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1.
J Theor Biol ; 590: 111852, 2024 Aug 07.
Article in English | MEDLINE | ID: mdl-38796098

ABSTRACT

Circadian rhythms have been implicated in the modulation of many physiological processes, including those associated with the immune system. For example, these rhythms influence CD8+ T cell responses within the adaptive immune system. The mechanism underlying this immune-circadian interaction, however, remains unclear, particularly in the context of vaccination. Here, we devise a molecularly-explicit gene regulatory network model of early signaling in the naïve CD8+ T cell activation pathway, comprised of three axes (or subsystems) labeled ZAP70, LAT and CD28, to elucidate the molecular details of this immune-circadian mechanism and its relation to vaccination. This is done by coupling the model to a periodic forcing function to identify the molecular players targeted by circadian rhythms, and analyzing how these rhythms subsequently affect CD8+ T cell activation under differing levels of T cell receptor (TCR) phosphorylation, which we designate as vaccine load. By performing both bifurcation and parameter sensitivity analyses on the model at the single cell and ensemble levels, we find that applying periodic forcing on molecular targets within the ZAP70 axis is sufficient to create a day-night discrepancy in CD8+ T cell activation in a manner that is dependent on the bistable switch inherent in CD8+ T cell early signaling. We also demonstrate that the resulting CD8+ T cell activation is dependent on the strength of the periodic coupling as well as on the level of TCR phosphorylation. Our results show that this day-night discrepancy is not transmitted to certain downstream molecules within the LAT subsystem, such as mTORC1, suggesting a secondary, independent circadian regulation on that protein complex. We also corroborate experimental results by showing that the circadian regulation of CD8+ T cell primarily acts at a baseline, pre-vaccination state, playing a facilitating role in priming CD8+ T cells to vaccine inputs according to the time of day. By applying an ensemble level analysis using bifurcation theory and by including several hypothesized molecular targets of this circadian rhythm, we further demonstrate an increased variability between CD8+ T cells (due to heterogeneity) induced by its circadian regulation, which may allow an ensemble of CD8+ T cells to activate at a lower vaccine load, improving its sensitivity. This modeling study thus provides insights into the immune targets of the circadian clock, and proposes an interaction between vaccine load and the influence of circadian rhythms on CD8+ T cell activation.


Subject(s)
CD8-Positive T-Lymphocytes , Circadian Rhythm , Lymphocyte Activation , Vaccination , CD8-Positive T-Lymphocytes/immunology , CD8-Positive T-Lymphocytes/metabolism , Circadian Rhythm/immunology , Circadian Rhythm/physiology , Lymphocyte Activation/immunology , Humans , Signal Transduction/immunology , Receptors, Antigen, T-Cell/metabolism , Receptors, Antigen, T-Cell/immunology , Phosphorylation , Models, Immunological , Gene Regulatory Networks , ZAP-70 Protein-Tyrosine Kinase/metabolism
2.
Yakugaku Zasshi ; 144(5): 497-501, 2024.
Article in Japanese | MEDLINE | ID: mdl-38692923

ABSTRACT

Signal-transducing adaptor protein-2 (STAP-2) is a unique scaffold protein that regulates several immunological signaling pathways, including LIF/LIF receptor and LPS/TLR4 signals. STAP-2 is required for Fas/FasL-dependent T cell apoptosis and SDF-1α-induced T cell migration. Conversely, STAP-2 modulates integrin-mediated T cell adhesion, suggesting that STAP-2 is essential for several negative and positive T cell functions. However, whether STAP-2 is involved in T cell-antigen receptor (TCR)-mediated T cell activation is unknown. STAP-2 deficiency was recently reported to suppress TCR-mediated T cell activation by inhibiting LCK-mediated CD3ζ and ZAP-70 activation. Using STAP-2 deficient mice, it was demonstrated that STAP-2 is required for the pathogenesis of Propionibacterium acnes-induced granuloma formation and experimental autoimmune encephalomyelitis. Here, detailed functions of STAP-2 in TCR-mediated T cell activation, and how STAP-2 affects the pathogenesis of T cell-mediated inflammation and immune diseases, are reviewed.


