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1.
Annu Rev Immunol ; 38: 171-202, 2020 04 26.
Artigo em Inglês | MEDLINE | ID: mdl-32340577

RESUMO

Innate lymphocyte populations are emerging as key effectors in tissue homeostasis, microbial defense, and inflammatory skin disease. The cells are evolutionarily ancient and carry conserved principles of function, which can be achieved through shared or unique specific mechanisms. Recent technological and treatment advances have provided insight into heterogeneity within and between individuals and species. Similar pathways can extend through to adaptive lymphocytes, which softens the margins with innate lymphocyte populations and allows investigation of nonredundant pathways of immunity and inflammation that might be amenable to therapeutic intervention. Here, we review advances in understanding of innate lymphocyte biology with a focus on skin disease and the roles of commensal and pathogen responses and tissue homeostasis.


Assuntos
Imunidade Inata , Subpopulações de Linfócitos/imunologia , Subpopulações de Linfócitos/metabolismo , Dermatopatias/etiologia , Dermatopatias/metabolismo , Animais , Biomarcadores , Homeostase , Interações Hospedeiro-Patógeno/imunologia , Humanos , Microbiota/imunologia , Transdução de Sinais , Dermatopatias/patologia
2.
Nat Immunol ; 25(8): 1474-1488, 2024 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-38956378

RESUMO

Natural killer (NK) cells are innate lymphoid cells (ILCs) contributing to immune responses to microbes and tumors. Historically, their classification hinged on a limited array of surface protein markers. Here, we used single-cell RNA sequencing (scRNA-seq) and cellular indexing of transcriptomes and epitopes by sequencing (CITE-seq) to dissect the heterogeneity of NK cells. We identified three prominent NK cell subsets in healthy human blood: NK1, NK2 and NK3, further differentiated into six distinct subgroups. Our findings delineate the molecular characteristics, key transcription factors, biological functions, metabolic traits and cytokine responses of each subgroup. These data also suggest two separate ontogenetic origins for NK cells, leading to divergent transcriptional trajectories. Furthermore, we analyzed the distribution of NK cell subsets in the lung, tonsils and intraepithelial lymphocytes isolated from healthy individuals and in 22 tumor types. This standardized terminology aims at fostering clarity and consistency in future research, thereby improving cross-study comparisons.


Assuntos
Células Matadoras Naturais , Análise de Célula Única , Humanos , Análise de Célula Única/métodos , Células Matadoras Naturais/imunologia , Transcriptoma , Neoplasias/imunologia , Subpopulações de Linfócitos/imunologia , Subpopulações de Linfócitos/metabolismo , Tonsila Palatina/imunologia , Tonsila Palatina/citologia , Perfilação da Expressão Gênica , Pulmão/imunologia , Citocinas/metabolismo
3.
Nat Immunol ; 25(8): 1460-1473, 2024 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-38956380

RESUMO

Group 1 innate lymphoid cells (ILC1s) are cytotoxic and interferon gamma-producing lymphocytes lacking antigen-specific receptors, which include ILC1s and natural killer (NK) cells. In mice, ILC1s differ from NK cells, as they develop independently of the NK-specifying transcription factor EOMES, while requiring the repressor ZFP683 (ZNF683 in humans) for tissue residency. Here we identify highly variable ILC1 subtypes across tissues through investigation of human ILC1 diversity by single-cell RNA sequencing and flow cytometry. The intestinal epithelium contained abundant mature EOMES- ILC1s expressing PRDM1 rather than ZNF683, alongside a few immature TCF7+PRDM1- ILC1s. Other tissues harbored NK cells expressing ZNF683 and EOMES transcripts; however, EOMES protein content was variable. These ZNF683+ NK cells are tissue-imprinted NK cells phenotypically resembling ILC1s. The tissue ILC1-NK spectrum also encompassed conventional NK cells and NK cells distinguished by PTGDS expression. These findings establish a foundation for evaluating phenotypic and functional changes within the NK-ILC1 spectrum in diseases.


