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1.
Sci Immunol ; 9(94): eadg8817, 2024 Apr 19.
Article in English | MEDLINE | ID: mdl-38640251

ABSTRACT

CD4+ regulatory T (Treg) cells accumulate in the tumor microenvironment (TME) and suppress the immune system. Whether and how metabolite availability in the TME influences Treg cell differentiation is not understood. Here, we measured 630 metabolites in the TME and found that serine and palmitic acid, substrates required for the synthesis of sphingolipids, were enriched. A serine-free diet or a deficiency in Sptlc2, the rate-limiting enzyme catalyzing sphingolipid synthesis, suppressed Treg cell accumulation and inhibited tumor growth. Sphinganine, an intermediate metabolite in sphingolipid synthesis, physically interacted with the transcription factor c-Fos. Sphinganine c-Fos interactions enhanced the genome-wide recruitment of c-Fos to regions near the transcription start sites of target genes including Pdcd1 (encoding PD-1), which promoted Pdcd1 transcription and increased inducible Treg cell differentiation in vitro in a PD-1-dependent manner. Thus, Sptlc2-mediated sphingolipid synthesis translates the extracellular information of metabolite availability into nuclear signals for Treg cell differentiation and limits antitumor immunity.


Subject(s)
Neoplasms , Sphingosine , T-Lymphocytes, Regulatory , Programmed Cell Death 1 Receptor/metabolism , Serine/metabolism , Sphingolipids/metabolism , Sphingosine/analogs & derivatives , Tumor Microenvironment
2.
Nat Immunol ; 24(11): 1921-1932, 2023 Nov.
Article in English | MEDLINE | ID: mdl-37813964

ABSTRACT

The malate shuttle is traditionally understood to maintain NAD+/NADH balance between the cytosol and mitochondria. Whether the malate shuttle has additional functions is unclear. Here we show that chronic viral infections induce CD8+ T cell expression of GOT1, a central enzyme in the malate shuttle. Got1 deficiency decreased the NAD+/NADH ratio and limited antiviral CD8+ T cell responses to chronic infection; however, increasing the NAD+/NADH ratio did not restore T cell responses. Got1 deficiency reduced the production of the ammonia scavenger 2-ketoglutarate (2-KG) from glutaminolysis and led to a toxic accumulation of ammonia in CD8+ T cells. Supplementation with 2-KG assimilated and detoxified ammonia in Got1-deficient T cells and restored antiviral responses. These data indicate that the major function of the malate shuttle in CD8+ T cells is not to maintain the NAD+/NADH balance but rather to detoxify ammonia and enable sustainable ammonia-neutral glutamine catabolism in CD8+ T cells during chronic infection.


Subject(s)
Ketoglutaric Acids , NAD , Humans , Oxidation-Reduction , NAD/metabolism , Ketoglutaric Acids/metabolism , Ammonia , Malates/metabolism , CD8-Positive T-Lymphocytes/metabolism , Persistent Infection , Antiviral Agents
3.
Viruses ; 15(4)2023 04 05.
Article in English | MEDLINE | ID: mdl-37112899

ABSTRACT

RNA-dependent RNA polymerases (RDRs) are key players in the antiviral defence mediated by RNA silencing in plants. RDR6 is one of the major components of the process, regulating the infection of certain RNA viruses. To better clarify its function against DNA viruses, we analyzed the effect of RDR6 inactivation (RDR6i) in N. benthamiana plants on two phloem-limited begomoviruses, the bipartite Abutilon mosaic virus (AbMV) and the monopartite tomato yellow leaf curl Sardinia virus (TYLCSV). We observed exacerbated symptoms and DNA accumulation for the New World virus AbMV in RDR6i plants, varying with the plant growth temperature (ranging from 16 °C to 33 °C). However, for the TYLCSV of Old World origin, RDR6 depletion only affected symptom expression at elevated temperatures and to a minor extent; it did not affect the viral titre. The accumulation of viral siRNA differed between the two begomoviruses, being increased in RDR6i plants infected by AbMV but decreased in those infected by TYLCSV compared to wild-type plants. In situ hybridization revealed a 6.5-fold increase in the number of AbMV-infected nuclei in RDR6i plants but without egress from the phloem tissues. These results support the concept that begomoviruses adopt different strategies to counteract plant defences and that TYLCSV evades the functions exerted by RDR6 in this host.