Subject(s)
Adaptor Proteins, Signal Transducing , Lymphocyte Activation , Receptors, Antigen, T-Cell , Signal Transduction , T-Lymphocytes , ZAP-70 Protein-Tyrosine Kinase , Animals , Humans , Mice , Adaptor Proteins, Signal Transducing/physiology , Adaptor Proteins, Signal Transducing/metabolism , Apoptosis , CD3 Complex , Cell Adhesion , Cell Movement , Chemokine CXCL12/physiology , Chemokine CXCL12/metabolism , Encephalomyelitis, Autoimmune, Experimental/immunology , Encephalomyelitis, Autoimmune, Experimental/etiology , Inflammation/immunology , Lymphocyte Specific Protein Tyrosine Kinase p56(lck)/physiology , Lymphocyte Specific Protein Tyrosine Kinase p56(lck)/metabolism , Propionibacterium acnes/physiology , Propionibacterium acnes/immunology , Receptors, Antigen, T-Cell/physiology , Receptors, Antigen, T-Cell/metabolism , T-Lymphocytes/immunology , ZAP-70 Protein-Tyrosine Kinase/metabolism , ZAP-70 Protein-Tyrosine Kinase/physiology
3.
J Clin Immunol ; 44(6): 131, 2024 May 22.
Article in English | MEDLINE | ID: mdl-38775840

ABSTRACT

RHOH, an atypical small GTPase predominantly expressed in hematopoietic cells, plays a vital role in immune function. A deficiency in RHOH has been linked to epidermodysplasia verruciformis, lung disease, Burkitt lymphoma and T cell defects. Here, we report a novel germline homozygous RHOH c.245G > A (p.Cys82Tyr) variant in a 21-year-old male suffering from recurrent, invasive, opportunistic infections affecting the lungs, eyes, and brain. His sister also succumbed to a lung infection during early adulthood. The patient exhibited a persistent decrease in CD4+ T, B, and NK cell counts, and hypoimmunoglobulinemia. The patient's T cell showed impaired activation upon in vitro TCR stimulation. In Jurkat T cells transduced with RHOHC82Y, a similar reduction in activation marker CD69 up-regulation was observed. Furthermore, the C82Y variant showed reduced RHOH protein expression and impaired interaction with the TCR signaling molecule ZAP70. Together, these data suggest that the newly identified autosomal-recessive RHOH variant is associated with T cell dysfunction and recurrent opportunistic infections, functioning as a hypomorph by disrupting ZAP70-mediated TCR signaling.


Subject(s)
Homozygote , Opportunistic Infections , Humans , Male , Young Adult , Jurkat Cells , Lymphocyte Activation/genetics , Opportunistic Infections/genetics , Opportunistic Infections/immunology , Pedigree , Receptors, Antigen, T-Cell/genetics , Receptors, Antigen, T-Cell/metabolism , Recurrence , T-Lymphocytes/immunology , ZAP-70 Protein-Tyrosine Kinase/genetics , ZAP-70 Protein-Tyrosine Kinase/metabolism
4.
Front Immunol ; 15: 1392933, 2024.
Article in English | MEDLINE | ID: mdl-38779683

ABSTRACT

Introduction: Antigen binding to the T cell antigen receptor (TCR) leads to the phosphorylation of the immunoreceptor tyrosine-based activation motifs (ITAMs) of the CD3 complex, and thereby to T cell activation. The CD3ε subunit plays a unique role in TCR activation by recruiting the kinase LCK and the adaptor protein NCK prior to ITAM phosphorylation. Here, we aimed to investigate how phosphorylation of the individual CD3ε ITAM tyrosines impacts the CD3ε signalosome. Methods: We mimicked irreversible tyrosine phosphorylation by substituting glutamic acid for the tyrosine residues in the CD3ε ITAM. Results: Integrating CD3ε phospho-mimetic variants into the complete TCR-CD3 complex resulted in reduced TCR signal transduction, which was partially compensated by the involvement of the other TCR-CD3 ITAMs. By using novel CD3ε phospho-mimetic Chimeric Antigen Receptor (CAR) variants, we avoided any compensatory effects of other ITAMs in the TCR-CD3 complex. We demonstrated that irreversible CD3ε phosphorylation prevented signal transduction upon CAR engagement. Mechanistically, we demonstrated that glutamic acid substitution at the N-terminal tyrosine residue of the CD3ε ITAM (Y39E) significantly reduces NCK binding to the TCR. In contrast, mutation at the C-terminal tyrosine of the CD3ε ITAM (Y50E) abolished LCK recruitment to the TCR, while increasing NCK binding. Double mutation at the C- and N-terminal tyrosines (Y39/50E) allowed ZAP70 to bind, but reduced the interaction with LCK and NCK. Conclusions: The data demonstrate that the dynamic phosphorylation of the CD3ε ITAM tyrosines is essential for CD3ε to orchestrate optimal TCR and CAR signaling and highlights the key role of CD3ε signalosome to tune signal transduction.