Assuntos
Imunidade Inata , Células Matadoras Naturais , Linfócitos , Fator 1 de Ligação ao Domínio I Regulador Positivo , Proteínas com Domínio T , Humanos , Células Matadoras Naturais/imunologia , Células Matadoras Naturais/metabolismo , Proteínas com Domínio T/metabolismo , Proteínas com Domínio T/genética , Fator 1 de Ligação ao Domínio I Regulador Positivo/metabolismo , Fator 1 de Ligação ao Domínio I Regulador Positivo/genética , Linfócitos/imunologia , Linfócitos/metabolismo , Análise de Célula Única , Mucosa Intestinal/imunologia , Mucosa Intestinal/metabolismo , Animais , Camundongos , Subpopulações de Linfócitos/imunologia , Subpopulações de Linfócitos/metabolismo , Proteínas Repressoras/metabolismo , Proteínas Repressoras/genética
4.
Cell ; 184(16): 4186-4202.e20, 2021 08 05.
Artigo em Inglês | MEDLINE | ID: mdl-34216540

RESUMO

Polyamine synthesis represents one of the most profound metabolic changes during T cell activation, but the biological implications of this are scarcely known. Here, we show that polyamine metabolism is a fundamental process governing the ability of CD4+ helper T cells (TH) to polarize into different functional fates. Deficiency in ornithine decarboxylase, a crucial enzyme for polyamine synthesis, results in a severe failure of CD4+ T cells to adopt correct subset specification, underscored by ectopic expression of multiple cytokines and lineage-defining transcription factors across TH cell subsets. Polyamines control TH differentiation by providing substrates for deoxyhypusine synthase, which synthesizes the amino acid hypusine, and mice in which T cells are deficient for hypusine develop severe intestinal inflammatory disease. Polyamine-hypusine deficiency caused widespread epigenetic remodeling driven by alterations in histone acetylation and a re-wired tricarboxylic acid (TCA) cycle. Thus, polyamine metabolism is critical for maintaining the epigenome to focus TH cell subset fidelity.


Assuntos
Linhagem da Célula , Poliaminas/metabolismo , Linfócitos T Auxiliares-Indutores/citologia , Linfócitos T Auxiliares-Indutores/metabolismo , Animais , Diferenciação Celular/efeitos dos fármacos , Linhagem da Célula/efeitos dos fármacos , Polaridade Celular/efeitos dos fármacos , Proliferação de Células/efeitos dos fármacos , Cromatina/metabolismo , Ciclo do Ácido Cítrico/efeitos dos fármacos , Colite/imunologia , Colite/patologia , Citocinas/metabolismo , Modelos Animais de Doenças , Inibidores Enzimáticos/farmacologia , Epigenoma , Histonas/metabolismo , Inflamação/imunologia , Inflamação/patologia , Subpopulações de Linfócitos/efeitos dos fármacos , Subpopulações de Linfócitos/metabolismo , Lisina/análogos & derivados , Lisina/metabolismo , Camundongos , Camundongos Endogâmicos C57BL , Ornitina Descarboxilase/metabolismo , Linfócitos T Auxiliares-Indutores/efeitos dos fármacos , Células Th17/efeitos dos fármacos , Células Th17/imunologia , Fatores de Transcrição/metabolismo
5.
Cell ; 179(4): 846-863.e24, 2019 10 31.
Artigo em Inglês | MEDLINE | ID: mdl-31668803

RESUMO

Dendritic cells (DCs) play a critical role in orchestrating adaptive immune responses due to their unique ability to initiate T cell responses and direct their differentiation into effector lineages. Classical DCs have been divided into two subsets, cDC1 and cDC2, based on phenotypic markers and their distinct abilities to prime CD8 and CD4 T cells. While the transcriptional regulation of the cDC1 subset has been well characterized, cDC2 development and function remain poorly understood. By combining transcriptional and chromatin analyses with genetic reporter expression, we identified two principal cDC2 lineages defined by distinct developmental pathways and transcriptional regulators, including T-bet and RORγt, two key transcription factors known to define innate and adaptive lymphocyte subsets. These novel cDC2 lineages were characterized by distinct metabolic and functional programs. Extending our findings to humans revealed conserved DC heterogeneity and the presence of the newly defined cDC2 subsets in human cancer.


