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1.
Cell Host Microbe ; 31(6): 978-992.e5, 2023 06 14.
Article de Anglais | MEDLINE | ID: mdl-37269834

RÉSUMÉ

The ability of Mycobacterium tuberculosis (Mtb) to establish latency affects disease and response to treatment. The host factors that influence the establishment of latency remain elusive. We engineered a multi-fluorescent Mtb strain that reports survival, active replication, and stressed non-replication states and determined the host transcriptome of the infected macrophages in these states. Additionally, we conducted a genome-wide CRISPR screen to identify host factors that modulated the phenotypic state of Mtb. We validated hits in a phenotype-specific manner and prioritized membrane magnesium transporter 1 (MMGT1) for a detailed mechanistic investigation. Mtb infection of MMGT1-deficient macrophages promoted a switch to persistence, upregulated lipid metabolism genes, and accumulated lipid droplets during infection. Targeting triacylglycerol synthesis reduced both droplet formation and Mtb persistence. The orphan G protein-coupled receptor GPR156 is a key inducer of droplet accumulation in ΔMMGT1 cells. Our work uncovers the role of MMGT1-GPR156-lipid droplets in the induction of Mtb persistence.


Sujet(s)
Mycobacterium tuberculosis , Mycobacterium tuberculosis/génétique , Gouttelettes lipidiques/métabolisme , Macrophages/microbiologie , Métabolisme lipidique
2.
Nat Commun ; 14(1): 1493, 2023 03 17.
Article de Anglais | MEDLINE | ID: mdl-36932082

RÉSUMÉ

Dectin-1 (gene Clec7a), a receptor for ß-glucans, plays important roles in the host defense against fungi and immune homeostasis of the intestine. Although this molecule is also suggested to be involved in the regulation of tumorigenesis, the role in intestinal tumor development remains to be elucidated. In this study, we find that azoxymethane-dextran-sodium-sulfate-induced and ApcMin-induced intestinal tumorigenesis are suppressed in Clec7a-/- mice independently from commensal microbiota. Dectin-1 is preferentially expressed on myeloid-derived suppressor cells (MDSCs). In the Clec7a-/- mouse colon, the proportion of MDSCs and MDSC-derived prostaglandin E2 (PGE2) levels are reduced, while the expression of IL-22 binding protein (IL-22BP; gene Il22ra2) is upregulated. Dectin-1 signaling induces PGE2-synthesizing enzymes and PGE2 suppresses Il22ra2 expression in vitro and in vivo. Administration of short chain ß-glucan laminarin, an antagonist of Dectin-1, suppresses the development of mouse colorectal tumors. Furthermore, in patients with colorectal cancer (CRC), the expression of CLEC7A is also observed in MDSCs and correlated with the death rate and tumor severity. Dectin-1 signaling upregulates PGE2-synthesizing enzyme expression and PGE2 suppresses IL22RA2 expression in human CRC-infiltrating cells. These observations indicate a role of the Dectin-1-PGE2-IL-22BP axis in regulating intestinal tumorigenesis, suggesting Dectin-1 as a potential target for CRC therapy.


Sujet(s)
Tumeurs colorectales , Lectines de type C , Cellules myéloïdes suppressives , Animaux , Humains , Souris , Carcinogenèse/génétique , Transformation cellulaire néoplasique/génétique , Tumeurs colorectales/anatomopathologie , Dinoprostone/métabolisme , Lectines de type C/génétique , Cellules myéloïdes suppressives/métabolisme ,
3.
Proc Natl Acad Sci U S A ; 117(46): 28930-28938, 2020 11 17.
Article de Anglais | MEDLINE | ID: mdl-33139556