Subject(s)
Begomovirus , Nicotiana , Begomovirus/physiology , RNA-Dependent RNA Polymerase/genetics , RNA-Dependent RNA Polymerase/metabolism , Plants , RNA Interference , Plant Diseases
4.
Eur J Immunol ; 53(1): e2149400, 2023 01.
Article in English | MEDLINE | ID: mdl-36263815

ABSTRACT

While the immunosuppressive function of regulatory T (Treg) cells has been extensively studied, their immune-supportive roles have been less well investigated. Using a lymphocytic choriomeningitis virus (LCMV) Armstrong infection mouse model, we found that Treg cell-derived interleukin (IL)-15 is required for long-term maintenance of the KLRG1+ IL-7Rα- CD62L- terminal effector memory CD8+ T (tTEM) cell subset, but dispensable for the suppressive function of Treg cells themselves. In contrast, deletion of Il15 from other sources, including myeloid cells and muscles, did not affect the composition of the memory CD8+ T cell pool. Our findings identify Treg cells as an essential IL-15 source maintaining tTEM cells and suggest that Treg cells promote the diversity of immunological memory.


Subject(s)
Lymphocytic Choriomeningitis , T-Lymphocytes, Regulatory , Mice , Animals , Lymphocytic choriomeningitis virus , Immunologic Memory , Interleukin-15 , CD8-Positive T-Lymphocytes , Mice, Inbred C57BL , Interleukin-2
5.
Int J Cancer ; 151(5): 797-808, 2022 09 01.
Article in English | MEDLINE | ID: mdl-35499751

ABSTRACT

Memory CD8+ T cells mature after antigen clearance and ultimately express CD8 protein at levels higher than those detected in effector CD8+ T cells. However, it is not clear whether engagement of CD8 in the absence of antigenic stimulation will result in the functional activation of T cells. Here, we found that CD8 antibody-mediated activation of memory CD8+ T cells triggered T cell receptor (TCR) downstream signaling, enhanced T cell-mediated cytotoxicity and promoted effector cytokine production in a glucose- and glutamine-dependent manner. Furthermore, pretreatment of memory CD8+ T cells with an agonistic anti-CD8 antibody enhanced their tumoricidal activity in vitro and in vivo. From these studies, we conclude that CD8 agonism activates glucose and glutamine metabolism in memory T cells and enhances the efficacy of memory T cell-based cancer immunotherapy.


Subject(s)
CD8-Positive T-Lymphocytes , Glutamine , Glucose/metabolism , Glutamine/metabolism , Humans , Immunologic Memory , Lymphocyte Activation , Memory T Cells , Receptors, Antigen, T-Cell , Signal Transduction
6.
Sci Immunol ; 7(71): eabh1873, 2022 05 27.
Article in English | MEDLINE | ID: mdl-35622904

ABSTRACT

T cells become functionally exhausted in tumors, limiting T cell-based immunotherapies. Although several transcription factors regulating the exhausted T (Tex) cell differentiation are known, comparatively little is known about the regulators of Tex cell survival. Here, we reported that the regulator of G protein signaling 16 (Rgs-16) suppressed Tex cell survival in tumors. By performing lineage tracing using reporter mice in which mCherry marked Rgs16-expressing cells, we identified that Rgs16+CD8+ tumor-infiltrating lymphocytes (TILs) were terminally differentiated, expressed low levels of T cell factor 1 (Tcf1), and underwent apoptosis as early as 6 days after the onset of Rgs16 expression. Rgs16 deficiency inhibited CD8+ T cell apoptosis and promoted antitumor effector functions of CD8+ T cells. Furthermore, Rgs16 deficiency synergized with programmed cell death protein 1 (PD-1) blockade to enhance antitumor CD8+ T cell responses. Proteomics revealed that Rgs16 interacted with the scaffold protein IQGAP1, suppressed the recruitment of Ras and B-Raf, and inhibited Erk1 activation. Rgs16 deficiency enhanced antitumor CD8+ TIL survival in an Erk1-dependent manner. Loss of function of Erk1 decreased antitumor functions of Rgs16-deficient CD8+ T cells. RGS16 mRNA expression levels in CD8+ TILs of patients with melanoma negatively correlated with genes associated with T cell stemness, such as SELL, TCF7, and IL7R, and predicted low responses to PD-1 blockade. This study uncovers Rgs16 as an inhibitor of Tex cell survival in tumors and has implications for improving T cell-based immunotherapies.


