogenic , Esters/metabolism , Glutathione/biosynthesis , Glutathione/metabolism , Glycolysis , Interferon-gamma/biosynthesis , Ketone Bodies/metabolism , Ketones/metabolism , Mice , Orthomyxoviridae/pathogenicity , Oxidation-Reduction , Oxidative Phosphorylation , Respiratory Distress Syndrome/complications , Respiratory Distress Syndrome/immunology , Respiratory Distress Syndrome/metabolism , Respiratory Distress Syndrome/virology , SARS-CoV-2/pathogenicity , T-Lymphocytes/immunology , T-Lymphocytes/metabolism , T-Lymphocytes/pathology
7.
Nat Immunol ; 16(6): 609-17, 2015 Jun.
Article in English | MEDLINE | ID: mdl-25915731

ABSTRACT

Tumor-associated eosinophilia is frequently observed in cancer. However, despite numerous studies of patients with cancer and mouse models of cancer, it has remained uncertain if eosinophils contribute to tumor immunity or are mere bystander cells. Here we report that activated eosinophils were essential for tumor rejection in the presence of tumor-specific CD8(+) T cells. Tumor-homing eosinophils secreted chemoattractants that guided T cells into the tumor, which resulted in tumor eradication and survival. Activated eosinophils initiated substantial changes in the tumor microenvironment, including macrophage polarization and normalization of the tumor vasculature, which are known to promote tumor rejection. Thus, our study presents a new concept for eosinophils in cancer that may lead to novel therapeutic strategies.


Subject(s)
Blood Vessels/immunology , CD8-Positive T-Lymphocytes/immunology , Chemotactic Factors/immunology , Eosinophils/immunology , Melanoma/immunology , Skin Neoplasms/immunology , Animals , Cell Differentiation , Cell Movement , Cytotoxicity, Immunologic , Melanoma/blood supply , Melanoma, Experimental , Mice , Mice, Inbred C57BL , Neoplasm Transplantation , Neovascularization, Pathologic/immunology , Neovascularization, Physiologic , Skin Neoplasms/blood supply , Tumor Burden/immunology , Tumor Microenvironment
8.
Immunity ; 46(2): 205-219, 2017 02 21.
Article in English | MEDLINE | ID: mdl-28190711

ABSTRACT

Adaptive cellular immunity is initiated by antigen-specific interactions between T lymphocytes and dendritic cells (DCs). Plasmacytoid DCs (pDCs) support antiviral immunity by linking innate and adaptive immune responses. Here we examined pDC spatiotemporal dynamics during viral infection to uncover when, where, and how they exert their functions. We found that pDCs accumulated at sites of CD8+ T cell antigen-driven activation in a CCR5-dependent fashion. Furthermore, activated CD8+ T cells orchestrated the local recruitment of lymph node-resident XCR1 chemokine receptor-expressing DCs via secretion of the XCL1 chemokine. Functionally, this CD8+ T cell-mediated reorganization of the local DC network allowed for the interaction and cooperation of pDCs and XCR1+ DCs, thereby optimizing XCR1+ DC maturation and cross-presentation. These data support a model in which CD8+ T cells upon activation create their own optimal priming microenvironment by recruiting additional DC subsets to the site of initial antigen recognition.


Subject(s)
CD8-Positive T-Lymphocytes/immunology , Chemotaxis, Leukocyte/immunology , Cross-Priming/immunology , Dendritic Cells/immunology , Animals , Enzyme-Linked Immunosorbent Assay , Flow Cytometry , Fluorescent Antibody Technique , Mice , Mice, Transgenic
9.
J Immunol ; 212(1): 35-42, 2024 01 01.
Article in English | MEDLINE | ID: mdl-38019126

ABSTRACT

NKT cells are unconventional T cells whose biological role is incompletely understood. Similar to TH cells, activated NKT cells can cause dendritic cell (DC) maturation, which is required for effective CTL responses. However, it is unclear whether and how NKT cells affect CTLs downstream of the DC maturation phase. This is partially due to the lack of techniques to conditionally deplete NKT cells in vivo. To overcome this problem, we have developed two approaches for this purpose in mice: the first is based on mixed bone marrow chimeras where Jα18 knockout and depletable CD90 congenic bone marrow is combined, and the second used PLZFCre × iDTR bone marrow chimeras, which target innate-like T cells. Using these tools, we found that NKT cell depletion at 20 h, that is, after initial DC activation, did not render CTLs helpless, as CD40L signaling by non-NKT cells sufficed. Instead, NKT cell depletion even augmented CD8 T cell expansion and cytotoxicity by mechanisms distinct from reduced STAT6 signaling. These findings revealed a negative feedback loop by which NKT cells control CTL cross-priming downstream of DC maturation. The techniques described in this study expand the toolbox to study NKT cells and other unconventional T cell subsets in vivo and uncovered a hidden immunoregulatory mechanism.


