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1.
Nat Immunol ; 25(5): 834-846, 2024 May.
Artigo em Inglês | MEDLINE | ID: mdl-38561495

RESUMO

Cancer remains one of the leading causes of mortality worldwide, leading to increased interest in utilizing immunotherapy strategies for better cancer treatments. In the past decade, CD103+ T cells have been associated with better clinical prognosis in patients with cancer. However, the specific immune mechanisms contributing toward CD103-mediated protective immunity remain unclear. Here, we show an unexpected and transient CD61 expression, which is paired with CD103 at the synaptic microclusters of T cells. CD61 colocalization with the T cell antigen receptor further modulates downstream T cell antigen receptor signaling, improving antitumor cytotoxicity and promoting physiological control of tumor growth. Clinically, the presence of CD61+ tumor-infiltrating T lymphocytes is associated with improved clinical outcomes, mediated through enhanced effector functions and phenotype with limited evidence of cellular exhaustion. In conclusion, this study identified an unconventional and transient CD61 expression and pairing with CD103 on human immune cells, which potentiates a new target for immune-based cellular therapies.


Assuntos
Antígenos CD , Apirase , Cadeias alfa de Integrinas , Receptores de Antígenos de Linfócitos T , Transdução de Sinais , Animais , Humanos , Camundongos , Antígenos CD/metabolismo , Antígenos CD/imunologia , Linhagem Celular Tumoral , Citotoxicidade Imunológica , Cadeias alfa de Integrinas/metabolismo , Linfócitos do Interstício Tumoral/imunologia , Linfócitos do Interstício Tumoral/metabolismo , Neoplasias/imunologia , Neoplasias/terapia , Receptores de Antígenos de Linfócitos T/metabolismo , Receptores de Antígenos de Linfócitos T/imunologia , Transdução de Sinais/imunologia , Linfócitos T Citotóxicos/imunologia
2.
Nat Immunol ; 22(9): 1140-1151, 2021 09.
Artigo em Inglês | MEDLINE | ID: mdl-34426691

RESUMO

Tissue-resident memory T (TRM) cells are non-recirculating cells that exist throughout the body. Although TRM cells in various organs rely on common transcriptional networks to establish tissue residency, location-specific factors adapt these cells to their tissue of lodgment. Here we analyze TRM cell heterogeneity between organs and find that the different environments in which these cells differentiate dictate TRM cell function, durability and malleability. We find that unequal responsiveness to TGFß is a major driver of this diversity. Notably, dampened TGFß signaling results in CD103- TRM cells with increased proliferative potential, enhanced function and reduced longevity compared with their TGFß-responsive CD103+ TRM counterparts. Furthermore, whereas CD103- TRM cells readily modified their phenotype upon relocation, CD103+ TRM cells were comparatively resistant to transdifferentiation. Thus, despite common requirements for TRM cell development, tissue adaptation of these cells confers discrete functional properties such that TRM cells exist along a spectrum of differentiation potential that is governed by their local tissue microenvironment.


Assuntos
Linfócitos T CD8-Positivos/imunologia , Diferenciação Celular/imunologia , Plasticidade Celular/imunologia , Microambiente Celular/imunologia , Memória Imunológica/imunologia , Animais , Antígenos CD/imunologia , Linfócitos T CD8-Positivos/citologia , Feminino , Cadeias alfa de Integrinas/imunologia , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Transdução de Sinais/imunologia , Fator de Crescimento Transformador beta1/metabolismo
3.
Immunity ; 57(8): 1878-1892.e5, 2024 Aug 13.
Artigo em Inglês | MEDLINE | ID: mdl-39043185

RESUMO

Lung-tissue-resident memory (TRM) CD8+ T cells are critical for heterosubtypic immunity against influenza virus (IAV) reinfection. How TRM cells surveil the lung, respond to infection, and interact with other cells remains unresolved. Here, we used IAV infection of mice in combination with intravital and static imaging to define the spatiotemporal dynamics of lung TRM cells before and after recall infection. CD69+CD103+ TRM cells preferentially localized to lung sites of prior IAV infection, where they exhibited patrolling behavior. After rechallenge, lung TRM cells formed tight clusters in an antigen-dependent manner. Transcriptomic analysis of IAV-specific TRM cells revealed the expression of several factors that regulate myeloid cell biology. In vivo rechallenge experiments demonstrated that protection elicited by TRM cells is orchestrated in part by interferon (IFN)-γ-mediated recruitment of inflammatory monocytes into the lungs. Overall, these data illustrate the dynamic landscapes of CD103+ lung TRM cells that mediate early protective immunity against IAV infection.