Assuntos
Diferenciação Celular/genética , Linhagem da Célula/genética , Heterogeneidade Genética , Neoplasias/imunologia , Imunidade Adaptativa/genética , Animais , Diferenciação Celular/imunologia , Cromatina/genética , Células Dendríticas/imunologia , Regulação da Expressão Gênica no Desenvolvimento , Humanos , Imunidade Inata/genética , Subpopulações de Linfócitos/imunologia , Subpopulações de Linfócitos/metabolismo , Camundongos , Neoplasias/genética , Linfócitos T/imunologia , Linfócitos T/metabolismo , Transcrição Gênica/imunologia
6.
Nat Immunol ; 22(9): 1083-1092, 2021 09.
Artigo em Inglês | MEDLINE | ID: mdl-34429552

RESUMO

For decades, it was commonly accepted that the brain is secluded from peripheral immune activity and is self-sufficient for its maintenance and repair. This simplistic perception was based on the presence of resident immune cells, the microglia, and barrier systems within the brain, and the assumption that the central nervous system (CNS) lacks lymphatic drainage. This view was revised with the discoveries that higher functions of the CNS, homeostasis and repair are supported by peripheral innate and adaptive immune cells. The findings of bone marrow-derived immune cells in specialized niches, and the renewed observation that a lymphatic drainage system exists within the brain, further contributed to this revised model. In this Review, we describe the immune niches within the brain, the contribution of professional immune cells to brain functions, the bidirectional relationships between the CNS and the immune system and the relevance of immune components to brain aging and neurodegenerative diseases.


Assuntos
Encéfalo/imunologia , Imunidade/fisiologia , Microglia/imunologia , Doenças Neurodegenerativas/imunologia , Envelhecimento/imunologia , Barreira Hematoencefálica/imunologia , Células da Medula Óssea/imunologia , Líquido Cefalorraquidiano/citologia , Líquido Cefalorraquidiano/imunologia , Humanos , Subpopulações de Linfócitos/imunologia , Macrófagos/imunologia
7.
Nat Immunol ; 21(6): 605-614, 2020 06.
Artigo em Inglês | MEDLINE | ID: mdl-32367037

RESUMO

Impressive progress has been made over the last several years toward understanding how almost every aspect of the immune system contributes to the expression of systemic autoimmunity. In parallel, studies have shed light on the mechanisms that contribute to organ inflammation and damage. New approaches that address the complicated interaction between genetic variants, epigenetic processes, sex and the environment promise to enlighten the multitude of pathways that lead to what is clinically defined as systemic lupus erythematosus. It is expected that each patient owns a unique 'interactome', which will dictate specific treatment.


Assuntos
Autoimunidade , Suscetibilidade a Doenças/imunologia , Lúpus Eritematoso Sistêmico/diagnóstico , Lúpus Eritematoso Sistêmico/etiologia , Animais , Diagnóstico Diferencial , Exposição Ambiental , Predisposição Genética para Doença , Variação Genética , Humanos , Imunidade Inata , Subpopulações de Linfócitos/imunologia , Subpopulações de Linfócitos/metabolismo , Especificidade de Órgãos , Fatores Sexuais
8.
Nat Immunol ; 21(2): 168-177, 2020 02.
Artigo em Inglês | MEDLINE | ID: mdl-31873294

RESUMO

Group 3 innate lymphoid cell (ILC3)-mediated production of the cytokine interleukin-22 (IL-22) is critical for the maintenance of immune homeostasis in the gastrointestinal tract. Here, we find that the function of ILC3s is not constant across the day, but instead oscillates between active phases and resting phases. Coordinate responsiveness of ILC3s in the intestine depended on the food-induced expression of the neuropeptide vasoactive intestinal peptide (VIP). Intestinal ILC3s had high expression of the G protein-coupled receptor vasoactive intestinal peptide receptor 2 (VIPR2), and activation by VIP markedly enhanced the production of IL-22 and the barrier function of the epithelium. Conversely, deficiency in signaling through VIPR2 led to impaired production of IL-22 by ILC3s and increased susceptibility to inflammation-induced gut injury. Thus, intrinsic cellular rhythms acted in synergy with the cyclic patterns of food intake to drive the production of IL-22 and synchronize protection of the intestinal epithelium through a VIP-VIPR2 pathway in ILC3s.