Subject(s)
CD8-Positive T-Lymphocytes , Programmed Cell Death 1 Receptor , RGS Proteins/immunology , Animals , Cell Differentiation , Humans , Immunotherapy , Lymphocytes, Tumor-Infiltrating , Mice
7.
Sci Adv ; 6(24): eaba3458, 2020 06.
Article in English | MEDLINE | ID: mdl-32582853

ABSTRACT

CD8+ T cells become functionally impaired or "exhausted" in chronic infections, accompanied by unwanted body weight reduction and muscle mass loss. Whether muscle regulates T cell exhaustion remains incompletely understood. We report that mouse skeletal muscle increased interleukin (IL)-15 production during LCMV clone 13 chronic infection. Muscle-specific ablation of Il15 enhanced the CD8+ T cell exhaustion phenotype. Muscle-derived IL-15 was required to maintain a population of CD8+CD103+ muscle-infiltrating lymphocytes (MILs). MILs resided in a less inflamed microenvironment, expressed more T cell factor 1 (Tcf1), and had higher proliferative potential than splenic T cells. MILs differentiated into functional effector T cells after reentering lymphoid tissues. Increasing muscle mass via muscle-specific inhibition of TGFß signaling enhanced IL-15 production and antiviral CD8+ T cell responses. We conclude that skeletal muscle antagonizes T cell exhaustion by protecting T cell proliferative potential from inflammation and replenishing the effector T cell progeny pool in lymphoid organs.

8.
Cell Rep ; 31(1): 107484, 2020 04 07.
Article in English | MEDLINE | ID: mdl-32268106

ABSTRACT

T cell factor 1 (Tcf1) promotes the central memory CD8+ T (TCM) cell differentiation and stemness in lymphoid tissues after systemic infections. It remains unclear whether Tcf1 regulates the CD103high tissue-resident memory CD8+ T (TRM) cell formation in non-lymphoid tissues after mucosal infections. We find that Tcf1 is progressively decreased during lung TRM cell formation. Abrogation of transforming growth factor ß (TGF-ß) signaling is associated with a loss of CD103+ and reciprocal gain of Tcf1+ cells among TRM precursors in vivo. T-cell-specific ablation of Tcf7 enhances CD103 protein expression in TRM cells and precursors and increases TRM cell numbers after primary and secondary infections. Tcf1 directly binds to the Itgae (encoding CD103) locus and partly inhibits TGF-ß-induced CD103 expression. Our study suggests that memory T cell tissue residency and homeostatic proliferation are reciprocally regulated by Tcf1. Tcf1 may play either immunosupportive or immunosuppressive roles in CD8+ T cells, depending on systemic or mucosal infections.


Subject(s)
Antigens, CD/metabolism , Hepatocyte Nuclear Factor 1-alpha/genetics , Integrin alpha Chains/metabolism , Animals , Antigens, CD/genetics , Antigens, CD/immunology , CD8-Positive T-Lymphocytes/immunology , CD8-Positive T-Lymphocytes/physiology , Cell Differentiation/genetics , Female , Hepatocyte Nuclear Factor 1-alpha/metabolism , Immunologic Memory/genetics , Immunologic Memory/immunology , Integrin alpha Chains/genetics , Integrin alpha Chains/immunology , Lung/metabolism , Lymphocyte Activation/immunology , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , T Cell Transcription Factor 1/genetics , T Cell Transcription Factor 1/metabolism , Transforming Growth Factor beta/metabolism
9.
Mol Biol Cell ; 31(1): 7-17, 2020 01 01.
Article in English | MEDLINE | ID: mdl-31746669

ABSTRACT

The unfolded protein response (UPR) senses defects in the endoplasmic reticulum (ER) and orchestrates a complex program of adaptive cellular remodeling. Increasing evidence suggests an important relationship between lipid homeostasis and the UPR. Defects in the ER membrane induce the UPR, and the UPR in turn controls the expression of some lipid metabolic genes. Among lipid species, the very-long-chain fatty acids (VLCFAs) are relatively rare and poorly understood. Here, we show that loss of the VLCFA-coenzyme A synthetase Fat1, which is essential for VLCFA utilization, results in ER stress with compensatory UPR induction. Comprehensive lipidomic analyses revealed a dramatic increase in membrane saturation in the fat1Δ mutant, likely accounting for UPR induction. In principle, this increased membrane saturation could reflect adaptive membrane remodeling or an adverse effect of VLCFA dysfunction. We provide evidence supporting the latter, as the fat1Δ mutant showed defects in the function of Ole1, the sole fatty acyl desaturase in yeast. These results indicate that VLCFAs play essential roles in protein quality control and membrane homeostasis and suggest an unexpected requirement for VLCFAs in Ole1 function.