Assuntos
Antígenos CD , Linfócitos T CD8-Positivos , Memória Imunológica , Vírus da Influenza A , Cadeias alfa de Integrinas , Pulmão , Células T de Memória , Infecções por Orthomyxoviridae , Animais , Pulmão/imunologia , Pulmão/virologia , Infecções por Orthomyxoviridae/imunologia , Linfócitos T CD8-Positivos/imunologia , Camundongos , Memória Imunológica/imunologia , Cadeias alfa de Integrinas/metabolismo , Vírus da Influenza A/imunologia , Antígenos CD/metabolismo , Células T de Memória/imunologia , Camundongos Endogâmicos C57BL , Interferon gama/metabolismo , Interferon gama/imunologia , Microscopia Intravital , Monócitos/imunologia
4.
Cell ; 175(7): 1744-1755.e15, 2018 12 13.
Artigo em Inglês | MEDLINE | ID: mdl-30503208

RESUMO

Tumor-infiltrating CD8 T cells were found to frequently express the inhibitory receptor NKG2A, particularly in immune-reactive environments and after therapeutic cancer vaccination. High-dimensional cluster analysis demonstrated that NKG2A marks a unique immune effector subset preferentially co-expressing the tissue-resident CD103 molecule, but not immune checkpoint inhibitors. To examine whether NKG2A represented an adaptive resistance mechanism to cancer vaccination, we blocked the receptor with an antibody and knocked out its ligand Qa-1b, the conserved ortholog of HLA-E, in four mouse tumor models. The impact of therapeutic vaccines was greatly potentiated by disruption of the NKG2A/Qa-1b axis even in a PD-1 refractory mouse model. NKG2A blockade therapy operated through CD8 T cells, but not NK cells. These findings indicate that NKG2A-blocking antibodies might improve clinical responses to therapeutic cancer vaccines.


Assuntos
Linfócitos T CD8-Positivos/imunologia , Vacinas Anticâncer , Imunidade Celular , Subfamília C de Receptores Semelhantes a Lectina de Células NK , Proteínas de Neoplasias , Neoplasias Experimentais , Vacinação , Animais , Anticorpos Antineoplásicos/imunologia , Antígenos CD/imunologia , Linfócitos T CD8-Positivos/patologia , Vacinas Anticâncer/imunologia , Vacinas Anticâncer/farmacologia , Linhagem Celular Tumoral , Antígenos de Histocompatibilidade Classe I/imunologia , Humanos , Cadeias alfa de Integrinas/imunologia , Camundongos , Subfamília C de Receptores Semelhantes a Lectina de Células NK/antagonistas & inibidores , Subfamília C de Receptores Semelhantes a Lectina de Células NK/imunologia , Proteínas de Neoplasias/antagonistas & inibidores , Proteínas de Neoplasias/imunologia , Neoplasias Experimentais/imunologia , Neoplasias Experimentais/patologia , Neoplasias Experimentais/terapia , Antígenos HLA-E
6.
Nat Immunol ; 20(11): 1469-1480, 2019 11.
Artigo em Inglês | MEDLINE | ID: mdl-31591568

RESUMO

Tissue-resident memory T cells (TRM cells) are crucial mediators of adaptive immunity in nonlymphoid tissues. However, the functional heterogeneity and pathogenic roles of CD4+ TRM cells that reside within chronic inflammatory lesions remain unknown. We found that CD69hiCD103lo CD4+ TRM cells produced effector cytokines and promoted the inflammation and fibrotic responses induced by chronic exposure to Aspergillus fumigatus. Simultaneously, immunosuppressive CD69hiCD103hiFoxp3+ CD4+ regulatory T cells were induced and constrained the ability of pathogenic CD103lo TRM cells to cause fibrosis. Thus, lung tissue-resident CD4+ T cells play crucial roles in the pathology of chronic lung inflammation, and CD103 expression defines pathogenic effector and immunosuppressive tissue-resident cell subpopulations in the inflamed lung.


Assuntos
Comunicação Celular/imunologia , Tolerância Imunológica , Memória Imunológica , Fibrose Pulmonar/imunologia , Linfócitos T Reguladores/imunologia , Animais , Antígenos CD/metabolismo , Antígenos de Fungos/imunologia , Aspergillus fumigatus/imunologia , Citocinas/metabolismo , Modelos Animais de Doenças , Feminino , Humanos , Cadeias alfa de Integrinas/metabolismo , Pulmão/citologia , Pulmão/imunologia , Pulmão/patologia , Masculino , Camundongos Transgênicos , Fibrose Pulmonar/patologia , Linfócitos T Reguladores/metabolismo
7.
Immunity ; 55(1): 129-144.e8, 2022 01 11.
Artigo em Inglês | MEDLINE | ID: mdl-34910930