Subject(s)
CD3 Complex , Receptors, Antigen, T-Cell , Receptors, Chimeric Antigen , Signal Transduction , CD3 Complex/metabolism , CD3 Complex/immunology , Phosphorylation , Humans , Receptors, Antigen, T-Cell/metabolism , Receptors, Antigen, T-Cell/immunology , Receptors, Chimeric Antigen/metabolism , Receptors, Chimeric Antigen/immunology , Receptors, Chimeric Antigen/genetics , Lymphocyte Activation/immunology , Lymphocyte Specific Protein Tyrosine Kinase p56(lck)/metabolism , Lymphocyte Specific Protein Tyrosine Kinase p56(lck)/genetics , Adaptor Proteins, Signal Transducing/metabolism , Adaptor Proteins, Signal Transducing/genetics , Adaptor Proteins, Signal Transducing/immunology , T-Lymphocytes/immunology , T-Lymphocytes/metabolism , Receptor-CD3 Complex, Antigen, T-Cell/metabolism , Receptor-CD3 Complex, Antigen, T-Cell/immunology , Receptor-CD3 Complex, Antigen, T-Cell/genetics , HEK293 Cells , ZAP-70 Protein-Tyrosine Kinase/metabolism , ZAP-70 Protein-Tyrosine Kinase/genetics , Immunoreceptor Tyrosine-Based Activation Motif , Protein Binding , Jurkat Cells , Oncogene Proteins
5.
Cell ; 187(9): 2305-2323.e33, 2024 Apr 25.
Article in English | MEDLINE | ID: mdl-38614099

ABSTRACT

Cancer immunotherapy has transformed treatment possibilities, but its effectiveness differs significantly among patients, indicating the presence of alternative pathways for immune evasion. Here, we show that ITPRIPL1 functions as an inhibitory ligand of CD3ε, and its expression inhibits T cells in the tumor microenvironment. The binding of ITPRIPL1 extracellular domain to CD3ε on T cells significantly decreased calcium influx and ZAP70 phosphorylation, impeding initial T cell activation. Treatment with a neutralizing antibody against ITPRIPL1 restrained tumor growth and promoted T cell infiltration in mouse models across various solid tumor types. The antibody targeting canine ITPRIPL1 exhibited notable therapeutic efficacy against naturally occurring tumors in pet clinics. These findings highlight the role of ITPRIPL1 (or CD3L1, CD3ε ligand 1) in impeding T cell activation during the critical "signal one" phase. This discovery positions ITPRIPL1 as a promising therapeutic target against multiple tumor types.


Subject(s)
CD3 Complex , Lymphocyte Activation , T-Lymphocytes , Tumor Escape , Tumor Microenvironment , Animals , CD3 Complex/metabolism , CD3 Complex/immunology , Humans , Mice , T-Lymphocytes/immunology , T-Lymphocytes/metabolism , Tumor Microenvironment/immunology , Dogs , Neoplasms/immunology , Cell Line, Tumor , Female , Protein Binding , ZAP-70 Protein-Tyrosine Kinase/metabolism , Antibodies, Neutralizing/immunology , Mice, Inbred C57BL
6.
Int J Mol Sci ; 25(3)2024 Feb 05.
Article in English | MEDLINE | ID: mdl-38339213

ABSTRACT

UBASH3A and UBASH3B are protein families of atypical protein tyrosine phosphatases that function as regulators of various cellular processes during mammalian development. As UBASH3A has only mild phosphatase activity, its regulatory effects are based on the phosphatase-independent mechanisms. On the contrary, UBASH3B has strong phosphatase activity, and the suppression of its receptor signalling is mediated by Syk and Zap-70 kinases. The regulatory functions of UBASH3A and UBASH3B are particularly evident in the lymphoid tissues and kidney development. These tyrosine phosphatases are also known to play key roles in autoimmunity and neoplasms. However, their involvement in mammalian development and its regulatory functions are largely unknown and are discussed in this review.