Assuntos
Imunidade nas Mucosas/imunologia , Subpopulações de Linfócitos/imunologia , Linfócitos/imunologia , Periodicidade , Peptídeo Intestinal Vasoativo/imunologia , Animais , Ingestão de Alimentos/imunologia , Imunidade Inata/imunologia , Subpopulações de Linfócitos/metabolismo , Linfócitos/metabolismo , Camundongos , Camundongos Endogâmicos C57BL , Peptídeo Intestinal Vasoativo/metabolismo
9.
Nat Immunol ; 20(3): 326-336, 2019 03.
Artigo em Inglês | MEDLINE | ID: mdl-30778252

RESUMO

T cell dysfunction is a hallmark of many cancers, but the basis for T cell dysfunction and the mechanisms by which antibody blockade of the inhibitory receptor PD-1 (anti-PD-1) reinvigorates T cells are not fully understood. Here we show that such therapy acts on a specific subpopulation of exhausted CD8+ tumor-infiltrating lymphocytes (TILs). Dysfunctional CD8+ TILs possess canonical epigenetic and transcriptional features of exhaustion that mirror those seen in chronic viral infection. Exhausted CD8+ TILs include a subpopulation of 'progenitor exhausted' cells that retain polyfunctionality, persist long term and differentiate into 'terminally exhausted' TILs. Consequently, progenitor exhausted CD8+ TILs are better able to control tumor growth than are terminally exhausted T cells. Progenitor exhausted TILs can respond to anti-PD-1 therapy, but terminally exhausted TILs cannot. Patients with melanoma who have a higher percentage of progenitor exhausted cells experience a longer duration of response to checkpoint-blockade therapy. Thus, approaches to expand the population of progenitor exhausted CD8+ T cells might be an important component of improving the response to checkpoint blockade.


Assuntos
Anticorpos Bloqueadores/farmacologia , Linfócitos T CD8-Positivos/efeitos dos fármacos , Linfócitos do Interstício Tumoral/efeitos dos fármacos , Melanoma Experimental/prevenção & controle , Receptor de Morte Celular Programada 1/antagonistas & inibidores , Animais , Anticorpos Bloqueadores/imunologia , Linfócitos T CD8-Positivos/imunologia , Linfócitos T CD8-Positivos/virologia , Linhagem Celular Tumoral , Feminino , Humanos , Subpopulações de Linfócitos/efeitos dos fármacos , Subpopulações de Linfócitos/imunologia , Subpopulações de Linfócitos/virologia , Linfócitos do Interstício Tumoral/imunologia , Linfócitos do Interstício Tumoral/virologia , Coriomeningite Linfocítica/imunologia , Coriomeningite Linfocítica/prevenção & controle , Coriomeningite Linfocítica/virologia , Vírus da Coriomeningite Linfocítica/efeitos dos fármacos , Vírus da Coriomeningite Linfocítica/imunologia , Vírus da Coriomeningite Linfocítica/fisiologia , Melanoma Experimental/imunologia , Melanoma Experimental/virologia , Camundongos Congênicos , Camundongos Endogâmicos C57BL , Receptor de Morte Celular Programada 1/imunologia , Receptor de Morte Celular Programada 1/metabolismo
10.
Immunity ; 55(2): 254-271.e7, 2022 02 08.
Artigo em Inglês | MEDLINE | ID: mdl-35139352

RESUMO

Allergic immunity is orchestrated by group 2 innate lymphoid cells (ILC2s) and type 2 helper T (Th2) cells prominently arrayed at epithelial- and microbial-rich barriers. However, ILC2s and Th2 cells are also present in fibroblast-rich niches within the adventitial layer of larger vessels and similar boundary structures in sterile deep tissues, and it remains unclear whether they undergo dynamic repositioning during immune perturbations. Here, we used thick-section quantitative imaging to show that allergic inflammation drives invasion of lung and liver non-adventitial parenchyma by ILC2s and Th2 cells. However, during concurrent type 1 and type 2 mixed inflammation, IFNγ from broadly distributed type 1 lymphocytes directly blocked both ILC2 parenchymal trafficking and subsequent cell survival. ILC2 and Th2 cell confinement to adventitia limited mortality by the type 1 pathogen Listeria monocytogenes. Our results suggest that the topography of tissue lymphocyte subsets is tightly regulated to promote appropriately timed and balanced immunity.