Subject(s)
Cross-Priming , Natural Killer T-Cells , Mice , Animals , Feedback , T-Lymphocytes, Cytotoxic , Mice, Knockout , Dendritic Cells , Mice, Inbred C57BL
10.
Nat Immunol ; 14(6): 574-83, 2013 Jun.
Article in English | MEDLINE | ID: mdl-23584070

ABSTRACT

Chronic infection is difficult to overcome because of exhaustion or depletion of cytotoxic effector CD8(+) T cells (cytotoxic T lymphoytes (CTLs)). Here we report that signaling via Toll-like receptors (TLRs) induced intrahepatic aggregates of myeloid cells that enabled the population expansion of CTLs (iMATEs: 'intrahepatic myeloid-cell aggregates for T cell population expansion') without causing immunopathology. In the liver, CTL proliferation was restricted to iMATEs that were composed of inflammatory monocyte-derived CD11b(+) cells. Signaling via tumor-necrosis factor (TNF) caused iMATE formation that facilitated costimulation dependent on the receptor OX40 for expansion of the CTL population. The iMATEs arose during acute viral infection but were absent during chronic viral infection, yet they were still induced by TLR signaling. Such hepatic expansion of the CTL population controlled chronic viral infection of the liver after vaccination with DNA. Thus, iMATEs are dynamic structures that overcome regulatory cues that limit the population expansion of CTLs during chronic infection and can be used in new therapeutic vaccination strategies.


Subject(s)
CD8-Positive T-Lymphocytes/immunology , Cell Proliferation , Liver Diseases/immunology , Lymphocytic Choriomeningitis/immunology , Myeloid Cells/immunology , T-Lymphocytes, Cytotoxic/immunology , Animals , Animals, Newborn , CD11b Antigen/immunology , CD11b Antigen/metabolism , CD8-Positive T-Lymphocytes/metabolism , Chronic Disease , Flow Cytometry , Green Fluorescent Proteins/genetics , Green Fluorescent Proteins/metabolism , Host-Pathogen Interactions/immunology , Immunotherapy , Liver/immunology , Liver/metabolism , Liver/virology , Liver Diseases/therapy , Liver Diseases/virology , Lymphocytic Choriomeningitis/therapy , Lymphocytic Choriomeningitis/virology , Lymphocytic choriomeningitis virus/immunology , Lymphocytic choriomeningitis virus/physiology , Mice , Mice, Inbred C57BL , Mice, Knockout , Mice, Transgenic , Microscopy, Confocal , Myeloid Cells/metabolism , Receptors, OX40/immunology , Receptors, OX40/metabolism , Signal Transduction/immunology , T-Lymphocytes, Cytotoxic/metabolism , Toll-Like Receptor 9/immunology , Toll-Like Receptor 9/metabolism
11.
Immunity ; 44(6): 1406-21, 2016 06 21.
Article in English | MEDLINE | ID: mdl-27287410

ABSTRACT

Monobenzone is a pro-hapten that is exclusively metabolized by melanocytes, thereby haptenizing melanocyte-specific antigens, which results in cytotoxic autoimmunity specifically against pigmented cells. Studying monobenzone in a setting of contact hypersensitivity (CHS), we observed that monobenzone induced a long-lasting, melanocyte-specific immune response that was dependent on NK cells, yet fully intact in the absence of T- and B cells. Consistent with the concept of "memory NK cells," monobenzone-induced NK cells resided in the liver and transfer of these cells conferred melanocyte-specific immunity to naive animals. Monobenzone-exposed skin displayed macrophage infiltration and cutaneous lymph nodes showed an inflammasome-dependent influx of macrophages with a tissue-resident phenotype, coinciding with local NK cell activation. Indeed, macrophage depletion or the absence of the NLRP3 inflammasome, the adaptor protein ASC or interleukin-18 (IL-18) abolished monobenzone CHS, thereby establishing a non-redundant role for the NLRP3 inflammasome as a critical proinflammatory checkpoint in the induction of hapten-dependent memory NK cells.