Subject(s)
Ubiquitin , src Homology Domains , Animals , Ubiquitin/metabolism , ZAP-70 Protein-Tyrosine Kinase/genetics , ZAP-70 Protein-Tyrosine Kinase/metabolism , Immunity , Mammals/metabolism
7.
Am J Hematol ; 99(1): 48-56, 2024 Jan.
Article in English | MEDLINE | ID: mdl-37853951

ABSTRACT

ZAP70 has a prognostic value in chronic lymphocytic leukemia (CLL), through altered B-cell receptor signaling, which is important in CLL pathogenesis. A good correlation between ZAP70 expression in CLL cells and the occurrence of autoimmune phenomena has been reported. Yet, the great majority of CLL-associated autoimmune cytopenia is due to polyclonal immunoglobulin (Ig) G synthesized by nonmalignant B cells, and this phenomenon is poorly understood. Here, we show, using flow cytometry, that a substantial percentage of CD5- nonmalignant B cells from CLL patients expresses ZAP70 compared with CD5- B cells from healthy subjects. This ZAP70 expression in normal B cells from CLL patients was also evidenced by the detection of ZAP70 mRNA at single-cell level with polyclonal Ig heavy- and light-chain gene transcripts. ZAP70+ normal B cells belong to various B-cell subsets and their presence in the naïve B-cell subset suggests that ZAP70 expression may occur during early B-cell development in CLL patients and potentially before malignant transformation. The presence of ZAP70+ normal B cells is associated with autoimmune cytopenia in CLL patients in our cohort of patients, and recombinant antibodies produced from these ZAP70+ nonmalignant B cells were frequently autoreactive including anti-platelet reactivity. These results provide a better understanding of the implication of ZAP70 in CLL leukemogenesis and the mechanisms of autoimmune complications of CLL.


Subject(s)
Leukemia, Lymphocytic, Chronic, B-Cell , Humans , Autoimmunity , B-Lymphocytes , Flow Cytometry , Prognosis , ZAP-70 Protein-Tyrosine Kinase/genetics , ZAP-70 Protein-Tyrosine Kinase/metabolism
8.
Autoimmunity ; 56(1): 2282945, 2023 12.
Article in English | MEDLINE | ID: mdl-37994408

ABSTRACT

Protein posttranslational modifications (PTMs) arise in a number of normal cellular biological pathways and in response to pathology caused by inflammation and/or infection. Indeed, a number of PTMs have been identified and linked to specific autoimmune responses and metabolic pathways. One particular PTM, termed isoaspartyl (isoAsp or isoD) modification, is among the most common spontaneous PTM occurring at physiological pH and temperature. Herein, we demonstrate that isoAsp modifications arise within the ZAP70 protein tyrosine kinase upon T-cell antigen receptor (TCR) engagement. The enzyme protein L-isoaspartate O-methyltransferase (PCMT1, or PIMT, EC 2.1.1.77) evolved to repair isoaspartyl modifications in cells. In this regard, we observe that increased levels of isoAsp modification that arise under oxidative stress are correlated with reduced PIMT activity in patients with systemic lupus erythematosus (SLE). PIMT deficiency leads to T cell hyper-proliferation and hyper-phosphorylation through ZAP70 signaling. We demonstrate that inducing the overexpression of PIMT can correct the hyper-responsive phenotype in lupus T cells. Our studies reveal a phenotypic role of isoAsp modification and phosphorylation of ZAP70 in lupus T cell autoimmunity and provide a potential therapeutic target through the repair of isoAsp modification.


Subject(s)
Protein D-Aspartate-L-Isoaspartate Methyltransferase , T-Lymphocytes , Humans , T-Lymphocytes/metabolism , Protein D-Aspartate-L-Isoaspartate Methyltransferase/genetics , Protein D-Aspartate-L-Isoaspartate Methyltransferase/metabolism , Oxidative Stress , Autoimmunity , Protein Processing, Post-Translational , ZAP-70 Protein-Tyrosine Kinase/genetics , ZAP-70 Protein-Tyrosine Kinase/metabolism
9.
Indian J Pathol Microbiol ; 66(2): 291-294, 2023.
Article in English | MEDLINE | ID: mdl-37077070