RÉSUMÉ

Common genetic variants interact with environmental factors to impact risk of heritable diseases. A notable example of this is a single-nucleotide variant in the Solute Carrier Family 39 Member 8 (SLC39A8) gene encoding the missense variant A391T, which is associated with a variety of traits ranging from Parkinson's disease and neuropsychiatric disease to cardiovascular and metabolic diseases and Crohn's disease. The remarkable extent of pleiotropy exhibited by SLC39A8 A391T raises key questions regarding how a single coding variant can contribute to this diversity of clinical outcomes and what is the mechanistic basis for this pleiotropy. Here, we generate a murine model for the Slc39a8 A391T allele and demonstrate that these mice exhibit Mn deficiency in the colon associated with impaired intestinal barrier function and epithelial glycocalyx disruption. Consequently, Slc39a8 A391T mice exhibit increased sensitivity to epithelial injury and pathological inflammation in the colon. Taken together, our results link a genetic variant with a dietary trace element to shed light on a tissue-specific mechanism of disease risk based on impaired intestinal barrier integrity.


Sujet(s)
Transporteurs de cations/génétique , Maladie de Crohn/génétique , Manganèse/métabolisme , Allèles , Animaux , Transporteurs de cations/métabolisme , Techniques de knock-in de gènes/méthodes , Homéostasie/génétique , Humains , Inflammation/génétique , Muqueuse intestinale/métabolisme , Intestins/physiologie , Manganèse/physiologie , Souris , Mutation faux-sens/génétique , Phénotype , Facteurs de risque
4.
J Immunol ; 205(2): 414-424, 2020 07 15.
Article de Anglais | MEDLINE | ID: mdl-32522834

RÉSUMÉ

Genome-wide association studies have identified common genetic variants impacting human diseases; however, there are indications that the functional consequences of genetic polymorphisms can be distinct depending on cell type-specific contexts, which produce divergent phenotypic outcomes. Thus, the functional impact of genetic variation and the underlying mechanisms of disease risk are modified by cell type-specific effects of genotype on pathological phenotypes. In this study, we extend these concepts to interrogate the interdependence of cell type- and stimulation-specific programs influenced by the core autophagy gene Atg16L1 and its T300A coding polymorphism identified by genome-wide association studies as linked with increased risk of Crohn's disease. We applied a stimulation-based perturbational profiling approach to define Atg16L1 T300A phenotypes in dendritic cells and T lymphocytes. Accordingly, we identified stimulus-specific transcriptional signatures revealing T300A-dependent functional phenotypes that mechanistically link inflammatory cytokines, IFN response genes, steroid biosynthesis, and lipid metabolism in dendritic cells and iron homeostasis and lysosomal biogenesis in T lymphocytes. Collectively, these studies highlight the combined effects of Atg16L1 genetic variation and stimulatory context on immune function.


Sujet(s)
Protéines associées à l'autophagie/métabolisme , Maladie de Crohn/métabolisme , Cellules dendritiques/physiologie , Génotype , Lymphocytes T/physiologie , Animaux , Protéines associées à l'autophagie/génétique , Cellules cultivées , Maladie de Crohn/génétique , Prédisposition génétique à une maladie , Humains , Souris , Souris de lignée C57BL , Souris knockout , Spécificité d'organe , Phénotype , Polymorphisme génétique , Risque , Activation de la transcription
5.
Nat Immunol ; 19(7): 755-765, 2018 07.
Article de Anglais | MEDLINE | ID: mdl-29915298

RÉSUMÉ

The cytokines IL-17A and IL-17F have 50% amino-acid identity and bind the same receptor; however, their functional differences have remained obscure. Here we found that Il17f-/- mice resisted chemically induced colitis, but Il17a-/- mice did not, and that Il17f-/- CD45RBhiCD4+ T cells induced milder colitis in lymphocyte-deficient Rag2-/- mice, accompanied by an increase in intestinal regulatory T cells (Treg cells). Clostridium cluster XIVa in colonic microbiota capable of inducing Treg cells was increased in both Il17f-/- mice and mice given transfer Il17f-/- T cells, due to decreased expression of a group of antimicrobial proteins. There was substantial production of IL-17F, but not of IL-17A, not only by naive T cells but also by various colon-resident cells under physiological conditions. Furthermore, antibody to IL-17F suppressed the development of colitis, but antibody to IL-17A did not. These observations suggest that IL-17F is an effective target for the treatment of colitis.