Subject(s)
Dermatitis, Contact/immunology , Immunologic Memory , Inflammasomes/immunology , Killer Cells, Natural/immunology , Macrophages/physiology , Melanocytes/immunology , NLR Family, Pyrin Domain-Containing 3 Protein/metabolism , Adaptive Immunity , Animals , Apoptosis Regulatory Proteins/genetics , Apoptosis Regulatory Proteins/metabolism , CARD Signaling Adaptor Proteins , Cells, Cultured , Hydroquinones , Interleukin-18/genetics , Interleukin-18/metabolism , Liver/pathology , Lymphocyte Activation , Mice , Mice, Inbred C57BL , Mice, Knockout , NLR Family, Pyrin Domain-Containing 3 Protein/genetics
12.
Immunity ; 45(2): 389-401, 2016 08 16.
Article in English | MEDLINE | ID: mdl-27521269

ABSTRACT

CD8(+) T cells recognizing tumor-specific antigens are detected in cancer patients but are dysfunctional. Here we developed a tamoxifen-inducible liver cancer mouse model with a defined oncogenic driver antigen (SV40 large T-antigen) to follow the activation and differentiation of naive tumor-specific CD8(+) T (TST) cells after tumor initiation. Early during the pre-malignant phase of tumorigenesis, TST cells became dysfunctional, exhibiting phenotypic, functional, and transcriptional features similar to dysfunctional T cells isolated from late-stage human tumors. Thus, T cell dysfunction seen in advanced human cancers may already be established early during tumorigenesis. Although the TST cell dysfunctional state was initially therapeutically reversible, it ultimately evolved into a fixed state. Persistent antigen exposure rather than factors associated with the tumor microenvironment drove dysfunction. Moreover, the TST cell differentiation and dysfunction program exhibited features distinct from T cell exhaustion in chronic infections. Strategies to overcome this antigen-driven, cell-intrinsic dysfunction may be required to improve cancer immunotherapy.


Subject(s)
Antigens, Polyomavirus Transforming/immunology , CD8-Positive T-Lymphocytes/immunology , Cancer Vaccines/immunology , Immunotherapy, Adoptive/methods , Liver Neoplasms/immunology , Animals , Carcinogenesis , Cell Differentiation , Cells, Cultured , Cellular Senescence , Disease Models, Animal , Humans , Liver Neoplasms/chemically induced , Liver Neoplasms/therapy , Lymphocyte Activation , Mice , Mice, Inbred C57BL , Mice, Transgenic , Tamoxifen , Tumor Microenvironment
13.
Am J Physiol Lung Cell Mol Physiol ; 324(3): L373-L384, 2023 03 01.
Article in English | MEDLINE | ID: mdl-36719079

ABSTRACT

Legionella pneumophila is the main etiological agent of Legionnaires' disease, a severe bacterial pneumonia. L. pneumophila is initially engulfed by alveolar macrophages (AMs) and subvert normal cellular functions to establish a replicative vacuole. Cigarette smokers are particularly susceptible to developing Legionnaires' disease and other pulmonary infections; however, little is known about the cellular mechanisms underlying this susceptibility. To investigate this, we used a mouse model of acute cigarette smoke exposure to examine the immune response to cigarette smoke and subsequent L. pneumophila infection. Contrary to previous reports, we show that cigarette smoke exposure alone causes a significant depletion of AMs using enzymatic digestion to extract cells, or via imaging intact lung lobes by light-sheet microscopy. Furthermore, treatment of mice deficient in specific types of cell death with smoke suggests that NLRP3-driven pyroptosis is a contributor to smoke-induced death of AMs. After infection, smoke-exposed mice displayed increased pulmonary L. pneumophila loads and developed more severe disease compared with air-exposed controls. We tested if depletion of AMs was related to this phenotype by directly depleting them with clodronate liposomes and found that this also resulted in increased L. pneumophila loads. In summary, our results showed that cigarette smoke depleted AMs from the lung and that this likely contributed to more severe Legionnaires' disease. Furthermore, the role of AMs in L. pneumophila infection is more nuanced than simply providing a replicative niche, and our studies suggest they play a major role in bacterial clearance.