RESUMO

Dendritic cells (DCs) patrol tissues and transport antigens to lymph nodes to initiate adaptive immune responses. Within tissues, DCs constitute a complex cell population composed of distinct subsets that can exhibit different activation states and functions. How tissue-specific cues orchestrate DC diversification remains elusive. Here, we show that the small intestine included two pools of cDC2s originating from common pre-DC precursors: (1) lamina propria (LP) CD103+CD11b+ cDC2s that were mature-like proinflammatory cells and (2) intraepithelial cDC2s that exhibited an immature-like phenotype as well as tolerogenic properties. These phenotypes resulted from the action of food-derived retinoic acid (ATRA), which enhanced actomyosin contractility and promoted LP cDC2 transmigration into the epithelium. There, cDC2s were imprinted by environmental cues, including ATRA itself and the mucus component Muc2. Hence, by reaching distinct subtissular niches, DCs can exist as immature and mature cells within the same tissue, revealing an additional mechanism of DC functional diversification.


Assuntos
Células Dendríticas/imunologia , Inflamação/imunologia , Mucosa Intestinal/patologia , Linfócitos T/imunologia , Actomiosina/metabolismo , Animais , Apresentação de Antígeno , Antígenos CD/metabolismo , Antígeno CD11b/metabolismo , Diferenciação Celular , Movimento Celular , Células Cultivadas , Tolerância Imunológica , Cadeias alfa de Integrinas/metabolismo , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Mucina-2/imunologia , Tretinoína/metabolismo
8.
Cell ; 162(6): 1257-70, 2015 Sep 10.
Artigo em Inglês | MEDLINE | ID: mdl-26343581

RESUMO

The mechanisms by which melanoma and other cancer cells evade anti-tumor immunity remain incompletely understood. Here, we show that the growth of tumors formed by mutant Braf(V600E) mouse melanoma cells in an immunocompetent host requires their production of prostaglandin E2, which suppresses immunity and fuels tumor-promoting inflammation. Genetic ablation of cyclooxygenases (COX) or prostaglandin E synthases in Braf(V600E) mouse melanoma cells, as well as in Nras(G12D) melanoma or in breast or colorectal cancer cells, renders them susceptible to immune control and provokes a shift in the tumor inflammatory profile toward classic anti-cancer immune pathways. This mouse COX-dependent inflammatory signature is remarkably conserved in human cutaneous melanoma biopsies, arguing for COX activity as a driver of immune suppression across species. Pre-clinical data demonstrate that inhibition of COX synergizes with anti-PD-1 blockade in inducing eradication of tumors, implying that COX inhibitors could be useful adjuvants for immune-based therapies in cancer patients.


Assuntos
Neoplasias/imunologia , Prostaglandina-Endoperóxido Sintases/metabolismo , Evasão Tumoral , Imunidade Adaptativa , Animais , Anticorpos Monoclonais/administração & dosagem , Antígenos CD/imunologia , Aspirina/administração & dosagem , Linhagem Celular Tumoral , Células Dendríticas/imunologia , Humanos , Imunidade Inata , Imunoterapia , Inflamação/tratamento farmacológico , Inflamação/imunologia , Cadeias alfa de Integrinas/imunologia , Interferons/metabolismo , Melanoma/tratamento farmacológico , Melanoma/imunologia , Camundongos , Neoplasias/tratamento farmacológico , Receptor de Morte Celular Programada 1/antagonistas & inibidores , Prostaglandinas/imunologia , Proteínas Proto-Oncogênicas B-raf/metabolismo
9.
Nature ; 628(8009): 854-862, 2024 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-38570678

RESUMO

The intestinal immune system is highly adapted to maintaining tolerance to the commensal microbiota and self-antigens while defending against invading pathogens1,2. Recognizing how the diverse network of local cells establish homeostasis and maintains it in the complex immune environment of the gut is critical to understanding how tolerance can be re-established following dysfunction, such as in inflammatory disorders. Although cell and molecular interactions that control T regulatory (Treg) cell development and function have been identified3,4, less is known about the cellular neighbourhoods and spatial compartmentalization that shapes microorganism-reactive Treg cell function. Here we used in vivo live imaging, photo-activation-guided single-cell RNA sequencing5-7 and spatial transcriptomics to follow the natural history of T cells that are reactive towards Helicobacter hepaticus through space and time in the settings of tolerance and inflammation. Although antigen stimulation can occur anywhere in the tissue, the lamina propria-but not embedded lymphoid aggregates-is the key microniche that supports effector Treg (eTreg) cell function. eTreg cells are stable once their niche is established; however, unleashing inflammation breaks down compartmentalization, leading to dominance of CD103+SIRPα+ dendritic cells in the lamina propria. We identify and validate the putative tolerogenic interaction between CD206+ macrophages and eTreg cells in the lamina propria and identify receptor-ligand pairs that are likely to govern the interaction. Our results reveal a spatial mechanism of tolerance in the lamina propria and demonstrate how knowledge of local interactions may contribute to the next generation of tolerance-inducing therapies.