Sujet(s)
Colite/immunologie , Microbiome gastro-intestinal , Interleukine-17/antagonistes et inhibiteurs , Lymphocytes T régulateurs/immunologie , Animaux , Cellules cultivées , Clostridium/croissance et développement , Clostridium/isolement et purification , Colite/traitement médicamenteux , Interleukine-17/génétique , Interleukine-17/physiologie , Intestins/immunologie , Souris , Souris de lignée C57BL , Souris knockout , Phospholipases A2/biosynthèse , Phospholipases A2/génétique , Prevotella/isolement et purification , Pancreatic ribonuclease/biosynthèse , Pancreatic ribonuclease/génétique , bêta-Défensines/biosynthèse
6.
Cell ; 171(2): 398-413.e21, 2017 Oct 05.
Article de Anglais | MEDLINE | ID: mdl-28942919

RÉSUMÉ

A fundamental challenge in immunology is to decipher the principles governing immune responses at the whole-organism scale. Here, using a comparative infection model, we observe immune signal propagation within and between organs to obtain a dynamic map of immune processes at the organism level. We uncover two inter-organ mechanisms of protective immunity mediated by soluble and cellular factors. First, analyzing ligand-receptor connectivity across tissues reveals that type I IFNs trigger a whole-body antiviral state, protecting the host within hours after skin vaccination. Second, combining parabiosis, single-cell analyses, and gene knockouts, we uncover a multi-organ web of tissue-resident memory T cells that functionally adapt to their environment to stop viral spread across the organism. These results have implications for manipulating tissue-resident memory T cells through vaccination and open up new lines of inquiry for the analysis of immune responses at the organism level.


Sujet(s)
Mémoire immunologique , Interféron de type I/immunologie , Virus de la vaccine/physiologie , Vaccine/immunologie , Vaccine/prévention et contrôle , Vaccins antiviraux/immunologie , Administration par voie cutanée , Animaux , Femelle , Analyse de profil d'expression de gènes , Souris , Souris de lignée C57BL , Spécificité d'organe , Organismes exempts d'organismes pathogènes spécifiques , Lymphocytes T/immunologie , Vaccins antiviraux/administration et posologie
7.
Cell Host Microbe ; 18(2): 183-97, 2015 Aug 12.
Article de Anglais | MEDLINE | ID: mdl-26269954

RÉSUMÉ

Dectin-1, the receptor for ß-glucans, protects the host against fungal infection; however, its role in intestinal immunity is incompletely understood. We found that Dectin-1-deficient (Clec7a(-/-)) mice were refractory to both dextran sodium sulfate (DSS)- and CD45RB(high)CD4(+) T cell-induced colitis, and that this resistance was associated with an increase in regulatory T (Treg) cells. The proportion of lactobacilli, especially Lactobacillus murinus, in the commensal microflora was increased in Clec7a(-/-) mouse colons, and accompanied by a decrease in antimicrobial peptides induced by Dectin-1 signaling. L. murinus colonization increased Treg cells in the colon. Oral administration of laminarin, a Dectin-1 antagonist, suppressed the development of DSS-colitis, associated with an increase of L. murinus and Treg cells. Human patients with inflammatory bowel disease were found to have a decreased proportion of closely related Lactobacillus species. These observations suggest that Dectin-1 regulates the homeostasis of intestinal immunity by controlling Treg cell differentiation through modification of microbiota.


Sujet(s)
Colite/anatomopathologie , Côlon/immunologie , Côlon/anatomopathologie , Lactobacillus/immunologie , Lectines de type C/antagonistes et inhibiteurs , Transduction du signal , Lymphocytes T régulateurs/immunologie , Animaux , Lectines de type C/génétique , Souris , Souris knockout
8.
Front Microbiol ; 4: 377, 2013.
Article de Anglais | MEDLINE | ID: mdl-24381568