Subject(s)
Cigarette Smoking , Legionella pneumophila , Legionnaires' Disease , Mice , Animals , Macrophages, Alveolar/metabolism , Legionnaires' Disease/metabolism , Legionnaires' Disease/microbiology , Lung/microbiology
14.
J Hepatol ; 79(1): 150-166, 2023 07.
Article in English | MEDLINE | ID: mdl-36870611

ABSTRACT

BACKGROUND & AIMS: Patients with chronic liver disease (CLD), including cirrhosis, are at increased risk of intractable viral infections and are hyporesponsive to vaccination. Hallmarks of CLD and cirrhosis include microbial translocation and elevated levels of type I interferon (IFN-I). We aimed to investigate the relevance of microbiota-induced IFN-I in the impaired adaptive immune responses observed in CLD. METHODS: We combined bile duct ligation (BDL) and carbon tetrachloride (CCl4) models of liver injury with vaccination or lymphocytic choriomeningitis virus infection in transgenic mice lacking IFN-I in myeloid cells (LysM-Cre IFNARflox/flox), IFNAR-induced IL-10 (MX1-Cre IL10flox/flox) or IL-10R in T cells (CD4-DN IL-10R). Key pathways were blocked in vivo with specific antibodies (anti-IFNAR and anti-IL10R). We assessed T-cell responses and antibody titers after HBV and SARS-CoV-2 vaccinations in patients with CLD and healthy individuals in a proof-of-concept clinical study. RESULTS: We demonstrate that BDL- and CCL4-induced prolonged liver injury leads to impaired T-cell responses to vaccination and viral infection in mice, subsequently leading to persistent infection. We observed a similarly defective T-cell response to vaccination in patients with cirrhosis. Innate sensing of translocated gut microbiota induced IFN-I signaling in hepatic myeloid cells that triggered excessive IL-10 production upon viral infection. IL-10R signaling in antigen-specific T cells rendered them dysfunctional. Antibiotic treatment and inhibition of IFNAR or IL-10Ra restored antiviral immunity without detectable immune pathology in mice. Notably, IL-10Ra blockade restored the functional phenotype of T cells from vaccinated patients with cirrhosis. CONCLUSION: Innate sensing of translocated microbiota induces IFN-/IL-10 expression, which drives the loss of systemic T-cell immunity during prolonged liver injury. IMPACT AND IMPLICATIONS: Chronic liver injury and cirrhosis are associated with enhanced susceptibility to viral infections and vaccine hyporesponsiveness. Using different preclinical animal models and patient samples, we identified that impaired T-cell immunity in BDL- and CCL4-induced prolonged liver injury is driven by sequential events involving microbial translocation, IFN signaling leading to myeloid cell-induced IL-10 expression, and IL-10 signaling in antigen-specific T cells. Given the absence of immune pathology after interference with IL-10R, our study highlights a potential novel target to reconstitute T-cell immunity in patients with CLD that can be explored in future clinical studies.


Subject(s)
COVID-19 , Interferon Type I , Mice , Animals , Interleukin-10 , SARS-CoV-2 , Mice, Transgenic , Liver Cirrhosis , Mice, Inbred C57BL
16.
J Immunol ; 204(1): 87-100, 2020 01 01.
Article in English | MEDLINE | ID: mdl-31776205

ABSTRACT

Cross-presentation allows dendritic cells (DCs) to present peptides derived from endocytosed Ags on MHC class I molecules, which is important for activating CTL against viral infections and tumors. Type 1 classical DCs (cDC1), which depend on the transcription factor Batf3, are considered the main cross-presenting cells. In this study, we report that soluble Ags are efficiently cross-presented also by transcription factor SpiC-dependent red pulp macrophages (RPM) of the spleen. In contrast to cDC1, RPM used the mannose receptor for Ag uptake and employed the proteasome- and TAP-dependent cytosolic cross-presentation pathway, previously shown to be used in vitro by bone marrow-derived DCs. In an in vivo vaccination model, both cDC1 and RPM cross-primed CTL efficiently but with distinct kinetics. Within a few days, RPM induced very early effector CTL of a distinct phenotype (Ly6A/E+ Ly6C(+) KLRG1- CD127- CX3CR1- Grz-B+). In an adenoviral infection model, such CTL contained the early viral spread, whereas cDC1 induced short-lived effector CTL that eventually cleared the virus. RPM-induced early effector CTL also contributed to the endogenous antiviral response but not to CTL memory generation. In conclusion, RPM can contribute to antiviral immunity by generating a rapid CTL defense force that contains the virus until cDC1-induced CTL are available to eliminate it. This function can be harnessed for improving vaccination strategies aimed at inducing CTL.