Assuntos
Inflamação/imunologia , Interferon gama/imunologia , Subpopulações de Linfócitos/imunologia , Células Th2/imunologia , Animais , Morte Celular/imunologia , Movimento Celular/imunologia , Hipersensibilidade/imunologia , Imunidade Inata , Interleucina-33/imunologia , Interleucina-5/metabolismo , Listeria monocytogenes , Listeriose/imunologia , Listeriose/mortalidade , Fígado/imunologia , Pulmão/imunologia , Subpopulações de Linfócitos/metabolismo , Lisofosfolipídeos/imunologia , Camundongos , Tecido Parenquimatoso/imunologia , Esfingosina/análogos & derivados , Esfingosina/imunologia , Células Th1/imunologia , Células Th2/metabolismo
11.
Immunity ; 55(2): 290-307.e5, 2022 02 08.
Artigo em Inglês | MEDLINE | ID: mdl-35090581

RESUMO

Tbet+CD11c+ B cells arise during type 1 pathogen challenge, aging, and autoimmunity in mice and humans. Here, we examined the developmental requirements of this B cell subset. In acute infection, T follicular helper (Tfh) cells, but not Th1 cells, drove Tbet+CD11c+ B cell generation through proximal delivery of help. Tbet+CD11c+ B cells developed prior to germinal center (GC) formation, exhibiting phenotypic and transcriptional profiles distinct from GC B cells. Fate tracking revealed that most Tbet+CD11c+ B cells developed independently of GC entry and cell-intrinsic Bcl6 expression. Tbet+CD11c+ and GC B cells exhibited minimal repertoire overlap, indicating distinct developmental pathways. As the infection resolved, Tbet+CD11c+ B cells localized to the marginal zone where splenic retention depended on integrins LFA-1 and VLA-4, forming a competitive memory subset that contributed to antibody production and secondary GC seeding upon rechallenge. Therefore, Tbet+CD11c+ B cells comprise a GC-independent memory subset capable of rapid and robust recall responses.


Assuntos
Linfócitos B/imunologia , Antígenos CD11/metabolismo , Subpopulações de Linfócitos/imunologia , Células T Auxiliares Foliculares/imunologia , Proteínas com Domínio T/metabolismo , Viroses/imunologia , Animais , Anticorpos Antivirais/metabolismo , Linfócitos B/metabolismo , Diferenciação Celular/imunologia , Centro Germinativo/imunologia , Alphainfluenzavirus/imunologia , Integrinas/metabolismo , Subpopulações de Linfócitos/metabolismo , Vírus da Coriomeningite Linfocítica/imunologia , Células B de Memória/imunologia , Células B de Memória/metabolismo , Camundongos , Baço/imunologia
12.
Cell ; 167(5): 1323-1338.e14, 2016 11 17.
Artigo em Inglês | MEDLINE | ID: mdl-27863246

RESUMO

Aged skin heals wounds poorly, increasing susceptibility to infections. Restoring homeostasis after wounding requires the coordinated actions of epidermal and immune cells. Here we find that both intrinsic defects and communication with immune cells are impaired in aged keratinocytes, diminishing their efficiency in restoring the skin barrier after wounding. At the wound-edge, aged keratinocytes display reduced proliferation and migration. They also exhibit a dampened ability to transcriptionally activate epithelial-immune crosstalk regulators, including a failure to properly activate/maintain dendritic epithelial T cells (DETCs), which promote re-epithelialization following injury. Probing mechanism, we find that aged keratinocytes near the wound edge don't efficiently upregulate Skints or activate STAT3. Notably, when epidermal Stat3, Skints, or DETCs are silenced in young skin, re-epithelialization following wounding is perturbed. These findings underscore epithelial-immune crosstalk perturbations in general, and Skints in particular, as critical mediators in the age-related decline in wound-repair.