RÉSUMÉ

Attempts to create mouse models for AIDS have been hampered by species barriers in HIV-1 infection. We previously showed that the nuclear accumulation of HIV-1 preintegration complex (PIC) was suppressed in mouse cells. Lens epithelium-derived growth factor (LEDGF/p75) is a host factor identified as a binding partner of integrase (IN), and has been suggested to be involved in promoting viral integration by tethering PIC to the chromatin, which are observed as nuclear accumulation of IN by LEDGF/p75. Therefore, we here hypothesized that this host factor might act as one of the species-specific barriers in mouse cells. We generated transgenic (Tg) mice that constitutively express human (h) LEDGF/p75. The GFP-fused IN was efficiently accumulated into the nucleus of hLEDGF/p75 expressing Tg mouse embryonic fibroblast (MEF) cells in contrast to the control MEF cells. Importantly, hLEDGF/p75 Tg MEF cells were significantly more susceptible to HIV-1 infection. These results suggest that LEDGF/p75 is one of the host factors that constitute species barrier against HIV-1 in mouse cells.

9.
Int Immunol ; 22(6): 469-78, 2010 Jun.
Article de Anglais | MEDLINE | ID: mdl-20504885

RÉSUMÉ

In the course of the development of acquired immunodeficiency syndrome (AIDS), bacterial infection causes deleterious effects on the progression of the disease; bacterial LPS in the circulation activate immune cells, resulting in the acceleration of HIV replication. However, the precise HIV activation mechanisms in infected hosts remain largely unknown. Previously, we generated transgenic (Tg) mice carrying the HIV type I (HIV-1) genome and showed that LPS induces the activation of HIV-1 in splenocytes through the induction of tumor necrosis factor (TNF) and IL-1, although similarly induced IFN-gamma and IL-6 are not involved. In this study, we analyzed the mechanisms of HIV-1 activation in macrophages using these HIV-1 Tg mice, because macrophages are one of the major reservoirs of HIV-1. In contrast to splenocytes, direct Toll-like receptor (TLR) 4 signaling rather than TLR-induced pro-inflammatory cytokines was responsible for the LPS-induced activation of HIV-1 in macrophages, because the time course of HIV-1 activation was earlier than that observed in splenocytes and TNF neutralization did not inhibit the activation. p38 mitogen-activated protein kinase (MAPK) and nuclear factor kappa B (NF-kappaB) activation, but neither extracellular signal-regulated kinase nor c-Jun N-terminal kinase activation, were required for the activation, because only inhibitors for p38 MAPK and NF-kappaB suppressed activation of HIV-1. Furthermore, we showed that myeloid differentiation primary response gene (MyD) 88, rather than Toll/IL-1R domain-containing adaptor inducing IFN-beta (TRIF), was required as an adaptor molecule for this activation using Myd88(-/-) mice and Dynasore, a specific inhibitor for TRIF, and small interfering RNAs specific for Myd88 and Trif. These observations suggest that suppression of these molecules, which are involved in the TLR4-MyD88 pathway and the downstream p38 MAPK and NF-kappaB pathways, should be beneficial to prevent development of AIDS in HIV-1-infected people.


Sujet(s)
Syndrome d'immunodéficience acquise/immunologie , Syndrome d'immunodéficience acquise/virologie , VIH-1 (Virus de l'Immunodéficience Humaine de type 1)/physiologie , Lipopolysaccharides/métabolisme , Macrophages péritonéaux/immunologie , Protéines adaptatrices du transport vésiculaire/génétique , Protéines adaptatrices du transport vésiculaire/métabolisme , Animaux , Cellules cultivées , Humains , Lipopolysaccharides/immunologie , Macrophages péritonéaux/effets des médicaments et des substances chimiques , Macrophages péritonéaux/métabolisme , Macrophages péritonéaux/anatomopathologie , Macrophages péritonéaux/virologie , Souris , Souris de lignée C3H , Souris de lignée C57BL , Souris knockout , Souris transgéniques , Facteur de différenciation myéloïde-88/génétique , Facteur de différenciation myéloïde-88/métabolisme , Facteur de transcription NF-kappa B/métabolisme , Petit ARN interférent/génétique , Transduction du signal/effets des médicaments et des substances chimiques , Transduction du signal/génétique , Récepteur de type Toll-4/métabolisme , Activation virale/effets des médicaments et des substances chimiques , Activation virale/génétique , p38 Mitogen-Activated Protein Kinases/métabolisme
10.
Immunity ; 30(1): 108-19, 2009 Jan 16.
Article de Anglais | MEDLINE | ID: mdl-19144317