ABSTRACT

Background: Chronic lymphocytic leukemia (CLL) is prognosticated using the Rai and the Binet's staging. In the past few years, new parameters have been considered for prognostication. One such marker that has been a subject of speculation and found useful by some western studies is zeta-associated protein 70 (ZAP-70). Aim: To investigate the prevalence of ZAP-70 and find out its association with other prognostic markers like Rai and Binet's stage and CD38 in Indian CLL patients. Materials and Methods: Twenty-nine newly diagnosed cases of CLL were selected over 1 year. Immunophenotyping was done and expression of CD38 and ZAP-70 was evaluated on gated CLL cells. Statistical Analysis: Qualitative data were expressed as frequency and percentage. Differences between groups were evaluated using Student's t-test for quantitative data and Chi-square test/Fisher's exact t-test for qualitative variables. A P value less than 0.05 was considered significant. Results and Conclusion: We found a lower prevalence rate of ZAP-70 (2/29, 6.89%) with no association with any of the conventional poor prognostic factors. A large number of our CLL patients fall into the good prognostic group (22/29, ZAP 70-/CD38-) with a least number in the poor prognostic group (2/29, ZAP-70 + CD38+). Also, no association was found between ZAP-70 and CD38. The findings of the present study suggest that the majority of CLL patients in India have a good prognosis, may not require treatment, and have good overall survival. Geographical variations, genetic makeup, and natural history of the CLL could be the cause of such differences from western literature.


Subject(s)
Leukemia, Lymphocytic, Chronic, B-Cell , ZAP-70 Protein-Tyrosine Kinase , Humans , ADP-ribosyl Cyclase 1/genetics , ADP-ribosyl Cyclase 1/metabolism , India/epidemiology , Leukemia, Lymphocytic, Chronic, B-Cell/diagnosis , Prognosis , ZAP-70 Protein-Tyrosine Kinase/genetics , ZAP-70 Protein-Tyrosine Kinase/metabolism
10.
Cell Mol Life Sci ; 80(1): 7, 2022 Dec 10.
Article in English | MEDLINE | ID: mdl-36495335

ABSTRACT

The ZAP70 protein tyrosine kinase (PTK) couples stimulated T cell antigen receptors (TCRs) to their downstream signal transduction pathways and is sine qua non for T cell activation and differentiation. TCR engagement leads to activation-induced post-translational modifications of ZAP70, predominantly by kinases, which modulate its conformation, leading to activation of its catalytic domain. Here, we demonstrate that ZAP70 in TCR/CD3-activated mouse spleen and thymus cells, as well as human Jurkat T cells, is regulated by the peptidyl-prolyl cis-trans isomerase (PPIase), cyclophilin A (CypA) and that this regulation is abrogated by cyclosporin A (CsA), a CypA inhibitor. We found that TCR crosslinking promoted a rapid and transient, Lck-dependent association of CypA with the interdomain B region, at the ZAP70 regulatory domain. CsA inhibited CypA binding to ZAP70 and prevented the colocalization of CypA and ZAP70 at the cell membrane. In addition, imaging analyses of antigen-specific T cells stimulated by MHC-restricted antigen-fed antigen-presenting cells revealed the recruitment of ZAP70-bound CypA to the immunological synapse. Enzymatically active CypA downregulated the catalytic activity of ZAP70 in vitro, an effect that was reversed by CsA in TCR/CD3-activated normal T cells but not in CypA-deficient T cells, and further confirmed in vivo by FRET-based studies. We suggest that CypA plays a role in determining the activity of ZAP70 in TCR-engaged T cells and impact on T cell activation by intervening with the activity of multiple downstream effector molecules.


Subject(s)
Cyclophilin A , T-Lymphocytes , Mice , Animals , Humans , Cyclophilin A/genetics , Receptors, Antigen, T-Cell/metabolism , Lymphocyte Activation , Thymus Gland/metabolism , ZAP-70 Protein-Tyrosine Kinase/genetics , ZAP-70 Protein-Tyrosine Kinase/metabolism
11.
World J Urol ; 40(11): 2817-2824, 2022 Nov.
Article in English | MEDLINE | ID: mdl-36205741