Assuntos
Mucosa Intestinal , Mucosa , Linfócitos T Reguladores , Animais , Feminino , Masculino , Camundongos , Antígenos CD/metabolismo , Células Dendríticas/imunologia , Células Dendríticas/metabolismo , Perfilação da Expressão Gênica , Helicobacter hepaticus/imunologia , Infecções por Helicobacter/imunologia , Infecções por Helicobacter/microbiologia , Tolerância Imunológica/imunologia , Inflamação/imunologia , Inflamação/microbiologia , Inflamação/patologia , Cadeias alfa de Integrinas/metabolismo , Mucosa Intestinal/citologia , Mucosa Intestinal/imunologia , Macrófagos/imunologia , Macrófagos/metabolismo , Camundongos Endogâmicos C57BL , Mucosa/citologia , Mucosa/imunologia , Receptores Imunológicos/metabolismo , Receptores Imunológicos/imunologia , Análise da Expressão Gênica de Célula Única , Linfócitos T Reguladores/imunologia , Linfócitos T Reguladores/citologia , Transcriptoma
10.
Nat Immunol ; 18(7): 771-779, 2017 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-28530714

RESUMO

TCRαß+CD4-CD8α+CD8ß- intestinal intraepithelial lymphocytes (CD8αα IELs) are an abundant population of thymus-derived T cells that protect the gut barrier surface. We sought to better define the thymic IEL precursor (IELp) through analysis of its maturation, localization and emigration. We defined two precursor populations among TCRß+CD4-CD8- thymocytes by dependence on the kinase TAK1 and rigorous lineage-exclusion criteria. Those IELp populations included a nascent PD-1+ population and a T-bet+ population that accumulated with age. Both gave rise to intestinal CD8αα IELs after adoptive transfer. The PD-1+ IELp population included more strongly self-reactive clones and was largely restricted by classical major histocompatibility complex (MHC) molecules. Those cells localized to the cortex and efficiently emigrated in a manner dependent on the receptor S1PR1. The T-bet+ IELp population localized to the medulla, included cells restricted by non-classical MHC molecules and expressed the receptor NK1.1, the integrin CD103 and the chemokine receptor CXCR3. The two IELp populations further differed in their use of the T cell antigen receptor (TCR) α-chain variable region (Vα) and ß-chain variable region (Vß). These data provide a foundation for understanding the biology of CD8αα IELs.


Assuntos
Linfócitos T CD8-Positivos/imunologia , Mucosa Intestinal/imunologia , Células Precursoras de Linfócitos T/imunologia , Timócitos/imunologia , Imunidade Adaptativa/imunologia , Transferência Adotiva , Animais , Antígenos CD , Antígenos Ly/imunologia , Antígenos CD8/imunologia , Linhagem da Célula , Movimento Celular/imunologia , Citometria de Fluxo , Imunofluorescência , Antígenos de Histocompatibilidade/imunologia , Imunidade nas Mucosas/imunologia , Cadeias alfa de Integrinas , Mucosa Intestinal/citologia , Linfócitos , Camundongos , Subfamília B de Receptores Semelhantes a Lectina de Células NK/imunologia , Fenótipo , Receptor de Morte Celular Programada 1/imunologia , Receptores de Antígenos de Linfócitos T alfa-beta/imunologia , Receptores CXCR3 , Receptores de Lisoesfingolipídeo/imunologia , Receptores de Esfingosina-1-Fosfato , Proteínas com Domínio T/imunologia , Timócitos/citologia , Timo/citologia
11.
Nat Immunol ; 18(8): 940-950, 2017 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-28628092

RESUMO

Therapies that boost the anti-tumor responses of cytotoxic T lymphocytes (CTLs) have shown promise; however, clinical responses to the immunotherapeutic agents currently available vary considerably, and the molecular basis of this is unclear. We performed transcriptomic profiling of tumor-infiltrating CTLs from treatment-naive patients with lung cancer to define the molecular features associated with the robustness of anti-tumor immune responses. We observed considerable heterogeneity in the expression of molecules associated with activation of the T cell antigen receptor (TCR) and of immunological-checkpoint molecules such as 4-1BB, PD-1 and TIM-3. Tumors with a high density of CTLs showed enrichment for transcripts linked to tissue-resident memory cells (TRM cells), such as CD103, and CTLs from CD103hi tumors displayed features of enhanced cytotoxicity. A greater density of TRM cells in tumors was predictive of a better survival outcome in lung cancer, and this effect was independent of that conferred by CTL density. Here we define the 'molecular fingerprint' of tumor-infiltrating CTLs and identify potentially new targets for immunotherapy.