RÉSUMÉ

Interleukin-17A (IL-17A) is a cytokine produced by T helper 17 (Th17) cells and plays important roles in the development of inflammatory diseases. Although IL-17F is highly homologous to IL-17A and binds the same receptor, the functional roles of this molecule remain largely unknown. Here, we demonstrated with Il17a(-/-), Il17f(-/-), and Il17a(-/-)Il17f(-/-) mice that IL-17F played only marginal roles, if at all, in the development of delayed-type and contact hypersensitivities, autoimmune encephalomyelitis, collagen-induced arthritis, and arthritis in Il1rn(-/-) mice. In contrast, both IL-17F and IL-17A were involved in host defense against mucoepithelial infection by Staphylococcus aureus and Citrobacter rodentium. IL-17A was produced mainly in T cells, whereas IL-17F was produced in T cells, innate immune cells, and epithelial cells. Although only IL-17A efficiently induced cytokines in macrophages, both cytokines activated epithelial innate immune responses. These observations indicate that IL-17A and IL-17F have overlapping yet distinct roles in host immune and defense mechanisms.


Sujet(s)
Arthrite/immunologie , Infections bactériennes/immunologie , Cytokines/métabolisme , Hypersensibilité/immunologie , Interleukine-17/classification , Interleukine-17/physiologie , Animaux , Arthrite/génétique , Infections bactériennes/prévention et contrôle , Cellules cultivées , Cytométrie en flux , Interleukine-17/génétique , Souris , Souris knockout
11.
J Virol ; 81(2): 677-88, 2007 Jan.
Article de Anglais | MEDLINE | ID: mdl-17079325

RÉSUMÉ

Mouse cells do not support human immunodeficiency virus type 1 (HIV-1) replication because of host range barriers at steps including virus entry, transcription, RNA splicing, polyprotein processing, assembly, and release. The exact mechanisms for the suppression, however, are not completely understood. To elucidate further the barriers against HIV-1 replication in mouse cells, we analyzed the replication of the virus in lymphocytes from human CD4/CXCR4 transgenic mice. Although primary splenocytes and thymocytes allowed the entry and reverse transcription of HIV-1, the integration efficiency of the viral DNA was greatly reduced in these cells relative to human peripheral blood mononuclear cells, suggesting an additional block(s) before or at the point of host chromosome integration of the viral DNA. Preintegration processes were further analyzed using HIV-1 pseudotyped viruses. The reverse transcription step of HIV-1 pseudotyped with the envelope of murine leukemia virus or vesicular stomatitis virus glycoprotein was efficiently supported in both human and mouse cells, but nuclear import of the preintegration complex (PIC) of HIV-1 was blocked in mouse cells. We found that green fluorescent protein (GFP)-labeled HIV-1 integrase, which is known to be important in the nuclear localization of the PIC, could not be imported into the nucleus of mouse cells, in contrast to human cells. On the other hand, GFP-Vpr localized exclusively to the nuclei of both mouse and human cells. These observations suggest that, due to the dysfunction of integrase, the nuclear localization of PIC is suppressed in mouse cells.


Sujet(s)
Transport nucléaire actif , Noyau de la cellule/métabolisme , VIH-1 (Virus de l'Immunodéficience Humaine de type 1)/pathogénicité , Animaux , Antigènes CD4/génétique , Antigènes CD4/métabolisme , Lignée cellulaire , ADN viral/génétique , Protéines à fluorescence verte/génétique , Protéines à fluorescence verte/métabolisme , Intégrase du VIH/génétique , Intégrase du VIH/métabolisme , VIH-1 (Virus de l'Immunodéficience Humaine de type 1)/physiologie , Humains , Lymphocytes/virologie , Souris , Souris transgéniques , Récepteurs CXCR4/génétique , Récepteurs CXCR4/métabolisme , Intégration virale , Réplication virale
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