ABSTRACT

BACKGROUND: While immunotherapy has shown potent efficacy in clinical practices, patient selection to receive checkpoint blockade is still challenging in prostate cancer (PCa). LAT and ZAP70 functions in lymphocyte activation and plays a critical role in T cell receptor (TCR) signal transduction. However, PCa genomic and clinical data regarding the role of LAT and ZAP70 are limited. We aim to identify and characterize LAT/ZAP70 defined subtypes of PCa. METHODS: We elaborated the TCGA PCa data and metastatic castration-resistant prostate cancer (mCRPC) RNA-seq data bioinformatic analysis and systematically elucidated the role of intra-tumoral expressed LAT and ZAP70 in the progression-free survival and immunotherapeutic-related signals. LAT/ZAP70-associated immune infiltration was evaluated using bioinformatic tools. Immunohistochemical staining of serial sections was used to confirm the expression and distribution of LAT, ZAP70 and androgen receptor (AR) in PCa tissues. RESULTS: Specifically, LAT and ZAP70 revealed increased expressions in PCa when compared to normal tissues and positively associated with intra-tumoral immune cells infiltration. LAT/ZAP70 defined immune-high early-stage PCa revealed higher TP53 mutation frequency and poor prognosis. Transcriptome analysis indicated immune-related signals and CTLA4 expression were highly enhanced in immune-high PCa parallel with higher protein level of MYC and lower AR expression. In mCRPC, LAT/ZAP70 defined immune-high patients also revealed upregulated immune related signals, higher CTLA4 expression and DNA repair deficiency. CONCLUSION: LAT/ZAP70 defined immune-high PCa linked to immune infiltration and predicts poor prognosis. Immune-high PCa may receive effective response from immune checkpoint inhibitor parallel with systemic treatment.


Subject(s)
Prostatic Neoplasms, Castration-Resistant , Prostatic Neoplasms , Male , Humans , Prostatic Neoplasms, Castration-Resistant/pathology , CTLA-4 Antigen , Prostatic Neoplasms/pathology , Receptors, Androgen , Signal Transduction , ZAP-70 Protein-Tyrosine Kinase/metabolism
12.
Cells ; 11(17)2022 09 01.
Article in English | MEDLINE | ID: mdl-36078131

ABSTRACT

Alterations in both the expression and function of the non-receptor tyrosine kinase Zap70 are associated with numerous human diseases including immunodeficiency, autoimmunity, and leukemia. Zap70 propagates the TCR signal by phosphorylating two important adaptor molecules, LAT and SLP76, which orchestrate the assembly of the signaling complex, leading to the activation of PLCγ1 and further downstream pathways. These events are crucial to drive T-cell development and T-cell activation. Recently, it has been proposed that C564, located in the kinase domain of Zap70, is palmitoylated. A non-palmitoylable C564R Zap70 mutant, which has been reported in a patient suffering from immunodeficiency, is incapable of propagating TCR signaling and activating T cells. The lack of palmitoylation was suggested as the cause of this human disease. Here, we confirm that Zap70C564R is signaling defective, but surprisingly, the defective Zap70 function does not appear to be due to a loss in palmitoylation. We engineered a C564A mutant of Zap70 which, similarly to Zap70C564R, is non-palmitoylatable. However, this mutant was capable of propagating TCR signaling. Moreover, Zap70C564A enhanced the activity of Lck and increased its proximity to the TCR. Accordingly, Zap70-deficient P116 T cells expressing Zap70C564A displayed the hyperphosphorylation of TCR-ζ and Zap70 (Y319), two well-known Lck substrates. Collectively, these data indicate that C564 is important for the regulation of Lck activity and proximal TCR signaling, but not for the palmitoylation of Zap70.


Subject(s)
Cysteine , Lymphocyte Specific Protein Tyrosine Kinase p56(lck) , ZAP-70 Protein-Tyrosine Kinase , Cysteine/metabolism , Humans , Jurkat Cells , Lymphocyte Specific Protein Tyrosine Kinase p56(lck)/metabolism , Phosphorylation , Receptors, Antigen, T-Cell/metabolism , ZAP-70 Protein-Tyrosine Kinase/metabolism
13.
Nat Immunol ; 23(9): 1355-1364, 2022 09.
Article in English | MEDLINE | ID: mdl-36045187

ABSTRACT

T cells recognize a few high-affinity antigens among a vast array of lower affinity antigens. According to the kinetic proofreading model, antigen discrimination properties could be explained by the gradual amplification of small differences in binding affinities as the signal is transduced downstream of the T cell receptor. Which early molecular events are affected by ligand affinity, and how, has not been fully resolved. Here, we used time-resolved high-throughput proteomic analyses to identify and quantify the phosphorylation events and protein-protein interactions encoding T cell ligand discrimination in antigen-experienced T cells. Although low-affinity ligands induced phosphorylation of the Cd3 chains of the T cell receptor and the interaction of Cd3 with the Zap70 kinase as strongly as high-affinity ligands, they failed to activate Zap70 to the same extent. As a result, formation of the signalosome of the Lat adaptor was severely impaired with low- compared with high-affinity ligands, whereas formation of the signalosome of the Cd6 receptor was affected only partially. Overall, this study provides a comprehensive map of molecular events associated with T cell ligand discrimination.