Assuntos
Adenocarcinoma/imunologia , Carcinoma de Células Escamosas/imunologia , Neoplasias de Cabeça e Pescoço/imunologia , Memória Imunológica/imunologia , Neoplasias Pulmonares/imunologia , Linfócitos do Interstício Tumoral/imunologia , Linfócitos T Citotóxicos/imunologia , Adenocarcinoma/mortalidade , Adulto , Idoso , Idoso de 80 Anos ou mais , Antígenos CD/genética , Carcinoma de Células Escamosas/mortalidade , Feminino , Perfilação da Expressão Gênica , Receptor Celular 2 do Vírus da Hepatite A/genética , Humanos , Imunoterapia , Cadeias alfa de Integrinas/genética , Neoplasias Pulmonares/mortalidade , Linfócitos do Interstício Tumoral/metabolismo , Masculino , Pessoa de Meia-Idade , Prognóstico , Receptor de Morte Celular Programada 1/genética , Receptores de Antígenos de Linfócitos T/genética , Carcinoma de Células Escamosas de Cabeça e Pescoço , Taxa de Sobrevida , Linfócitos T Citotóxicos/metabolismo , Membro 9 da Superfamília de Receptores de Fatores de Necrose Tumoral/genética
12.
Immunity ; 53(2): 335-352.e8, 2020 08 18.
Artigo em Inglês | MEDLINE | ID: mdl-32610077

RESUMO

Dendritic cells (DCs) are antigen-presenting cells controlling T cell activation. In humans, the diversity, ontogeny, and functional capabilities of DC subsets are not fully understood. Here, we identified circulating CD88-CD1c+CD163+ DCs (called DC3s) as immediate precursors of inflammatory CD88-CD14+CD1c+CD163+FcεRI+ DCs. DC3s develop via a specific pathway activated by GM-CSF, independent of cDC-restricted (CDP) and monocyte-restricted (cMoP) progenitors. Like classical DCs but unlike monocytes, DC3s drove activation of naive T cells. In vitro, DC3s displayed a distinctive ability to prime CD8+ T cells expressing a tissue homing signature and the epithelial homing alpha-E integrin (CD103) through transforming growth factor ß (TGF-ß) signaling. In vivo, DC3s infiltrated luminal breast cancer primary tumors, and DC3 infiltration correlated positively with CD8+CD103+CD69+ tissue-resident memory T cells. Together, these findings define DC3s as a lineage of inflammatory DCs endowed with a strong potential to regulate tumor immunity.


Assuntos
Antígenos CD1/metabolismo , Antígenos CD/metabolismo , Antígenos de Diferenciação Mielomonocítica/metabolismo , Neoplasias da Mama/imunologia , Linfócitos T CD8-Positivos/citologia , Células Dendríticas/imunologia , Glicoproteínas/metabolismo , Cadeias alfa de Integrinas/metabolismo , Receptores de Superfície Celular/metabolismo , Animais , Antígenos CD8/metabolismo , Linfócitos T CD8-Positivos/imunologia , Diferenciação Celular/imunologia , Linhagem Celular Tumoral , Fator Estimulador de Colônias de Granulócitos e Macrófagos/metabolismo , Humanos , Ativação Linfocitária/imunologia , Camundongos , Camundongos Endogâmicos NOD , Fator de Crescimento Transformador beta1/metabolismo , Tirosina Quinase 3 Semelhante a fms/metabolismo
13.
Nat Immunol ; 17(12): 1467-1478, 2016 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-27776108

RESUMO

Tissue-resident memory T cells (TRM cells) in the airways mediate protection against respiratory infection. We characterized TRM cells expressing integrin αE (CD103) that reside within the epithelial barrier of human lungs. These cells had specialized profiles of chemokine receptors and adhesion molecules, consistent with their unique localization. Lung TRM cells were poised for rapid responsiveness by constitutive expression of deployment-ready mRNA encoding effector molecules, but they also expressed many inhibitory regulators, suggestive of programmed restraint. A distinct set of transcription factors was active in CD103+ TRM cells, including Notch. Genetic and pharmacological experiments with mice revealed that Notch activity was required for the maintenance of CD103+ TRM cells. We have thus identified specialized programs underlying the residence, persistence, vigilance and tight control of human lung TRM cells.