Assuntos
Envelhecimento/fisiologia , Subpopulações de Linfócitos/citologia , Transdução de Sinais , Cicatrização , Animais , Interleucina-6/administração & dosagem , Queratinócitos/metabolismo , Camundongos , Pele/citologia , Fenômenos Fisiológicos da Pele , Cicatrização/efeitos dos fármacos
13.
Nat Immunol ; 19(10): 1093-1099, 2018 10.
Artigo em Inglês | MEDLINE | ID: mdl-30201992

RESUMO

Group 2 innate lymphoid cells (ILC2s) are distributed systemically and produce type 2 cytokines in response to a variety of stimuli, including the epithelial cytokines interleukin (IL)-25, IL-33, and thymic stromal lymphopoietin (TSLP). Transcriptional profiling of ILC2s from different tissues, however, grouped ILC2s according to their tissue of origin, even in the setting of combined IL-25-, IL-33-receptor-, and TSLP-receptor-deficiency. Single-cell profiling confirmed a tissue-organizing transcriptome and identified ILC2 subsets expressing distinct activating receptors, including the major subset of skin ILC2s, which were activated preferentially by IL-18. Tissue ILC2 subsets were unaltered in number and expression in germ-free mice, suggesting that endogenous, tissue-derived signals drive the maturation of ILC2 subsets by controlling expression of distinct patterns of activating receptors, thus anticipating tissue-specific perturbations occurring later in life.


Assuntos
Imunidade Inata/imunologia , Subpopulações de Linfócitos/imunologia , Linfócitos/imunologia , Animais , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout
14.
Annu Rev Cell Dev Biol ; 32: 327-348, 2016 10 06.
Artigo em Inglês | MEDLINE | ID: mdl-27712102

RESUMO

Thymocyte selection involves the positive and negative selection of the repertoire of T cell receptors (TCRs) such that the organism does not suffer autoimmunity, yet has the benefit of the ability to recognize any invading pathogen. The signal transduced through the TCR is translated into a number of different signaling cascades that result in transcription factor activity in the nucleus and changes to the cytoskeleton and motility. Negative selection involves inducing apoptosis in thymocytes that express strongly self-reactive TCRs, whereas positive selection must induce survival and differentiation programs in cells that are more weakly self-reactive. The TCR recognition event is analog by nature, but the outcome of signaling is not. A large number of molecules regulate the strength of the TCR-derived signal at various points in the cascades. This review discusses the various factors that can regulate the strength of the TCR signal during thymocyte development.


Assuntos
Receptores de Antígenos de Linfócitos T/metabolismo , Transdução de Sinais , Linfócitos T/citologia , Linfócitos T/metabolismo , Animais , Humanos , Subpopulações de Linfócitos/metabolismo , Modelos Biológicos , Complexo de Endopeptidases do Proteassoma/metabolismo
15.
Nat Immunol ; 18(10): 1117-1127, 2017 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-28805812

RESUMO

The transcription factor T-bet has been associated with increased susceptibility to systemic and organ-specific autoimmunity, but the mechanism by which T-bet expression promotes neuroinflammation remains unknown. In this study, we demonstrate a cardinal role of T-bet-dependent NKp46+ innate lymphoid cells (ILCs) in the initiation of CD4+ TH17-mediated neuroinflammation. Loss of T-bet specifically in NKp46+ ILCs profoundly impaired the ability of myelin-reactive TH17 cells to invade central nervous system (CNS) tissue and protected the mice from autoimmunity. T-bet-dependent NKp46+ ILCs localized in the meninges and acted as chief coordinators of meningeal inflammation by inducing the expression of proinflammatory cytokines, chemokines and matrix metalloproteinases, which together facilitated T cell entry into CNS parenchyma. Our findings uncover a detrimental role of T-bet-dependent NKp46+ ILCs in the development of CNS autoimmune disease.


Assuntos
Imunidade Inata , Subpopulações de Linfócitos/imunologia , Subpopulações de Linfócitos/metabolismo , Receptor 1 Desencadeador da Citotoxicidade Natural/metabolismo , Células Th17/imunologia , Células Th17/metabolismo , Animais , Biomarcadores , Movimento Celular/genética , Movimento Celular/imunologia , Células Dendríticas/imunologia , Células Dendríticas/metabolismo , Modelos Animais de Doenças , Encefalomielite Autoimune Experimental/genética , Encefalomielite Autoimune Experimental/imunologia , Encefalomielite Autoimune Experimental/metabolismo , Expressão Gênica , Imunofenotipagem , Camundongos , Camundongos Knockout , Bainha de Mielina/imunologia , Receptor 1 Desencadeador da Citotoxicidade Natural/genética , Proteínas com Domínio T , Subpopulações de Linfócitos T/imunologia , Subpopulações de Linfócitos T/metabolismo
16.
Immunity ; 53(5): 1015-1032.e8, 2020 11 17.
Artigo em Inglês | MEDLINE | ID: mdl-33207209