Subject(s)
Proteomics , T-Lymphocytes , Antigens/metabolism , Kinetics , Ligands , Phosphorylation , Receptors, Antigen, T-Cell/metabolism , ZAP-70 Protein-Tyrosine Kinase/metabolism
14.
BMC Cancer ; 22(1): 465, 2022 Apr 28.
Article in English | MEDLINE | ID: mdl-35477402

ABSTRACT

BACKGROUND: Laryngeal cancer represents a common malignancy that originates from the larynx, with unfavorable prognosis. Herein, this study systematically analyzed the immune signatures of laryngeal cancer and to evaluate their roles on tumor progression. METHODS: Differentially expressed immune-related genes (IRGs) were screened between laryngeal cancer and normal tissues from TCGA dataset. Then, two prognosis-related IRGs AQP9 and ZAP70 were analyzed by a series of survival analysis. Based on them, molecular subtypes were constructed by unsupervised cluster analysis. Differences in survival outcomes, HLA expression and immune cell infiltrations were assessed between subtypes. Expression of AQP9 and ZAP70 was validated in laryngeal cancer tissues and cells by RT-qPCR and immunohistochemistry. After silencing and overexpressing AQP9 and ZAP70, CCK-8, EdU, wound healing and transwell assays were performed in TU212 and LCC cells. RESULTS: Totally, 315 IRGs were abnormally expressed in laryngeal cancer. Among them, AQP9 and ZAP70 were distinctly correlated to patients' prognosis. Two subtypes were developed with distinct survival outcomes, HLA expression and immune microenvironment. Low expression of AQP9 and ZAP70 was confirmed in laryngeal cancer. AQP9 and ZAP70 up-regulation distinctly suppressed proliferation, migration, and invasion of laryngeal cancer cells. The opposite results were investigated when their knockdown. CONCLUSIONS: Our findings revealed the roles of AQP9 and ZAP70 in progression of laryngeal cancer, and suggested that AQP9 and ZAP70 could potentially act as candidate immunotherapeutic targets for laryngeal cancer.


Subject(s)
Aquaporins , Laryngeal Neoplasms , Larynx , Aquaporins/genetics , Aquaporins/metabolism , Biomarkers , Cell Movement/genetics , Cell Proliferation/genetics , Humans , Laryngeal Neoplasms/pathology , Larynx/pathology , Neoplastic Processes , Prognosis , Tumor Microenvironment , ZAP-70 Protein-Tyrosine Kinase/genetics , ZAP-70 Protein-Tyrosine Kinase/metabolism
15.
Biosci Rep ; 42(3)2022 03 31.
Article in English | MEDLINE | ID: mdl-35260878

ABSTRACT

The cell-mediated immune response constitutes a robust host defense mechanism to eliminate pathogens and oncogenic cells. T cells play a central role in such a defense mechanism and creating memories to prevent any potential infection. T cell recognizes foreign antigen by its surface receptors when presented through antigen-presenting cells (APCs) and calibrates its cellular response by a network of intracellular signaling events. Activation of T-cell receptor (TCR) leads to changes in gene expression and metabolic networks regulating cell development, proliferation, and migration. TCR does not possess any catalytic activity, and the signaling initiates with the colocalization of several enzymes and scaffold proteins. Deregulation of T cell signaling is often linked to autoimmune disorders like severe combined immunodeficiency (SCID), rheumatoid arthritis, and multiple sclerosis. The TCR remarkably distinguishes the minor difference between self and non-self antigen through a kinetic proofreading mechanism. The output of TCR signaling is determined by the half-life of the receptor antigen complex and the time taken to recruit and activate the downstream enzymes. A longer half-life of a non-self antigen receptor complex could initiate downstream signaling by activating associated enzymes. Whereas, the short-lived, self-peptide receptor complex disassembles before the downstream enzymes are activated. Activation of TCR rewires the cellular metabolic response to aerobic glycolysis from oxidative phosphorylation. How does the early event in the TCR signaling cross-talk with the cellular metabolism is an open question. In this review, we have discussed the recent developments in understanding the regulation of TCR signaling, and then we reviewed the emerging role of metabolism in regulating T cell function.