Assuntos
Linfócitos T CD8-Positivos/fisiologia , Memória Imunológica , Vírus da Influenza A Subtipo H3N2/imunologia , Pulmão/imunologia , Infecções por Orthomyxoviridae/imunologia , Receptor Notch1/metabolismo , Receptor Notch2/metabolismo , Infecções Respiratórias/imunologia , Animais , Antígenos CD/metabolismo , Células Cultivadas , Feminino , Humanos , Cadeias alfa de Integrinas/metabolismo , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Transgênicos , Pessoa de Meia-Idade , Receptor Notch1/genética , Receptor Notch2/genética
14.
Nat Immunol ; 16(4): 406-14, 2015 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-25706747

RESUMO

We report that oral infection with Yersinia pseudotuberculosis results in the development of two distinct populations of pathogen-specific CD8(+) tissue-resident memory T cells (TRM cells) in the lamina propria. CD103(-) T cells did not require transforming growth factor-ß (TGF-ß) signaling but were true resident memory cells. Unlike CD103(+)CD8(+) T cells, which were TGF-ß dependent and were scattered in the tissue, CD103(-)CD8(+) T cells clustered with CD4(+) T cells and CX3CR1(+) macrophages and/or dendritic cells around areas of bacterial infection. CXCR3-dependent recruitment of cells to inflamed areas was critical for development of the CD103(-) population and pathogen clearance. Our studies have identified the 'preferential' development of CD103(-) TRM cells in inflammatory microenvironments within the lamina propria and suggest that this subset has a critical role in controlling infection.


Assuntos
Antígenos CD/imunologia , Linfócitos T CD8-Positivos/imunologia , Cadeias alfa de Integrinas/imunologia , Mucosa Intestinal/imunologia , Infecções por Yersinia pseudotuberculosis/imunologia , Animais , Antígenos CD/genética , Linfócitos T CD4-Positivos/imunologia , Linfócitos T CD4-Positivos/microbiologia , Linfócitos T CD4-Positivos/patologia , Linfócitos T CD8-Positivos/microbiologia , Linfócitos T CD8-Positivos/patologia , Movimento Celular , Microambiente Celular , Células Dendríticas/imunologia , Células Dendríticas/microbiologia , Células Dendríticas/patologia , Regulação da Expressão Gênica , Memória Imunológica , Imunofenotipagem , Cadeias alfa de Integrinas/deficiência , Cadeias alfa de Integrinas/genética , Mucosa Intestinal/microbiologia , Mucosa Intestinal/patologia , Macrófagos/imunologia , Macrófagos/microbiologia , Macrófagos/patologia , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Receptores CXCR3/genética , Receptores CXCR3/imunologia , Transdução de Sinais , Fator de Crescimento Transformador beta/genética , Fator de Crescimento Transformador beta/imunologia , Yersinia pseudotuberculosis/imunologia , Infecções por Yersinia pseudotuberculosis/genética , Infecções por Yersinia pseudotuberculosis/microbiologia , Infecções por Yersinia pseudotuberculosis/patologia
15.
Nat Immunol ; 16(7): 718-28, 2015 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-26054720

RESUMO

Mouse conventional dendritic cells (cDCs) can be classified into two functionally distinct lineages: the CD8α(+) (CD103(+)) cDC1 lineage, and the CD11b(+) cDC2 lineage. cDCs arise from a cascade of bone marrow (BM) DC-committed progenitor cells that include the common DC progenitors (CDPs) and pre-DCs, which exit the BM and seed peripheral tissues before differentiating locally into mature cDCs. Where and when commitment to the cDC1 or cDC2 lineage occurs remains poorly understood. Here we found that transcriptional signatures of the cDC1 and cDC2 lineages became evident at the single-cell level from the CDP stage. We also identified Siglec-H and Ly6C as lineage markers that distinguished pre-DC subpopulations committed to the cDC1 lineage (Siglec-H(-)Ly6C(-) pre-DCs) or cDC2 lineage (Siglec-H(-)Ly6C(+) pre-DCs). Our results indicate that commitment to the cDC1 or cDC2 lineage occurs in the BM and not in the periphery.