Subject(s)
Adenoviridae Infections/immunology , Animals , Cells, Cultured , Cross-Priming/immunology , Disease Models, Animal , HEK293 Cells , Humans , Macrophages/immunology , Mice , Mice, Inbred C57BL , Spleen/immunology , T-Lymphocytes, Cytotoxic/immunology
17.
J Immunol ; 202(2): 550-558, 2019 01 15.
Article in English | MEDLINE | ID: mdl-30559319

ABSTRACT

Charcot-Leyden crystals (CLCs) are Galectin-10 protein crystals that can form after eosinophils degranulate. CLCs can appear and persist in tissues from patients with eosinophilic disorders, such as asthma, allergic reactions, and fungal and helminthic infections. Despite abundant reports of their occurrence in human disease, the inflammatory potential of CLCs has remained unknown. In this article, we show that CLCs induce the release of the proinflammatory cytokine IL-1ß upon their phagocytosis by primary human macrophages in vitro. Chemical inhibition and small interfering RNA knockdown of NLRP3 in primary human macrophages abrogated their IL-1ß response to CLCs. Using C57BL/6 ASC-mCitrine transgenic inflammasome reporter mice, we showed that the instillation of CLCs into the lungs promoted the assembly of ASC complexes in infiltrating immune cells (neutrophils and inflammatory monocytes) and resulted in IL-1ß accumulation into the bronchoalveolar lavage fluid. Our findings reveal that CLCs are recognized by the NLRP3 inflammasome, which may sustain inflammation that follows eosinophilic inflammatory processes.


Subject(s)
Eosinophils/physiology , Galectins/metabolism , Inflammasomes/metabolism , Inflammation/immunology , Lung/physiology , Macrophages/immunology , NLR Family, Pyrin Domain-Containing 3 Protein/metabolism , Animals , CARD Signaling Adaptor Proteins/genetics , CARD Signaling Adaptor Proteins/metabolism , Cell Degranulation , Cells, Cultured , Crystallization , Galectins/chemistry , Humans , Interleukin-1beta/metabolism , Mice , Mice, Inbred C57BL , Mice, Transgenic , NLR Family, Pyrin Domain-Containing 3 Protein/genetics , Phagocytosis , Primary Cell Culture , RNA, Small Interfering/genetics
18.
J Immunol ; 198(8): 3033-3044, 2017 04 15.
Article in English | MEDLINE | ID: mdl-28275138

ABSTRACT

FcεRII is a multifunctional low-affinity IgER that is involved in the pathogenesis of allergic, inflammatory, and neoplastic diseases. Although discrepancies in FcεRII-mediated functions are being increasingly recognized, the consequences of FcεRII activation are not completely understood. In this study, we evaluated the expression of FcεRII on human blood cells and found that it was primarily expressed on monocytes and B cells. Although IL-4 promoted expression of the FcεRIIb isoform on B cells and monocytes, the expression of the FcεRIIa isoform was not dependent on IL-4. Furthermore, FcεRII predominantly bound allergen-IgE complexes on B cells but not on monocytes. FcεRII-mediated allergen-IgE complex uptake by B cells directed Ags to MHC class II-rich compartments. FcεRII-bearing monocytes and B cells expressed high levels of the FcεRII sheddase a disintegrin and metalloproteinase 10, which implies that they are important sources of soluble FcεRII. Moreover, we identified that IgE immune complex stimulation of FcεRII activated intracellular tyrosine phosphorylation via Syk in B cells but not in monocytes. Importantly, FcεRII-mediated signaling by allergen-IgE immune complexes increased IFN-γ production in B cells of allergic patients during the build-up phase of allergen-specific immunotherapy. Together, our results demonstrate that FcεRII mediates cell type-dependent function in allergic reactions. In addition, the results identify a novel allergen-IgE complex/FcεRII/Syk/IFN-γ pathway in allergic responses and suggest that FcεRII may play a role in regulating allergic reactions via modulating IFN-γ production in B cells.