Subject(s)
Endoplasmic Reticulum Stress/physiology , Endoplasmic Reticulum/metabolism , Unfolded Protein Response/physiology , Coenzyme A Ligases/metabolism , Endoplasmic Reticulum/physiology , Fatty Acid Transport Proteins/metabolism , Fatty Acids/metabolism , Homeostasis , Lipid Metabolism/physiology , Lipids/physiology , Membranes/metabolism , Saccharomyces cerevisiae/metabolism , Saccharomyces cerevisiae Proteins/metabolism , Unfolded Protein Response/genetics
10.
Immunity ; 50(5): 1218-1231.e5, 2019 05 21.
Article in English | MEDLINE | ID: mdl-30952607

ABSTRACT

Patients with the neurological disorder HSAN-I suffer frequent infections, attributed to a lack of pain sensation and failure to seek care for minor injuries. Whether protective CD8+ T cells are affected in HSAN-I patients remains unknown. Here, we report that HSAN-I-associated mutations in serine palmitoyltransferase subunit SPTLC2 dampened human T cell responses. Antigen stimulation and inflammation induced SPTLC2 expression, and murine T-cell-specific ablation of Sptlc2 impaired antiviral-T-cell expansion and effector function. Sptlc2 deficiency reduced sphingolipid biosynthetic flux and led to prolonged activation of the mechanistic target of rapamycin complex 1 (mTORC1), endoplasmic reticulum (ER) stress, and CD8+ T cell death. Protective CD8+ T cell responses in HSAN-I patient PBMCs and Sptlc2-deficient mice were restored by supplementing with sphingolipids and pharmacologically inhibiting ER stress-induced cell death. Therefore, SPTLC2 underpins protective immunity by translating extracellular stimuli into intracellular anabolic signals and antagonizes ER stress to promote T cell metabolic fitness.


Subject(s)
CD8-Positive T-Lymphocytes/immunology , Hereditary Sensory and Autonomic Neuropathies/genetics , Lymphocytic Choriomeningitis/immunology , Lymphocytic choriomeningitis virus/immunology , Mechanistic Target of Rapamycin Complex 1/metabolism , Serine C-Palmitoyltransferase/genetics , Animals , Cell Proliferation , Cells, Cultured , Cytokines/biosynthesis , Endoplasmic Reticulum Stress/genetics , Endoplasmic Reticulum Stress/immunology , Female , Humans , Lymphocytic Choriomeningitis/virology , Male , Mice , Mice, Inbred C57BL , Middle Aged , Signal Transduction/immunology , Sphingolipids/biosynthesis
11.
Trends Endocrinol Metab ; 29(9): 595-597, 2018 09.
Article in English | MEDLINE | ID: mdl-29615303

ABSTRACT

T cells rapidly engage glycolysis upon activation. The signaling pathways through which T cell receptor (TCR) activation initiates glycolysis have been a mystery. A long-awaited answer has been provided by Menk et al., who show that pyruvate dehydrogenase kinase 1 (PDHK1) is in the center of signaling events linking TCR activation to glycolysis.


Subject(s)
Glycolysis , T-Lymphocytes , Citric Acid Cycle , Signal Transduction
12.
Mol Biol Cell ; 28(6): 716-725, 2017 Mar 15.
Article in English | MEDLINE | ID: mdl-28100635

ABSTRACT

Protein misfolding is toxic to cells and is believed to underlie many human diseases, including many neurodegenerative diseases. Accordingly, cells have developed stress responses to deal with misfolded proteins. The transcription factor Rpn4 mediates one such response and is best known for regulating the abundance of the proteasome, the complex multisubunit protease that destroys proteins. Here we identify Lpl1 as an unexpected target of the Rpn4 response. Lpl1 is a phospholipase and a component of the lipid droplet. Lpl1 has dual functions: it is required for both efficient proteasome-mediated protein degradation and the dynamic regulation of lipid droplets. Lpl1 shows a synthetic genetic interaction with Hac1, the master regulator of a second proteotoxic stress response, the unfolded protein response (UPR). The UPR has long been known to regulate phospholipid metabolism, and Lpl1's relationship with Hac1 appears to reflect Hac1's role in stimulating phospholipid synthesis under stress. Thus two distinct proteotoxic stress responses control phospholipid metabolism. Furthermore, these results provide a direct link between the lipid droplet and proteasomal protein degradation and suggest that dynamic regulation of lipid droplets is a key aspect of some proteotoxic stress responses.


Subject(s)
DNA-Binding Proteins/metabolism , Lipid Droplets/metabolism , Phospholipases/metabolism , Saccharomyces cerevisiae Proteins/metabolism , Transcription Factors/metabolism , Unfolded Protein Response/physiology , Basic-Leucine Zipper Transcription Factors/metabolism , DNA-Binding Proteins/physiology , Endoplasmic Reticulum/metabolism , Gene Expression Regulation, Fungal/genetics , Lipid Droplets/physiology , Proteasome Endopeptidase Complex/metabolism , Protein Folding , Proteolysis , Repressor Proteins/metabolism , Saccharomyces cerevisiae/metabolism , Saccharomyces cerevisiae Proteins/physiology , Transcription Factors/physiology
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