RESUMO

Solitary intestinal lymphoid tissues such as cryptopatches (CPs) and isolated lymphoid follicles (ILFs) constitute steady-state activation hubs containing group 3 innate lymphoid cells (ILC3) that continuously produce interleukin (IL)-22. The outer surface of CPs and ILFs is demarcated by a poorly characterized population of CD11c+ cells. Using genome-wide single-cell transcriptional profiling of intestinal mononuclear phagocytes and multidimensional flow cytometry, we found that CP- and ILF-associated CD11c+ cells were a transcriptionally distinct subset of intestinal cDCs, which we term CIA-DCs. CIA-DCs required programming by CP- and ILF-resident CCR6+ ILC3 via lymphotoxin-ß receptor signaling in cDCs. CIA-DCs differentially expressed genes associated with immunoregulation and were the major cellular source of IL-22 binding protein (IL-22BP) at steady state. Mice lacking CIA-DC-derived IL-22BP exhibited diminished expression of epithelial lipid transporters, reduced lipid resorption, and changes in body fat homeostasis. Our findings provide insight into the design principles of an immunoregulatory checkpoint controlling nutrient absorption.


Assuntos
Células Dendríticas/imunologia , Células Dendríticas/metabolismo , Imunidade Inata , Subpopulações de Linfócitos/imunologia , Subpopulações de Linfócitos/metabolismo , Nódulos Linfáticos Agregados/citologia , Nódulos Linfáticos Agregados/imunologia , Receptores de Interleucina/biossíntese , Animais , Biomarcadores , Expressão Gênica , Perfilação da Expressão Gênica , Regulação da Expressão Gênica , Imunofenotipagem , Mucosa Intestinal/imunologia , Mucosa Intestinal/metabolismo , Metabolismo dos Lipídeos , Camundongos , Camundongos Transgênicos , RNA Citoplasmático Pequeno/genética , Receptores de Interleucina/genética , Transdução de Sinais
17.
Nat Immunol ; 17(7): 790-4, 2016 06 21.
Artigo em Inglês | MEDLINE | ID: mdl-27328009

RESUMO

Innate lymphoid cells (ILCs) are the most recently discovered group of immune cells. Understanding their biology poses many challenges. We discuss here the current knowledge on the appearance of ILC subsets during evolution and propose how the connection between ILCs and T cells contributes to the robustness of immunity and hence to the fitness of the hosts.


Assuntos
Evolução Biológica , Imunidade Inata , Subpopulações de Linfócitos/imunologia , Linfócitos/imunologia , Linfócitos T/imunologia , Animais , Diferenciação Celular , Interações Hospedeiro-Patógeno , Humanos
18.
Nat Immunol ; 17(7): 765-74, 2016 06 21.
Artigo em Inglês | MEDLINE | ID: mdl-27328006

RESUMO

Research over the last 7 years has led to the formal identification of innate lymphoid cells (ILCs), increased the understanding of their tissue distribution and has established essential functions of ILCs in diverse physiological processes. These include resistance to pathogens, the regulation of autoimmune inflammation, tissue remodeling, cancer and metabolic homeostasis. Notably, many ILC functions appear to be regulated by mechanisms distinct from those of other innate and adaptive immune cells. In this Review, we focus on how group 2 ILC (ILC2) and group 3 ILC (ILC3) responses are regulated and how these cells interact with other immune and non-immune cells to mediate their functions. We highlight experimental evidence from mouse models and patient-based studies that have elucidated the effects of ILCs on the maintenance of tissue homeostasis and the consequences for health and disease.