Assuntos
Células da Medula Óssea/imunologia , Linhagem da Célula/imunologia , Células Dendríticas/imunologia , Células-Tronco/imunologia , Animais , Antígenos CD/imunologia , Antígenos CD/metabolismo , Antígenos Ly/genética , Antígenos Ly/imunologia , Antígenos Ly/metabolismo , Células da Medula Óssea/metabolismo , Antígeno CD11b/imunologia , Antígeno CD11b/metabolismo , Antígenos CD8/imunologia , Antígenos CD8/metabolismo , Linhagem da Célula/genética , Células Cultivadas , Análise por Conglomerados , Células Dendríticas/metabolismo , Células Dendríticas/ultraestrutura , Citometria de Fluxo , Cadeias alfa de Integrinas/imunologia , Cadeias alfa de Integrinas/metabolismo , Lectinas/genética , Lectinas/imunologia , Lectinas/metabolismo , Camundongos Endogâmicos C57BL , Camundongos Transgênicos , Microscopia Eletrônica de Varredura , Análise de Sequência com Séries de Oligonucleotídeos , Receptores de Superfície Celular/genética , Receptores de Superfície Celular/imunologia , Receptores de Superfície Celular/metabolismo , Análise de Célula Única/métodos , Células-Tronco/metabolismo , Transcriptoma/genética , Transcriptoma/imunologia
16.
Immunity ; 49(3): 449-463.e6, 2018 09 18.
Artigo em Inglês | MEDLINE | ID: mdl-30170811

RESUMO

The migration of mature dendritic cells (DCs) into the draining lymph node (dLN) is thought to depend solely on the chemokine receptor CCR7. CD301b+ DCs migrate into the dLN after cutaneous allergen exposure and are required for T helper 2 (Th2) differentiation. We found that CD301b+ DCs poorly upregulated CCR7 expression after allergen exposure and required a second chemokine signal, mediated by CCR8 on CD301b+ DCs and its ligand CCL8, to exit the subcapsular sinus (SCS) and enter the lymph node (LN) parenchyma. After allergen exposure, CD169+SIGN-R1+ macrophages in interfollicular regions produced CCL8, which synergized with CCL21 in a Src-kinase-dependent manner to promote CD301b+ DC migration. In CCR8-deficient mice, CD301b+ DCs remained in the SCS and were unable to enter the LN parenchyma, resulting in defective Th2 differentiation. We have defined a CCR8-dependent stepwise mechanism of DC-subset-specific migration through which LN CD169+SIGN-R1+ macrophages control the polarization of the adaptive immune response.


Assuntos
Células Dendríticas/fisiologia , Hipersensibilidade/imunologia , Linfonodos/imunologia , Receptores CCR7/metabolismo , Receptores CCR8/metabolismo , Animais , Antígenos CD/metabolismo , Movimento Celular , Células Cultivadas , Quimiocina CCL8/metabolismo , Modelos Animais de Doenças , Feminino , Cadeias alfa de Integrinas/metabolismo , Ativação Linfocitária , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Receptores CCR8/genética
17.
Immunity ; 48(1): 91-106.e6, 2018 01 16.
Artigo em Inglês | MEDLINE | ID: mdl-29343444

RESUMO

CD103+ dendritic cells are critical for cross-presentation of tumor antigens. Here we have shown that during immunotherapy, large numbers of cells expressing CD103 arose in murine tumors via direct differentiation of Ly6c+ monocytic precursors. These Ly6c+CD103+ cells could derive from bone-marrow monocytic progenitors (cMoPs) or from peripheral cells present within the myeloid-derived suppressor cell (MDSC) population. Differentiation was controlled by inflammation-induced activation of the transcription factor p53, which drove upregulation of Batf3 and acquisition of the Ly6c+CD103+ phenotype. Mice with a targeted deletion of p53 in myeloid cells selectively lost the Ly6c+CD103+ population and became unable to respond to multiple forms of immunotherapy and immunogenic chemotherapy. Conversely, increasing p53 expression using a p53-agonist drug caused a sustained increase in Ly6c+CD103+ cells in tumors during immunotherapy, which markedly enhanced the efficacy and duration of response. Thus, p53-driven differentiation of Ly6c+CD103+ monocytic cells represents a potent and previously unrecognized target for immunotherapy.


Assuntos
Células Apresentadoras de Antígenos/fisiologia , Monócitos/fisiologia , Células Mieloides/metabolismo , Neoplasias/imunologia , Proteína Supressora de Tumor p53/metabolismo , Animais , Células Apresentadoras de Antígenos/imunologia , Antígenos CD/metabolismo , Antígenos Ly/metabolismo , Diferenciação Celular/genética , Diferenciação Celular/fisiologia , Linhagem Celular , Citometria de Fluxo , Humanos , Imunoterapia/métodos , Cadeias alfa de Integrinas/metabolismo , Camundongos , Monócitos/imunologia , Células Mieloides/fisiologia
18.
PLoS Pathog ; 20(10): e1012615, 2024 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-39392861