Subject(s)
B-Lymphocytes/immunology , Lymphocyte Activation/immunology , Monocytes/immunology , Receptors, IgE/immunology , Respiratory Hypersensitivity/immunology , Adult , Aged , Female , Flow Cytometry , Fluorescent Antibody Technique , Humans , Hypersensitivity , Immunoblotting , Immunoprecipitation , Male , Mass Spectrometry , Middle Aged , Polymerase Chain Reaction , Signal Transduction/immunology
19.
Eur J Immunol ; 47(9): 1477-1487, 2017 09.
Article in English | MEDLINE | ID: mdl-28667750

ABSTRACT

The pool of hematopoietic stem cells (HSCs) in the bone marrow is a mixture of resting, proliferating, and differentiating cells. Long-term repopulating HSCs (LT-HSC) are routinely enriched as Lin- Sca1+ c-Kit+ CD34- Flt3- CD150+ CD48- cells. The Flt3 ligand (Flt3L) and its receptor Flt3 are important regulators of HSC maintenance, expansion and differentiation. Using Flt3L-eGFP reporter mice, we show that endogenous Flt3L-eGFP-reporter RNA expression correlates with eGFP-protein expression. This Flt3L-eGFP-reporter expression distinguishes two LT-HSC populations with differences in gene expressions and reconstituting potential. Thus, Flt3L-eGFP-reporterlow cells are identified as predominantly resting HSCs with long-term repopulating capacities. In contrast, Flt3L-eGFP-reporterhigh cells are in majority proliferating HSCs with only short-term repopulating capacities. Flt3L-eGFP-reporterlow cells express hypoxia, autophagy-inducing, and the LT-HSC-associated genes HoxB5 and Fgd5, while Flt3L-eGFP-reporterhigh HSCs upregulate genes involved in HSC differentiation. Flt3L-eGFP-reporterlow cells develop to Flt3L-eGFP-reporterhigh cells in vitro, although Flt3L-eGFP-reporterhigh cells remain Flt3L-eGFP-reporterhigh . CD150+ Flt3L-eGFP-reporterlow cells express either endothelial protein C receptor (EPCR) or CD41, while Flt3L-eGFP-reporterhigh cells do express EPCR but not CD41. Thus, FACS-enrichment of Flt3/ Flt3L-eGFP-reporter negative, Lin- CD150+ CD48- EPCR+ CD41+ HSCs allows a further 5-fold enrichment of functional LT-HSCs.


Subject(s)
Bone Marrow Cells/physiology , Hematopoietic Stem Cells/physiology , Membrane Proteins/metabolism , Animals , Autophagy/genetics , Cell Differentiation , Cell Proliferation , Cell Self Renewal , Cells, Cultured , Genes, Reporter/genetics , Green Fluorescent Proteins/genetics , Guanine Nucleotide Exchange Factors/genetics , Guanine Nucleotide Exchange Factors/metabolism , Homeodomain Proteins/genetics , Homeodomain Proteins/metabolism , Hypoxia/genetics , Membrane Proteins/genetics , Mice , Mice, Inbred C57BL , Mice, Transgenic , Signaling Lymphocytic Activation Molecule Family Member 1/metabolism
20.
J Immunol ; 197(10): 4118-4126, 2016 11 15.
Article in English | MEDLINE | ID: mdl-27798148

ABSTRACT

Nucleic acid recognition is an important mechanism that enables the innate immune system to detect microbial infection and tissue damage. To minimize the recognition of self-derived nucleic acids, all nucleic acid-sensing signaling receptors are sequestered away from the cell surface and are activated in the cytoplasm or in endosomes. Nucleic acid sensing in endosomes relies on members of the TLR family. The receptor for advanced glycation end-products (RAGE) was recently shown to bind DNA at the cell surface, facilitating DNA internalization and subsequent recognition by TLR9. In this article, we show that RAGE binds RNA molecules in a sequence-independent manner and enhances cellular RNA uptake into endosomes. Gain- and loss-of-function studies demonstrate that RAGE increases the sensitivity of all ssRNA-sensing TLRs (TLR7, TLR8, TLR13), suggesting that RAGE is an integral part of the endosomal nucleic acid-sensing system.


Subject(s)
Endosomes/metabolism , RNA/metabolism , Receptor for Advanced Glycation End Products/metabolism , Signal Transduction , Toll-Like Receptors/immunology , DNA/genetics , DNA/metabolism , HEK293 Cells , Humans , Immunity, Innate , Polymerase Chain Reaction , RNA/genetics , Receptor for Advanced Glycation End Products/genetics , Receptor for Advanced Glycation End Products/immunology , Toll-Like Receptor 7/immunology , Toll-Like Receptor 7/metabolism , Toll-Like Receptor 8/immunology , Toll-Like Receptor 8/metabolism
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