Assuntos
Doenças Autoimunes/imunologia , Imunidade Inata , Inflamação , Subpopulações de Linfócitos/imunologia , Linfócitos/imunologia , Neoplasias/imunologia , Imunidade Adaptativa , Animais , Citocinas/metabolismo , Modelos Animais de Doenças , Homeostase , Humanos , Camundongos , Cicatrização
19.
Nat Immunol ; 17(2): 169-78, 2016 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-26595886

RESUMO

The transcription factor GATA-3 is indispensable for the development of all innate lymphoid cells (ILCs) that express the interleukin 7 receptor α-chain (IL-7Rα). However, the function of low GATA-3 expression in committed group 3 ILCs (ILC3 cells) has not been identified. We found that GATA-3 regulated the homeostasis of ILC3 cells by controlling IL-7Rα expression. In addition, GATA-3 served a critical function in the development of the NKp46(+) ILC3 subset by regulating the balance between the transcription factors T-bet and RORγt. Among NKp46(+) ILC3 cells, although GATA-3 positively regulated genes specific to the NKp46(+) ILC3 subset, it negatively regulated genes specific to lymphoid tissue-inducer (LTi) or LTi-like ILC3 cells. Furthermore, GATA-3 was required for IL-22 production in both ILC3 subsets. Thus, despite its low expression, GATA-3 was critical for the homeostasis, development and function of ILC3 subsets.


Assuntos
Diferenciação Celular , Fator de Transcrição GATA3/metabolismo , Subpopulações de Linfócitos/citologia , Subpopulações de Linfócitos/metabolismo , Animais , Antígenos Ly/genética , Antígenos Ly/metabolismo , Diferenciação Celular/genética , Diferenciação Celular/imunologia , Linhagem da Célula/genética , Linhagem da Célula/imunologia , Análise por Conglomerados , Fator de Transcrição GATA3/deficiência , Fator de Transcrição GATA3/genética , Perfilação da Expressão Gênica , Regulação da Expressão Gênica , Homeostase , Imunidade Inata/genética , Imunofenotipagem , Interleucinas/biossíntese , Subpopulações de Linfócitos/imunologia , Camundongos , Camundongos Knockout , Camundongos Transgênicos , Receptor 1 Desencadeador da Citotoxicidade Natural/genética , Receptor 1 Desencadeador da Citotoxicidade Natural/metabolismo , Membro 3 do Grupo F da Subfamília 1 de Receptores Nucleares/genética , Membro 3 do Grupo F da Subfamília 1 de Receptores Nucleares/metabolismo , Fenótipo , Ligação Proteica , Receptores de Interleucina-7/genética , Receptores de Interleucina-7/metabolismo , Proteínas com Domínio T/metabolismo , Interleucina 22
20.
Nat Immunol ; 17(4): 451-60, 2016 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-26878113

RESUMO

Innate lymphoid cells (ILCs) are increasingly appreciated as important participants in homeostasis and inflammation. Substantial plasticity and heterogeneity among ILC populations have been reported. Here we have delineated the heterogeneity of human ILCs through single-cell RNA sequencing of several hundreds of individual tonsil CD127(+) ILCs and natural killer (NK) cells. Unbiased transcriptional clustering revealed four distinct populations, corresponding to ILC1 cells, ILC2 cells, ILC3 cells and NK cells, with their respective transcriptomes recapitulating known as well as unknown transcriptional profiles. The single-cell resolution additionally divulged three transcriptionally and functionally diverse subpopulations of ILC3 cells. Our systematic comparison of single-cell transcriptional variation within and between ILC populations provides new insight into ILC biology during homeostasis, with additional implications for dysregulation of the immune system.


Assuntos
Subunidade alfa de Receptor de Interleucina-7/metabolismo , Células Matadoras Naturais/metabolismo , Leucócitos Mononucleares/metabolismo , Subpopulações de Linfócitos/metabolismo , Linfócitos/metabolismo , Adulto , Idoso , Criança , Pré-Escolar , Feminino , Citometria de Fluxo , Perfilação da Expressão Gênica , Humanos , Imunidade Inata/imunologia , Células Matadoras Naturais/imunologia , Leucócitos Mononucleares/imunologia , Subpopulações de Linfócitos/imunologia , Linfócitos/imunologia , Masculino , Pessoa de Meia-Idade , Tonsila Palatina/citologia , Tonsila Palatina/imunologia , Reação em Cadeia da Polimerase , Análise de Sequência de RNA , Adulto Jovem
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