RESUMO

In hepatitis C virus (HCV) infection, CD4+ and CD8+ T cells are crucial for viral control. However, a detailed understanding of the kinetic of CD4+ T cell help and its role in the generation of different CD8+ T cell subsets during acute infection is lacking. The absence of a small HCV animal model has impeded mechanistic studies of hepatic antiviral T cell immunity and HCV vaccine development. In this study, we used a recently developed HCV-related rodent hepacivirus infection mouse model to investigate the impact of CD4+ T cell help on the hepatic CD8+ T cell response and viral clearance during hepacivirus infection in vivo. Our results revealed a specific kinetic of CD4+ T cell dependency during acute infection. Early CD4+ T cell help was essential for CD8+ T cell priming and viral clearance, while CD4+ T cells became dispensable during later stages of acute infection. Effector CD8+ T cells directly mediated timely hepacivirus clearance. An analysis of hepatic CD8+ T cells specific for two different viral epitopes revealed the induction of subsets of liver-homing CD103+CD49a+ and CD103-CD49a+ effector CD8+ T cells with elevated IFN-γ and TNF-α production. CD103+CD49a+ T cells further persisted as tissue-resident memory subsets. A lack of CD4+ T cell help and CD40L-CD40 interactions resulted in reduced effector functions and phenotypical changes in effector CD8+ T cells and a specific loss of the CD103+CD49a+ subset. In summary, our study shows that early CD4+ T cell help through CD40L signaling is essential for priming functional effector CD8+ T cell subsets, including unique liver-homing subsets, and hepacivirus clearance.


Assuntos
Antígenos CD , Linfócitos T CD4-Positivos , Linfócitos T CD8-Positivos , Hepacivirus , Hepatite C , Cadeias alfa de Integrinas , Fígado , Animais , Linfócitos T CD8-Positivos/imunologia , Linfócitos T CD4-Positivos/imunologia , Camundongos , Fígado/imunologia , Fígado/virologia , Hepacivirus/imunologia , Antígenos CD/metabolismo , Antígenos CD/imunologia , Hepatite C/imunologia , Hepatite C/virologia , Cadeias alfa de Integrinas/metabolismo , Cadeias alfa de Integrinas/imunologia , Camundongos Endogâmicos C57BL , Integrina alfa1/imunologia , Integrina alfa1/metabolismo , Modelos Animais de Doenças , Subpopulações de Linfócitos T/imunologia , Subpopulações de Linfócitos T/metabolismo
20.
Nat Immunol ; 15(1): 98-108, 2014 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-24292363

RESUMO

Dendritic cells (DCs) that orchestrate mucosal immunity have been studied in mice. Here we characterized human gut DC populations and defined their relationship to previously studied human and mouse DCs. CD103(+)Sirpα(-) DCs were related to human blood CD141(+) DCs and to mouse intestinal CD103(+)CD11b(-) DCs and expressed markers of cross-presenting DCs. CD103(+)Sirpα(+) DCs aligned with human blood CD1c(+) DCs and mouse intestinal CD103(+)CD11b(+) DCs and supported the induction of regulatory T cells. Both CD103(+) DC subsets induced the TH17 subset of helper T cells, while CD103(-)Sirpα(+) DCs induced the TH1 subset of helper T cells. Comparative analysis of transcriptomes revealed conserved transcriptional programs among CD103(+) DC subsets and identified a selective role for the transcriptional repressors Bcl-6 and Blimp-1 in the specification of CD103(+)CD11b(-) DCs and intestinal CD103(+)CD11b(+) DCs, respectively. Our results highlight evolutionarily conserved and divergent programming of intestinal DCs.


Assuntos
Diferenciação Celular/imunologia , Células Dendríticas/imunologia , Mucosa Intestinal/imunologia , Transcriptoma/imunologia , Animais , Antígenos CD/imunologia , Antígenos CD/metabolismo , Antígenos CD1/imunologia , Antígenos CD1/metabolismo , Antígeno CD11b/imunologia , Antígeno CD11b/metabolismo , Diferenciação Celular/genética , Células Cultivadas , Análise por Conglomerados , Apresentação Cruzada/genética , Apresentação Cruzada/imunologia , Células Dendríticas/metabolismo , Citometria de Fluxo , Glicoproteínas/imunologia , Glicoproteínas/metabolismo , Humanos , Cadeias alfa de Integrinas/imunologia , Cadeias alfa de Integrinas/metabolismo , Integrinas/genética , Integrinas/imunologia , Camundongos , Camundongos Knockout , Camundongos Transgênicos , Microscopia Confocal , Análise de Sequência com Séries de Oligonucleotídeos , Receptores de Quimiocinas/genética , Receptores de Quimiocinas/imunologia , Linfócitos T Reguladores/imunologia , Linfócitos T Reguladores/metabolismo , Células Th17/imunologia , Células Th17/metabolismo , Transcriptoma/genética
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