Subject(s)
Protein-Tyrosine Kinases , Receptors, Antigen, T-Cell , Phosphorylation , Protein-Tyrosine Kinases/metabolism , Receptors, Antigen, T-Cell/genetics , Signal Transduction , ZAP-70 Protein-Tyrosine Kinase/metabolism
16.
Proc Natl Acad Sci U S A ; 119(9)2022 03 01.
Article in English | MEDLINE | ID: mdl-35197288

ABSTRACT

Protein-protein binding domains are critical in signaling networks. Src homology 2 (SH2) domains are binding domains that interact with sequences containing phosphorylated tyrosines. A subset of SH2 domain-containing proteins has tandem domains, which are thought to enhance binding affinity and specificity. However, a trade-off exists between long-lived binding and the ability to rapidly reverse signaling, which is a critical requirement of noise-filtering mechanisms such as kinetic proofreading. Here, we use modeling to show that the unbinding rate of tandem, but not single, SH2 domains can be accelerated by phosphatases. Using surface plasmon resonance, we show that the phosphatase CD45 can accelerate the unbinding rate of zeta chain-associated protein kinase 70 (ZAP70), a tandem SH2 domain-containing kinase, from biphosphorylated peptides from the T cell receptor (TCR). An important functional prediction of accelerated unbinding is that the intracellular ZAP70-TCR half-life in T cells will not be fixed but rather, dependent on the extracellular TCR-antigen half-life, and we show that this is the case in both cell lines and primary T cells. The work highlights that tandem SH2 domains can break the trade-off between signal fidelity (requiring long half-life) and signal reversibility (requiring short half-life), which is a key requirement for T cell antigen discrimination mediated by kinetic proofreading.


Subject(s)
Receptors, Antigen, T-Cell/metabolism , ZAP-70 Protein-Tyrosine Kinase/metabolism , Allosteric Regulation , Half-Life , Humans , Kinetics , Phosphorylation , Protein Binding
17.
PLoS One ; 17(1): e0261469, 2022.
Article in English | MEDLINE | ID: mdl-35077445

ABSTRACT

B-cell receptor (BCR) signalling is critical for the survival of B-cell lymphomas and is a therapeutic target of drugs such as Ibrutinib. However, the role of T-cell receptor (TCR) signalling in the survival of T/Natural Killer (NK) lymphomas is not clear. ZAP-70 (zeta associated protein-70) is a cytoplasmic tyrosine kinase with a critical role in T-cell receptor (TCR) signalling. It has also been shown to play a role in normal NK cell signalling and activation. High ZAP-70 expression has been detected by immunohistochemistry in peripheral T cell lymphoma (PTCL) and NK cell lymphomas (NKTCL). We therefore, studied the role of TCR pathways in mediating the proliferation and survival of these malignancies through ZAP-70 signalling. ZAP-70 protein was highly expressed in T cell lymphoma cell lines (JURKAT and KARPAS-299) and NKTCL cell lines (KHYG-1, HANK-1, NK-YS, SNK-1 and SNK-6), but not in multiple B-cell lymphoma cell lines. siRNA depletion of ZAP-70 suppressed the phosphorylation of ZAP-70 substrates, SLP76, LAT and p38MAPK, but did not affect cell viability or induce apoptosis in these cell lines. Similarly, while stable overexpression of ZAP-70 mediates increased phosphorylation of target substrates in the TCR pathway, it does not promote increased survival or growth of NKTCL cell lines. The epidermal growth factor receptor (EGFR) inhibitor Gefitinib, which has off-target activity against ZAP-70, also did not show any differential cell kill between ZAP-70 overexpressing (OE) or knockdown (KD) cell lines. Whole transcriptome RNA sequencing highlighted that there was very minimal differential gene expression in three different T/NK cell lines induced by ZAP-70 KD. Importantly, ZAP-70 KD did not significantly enrich for any downstream TCR related genes and pathways. Altogether, this suggests that high expression and constitutive signalling of ZAP-70 in T/NK lymphoma is not critical for cell survival or downstream TCR-mediated signalling and gene expression. ZAP-70 therefore may not be a suitable therapeutic target in T/NK cell malignancies.


Subject(s)
Gefitinib/pharmacology , Lymphoma, Extranodal NK-T-Cell/metabolism , Lymphoma, T-Cell, Peripheral/metabolism , Up-Regulation , ZAP-70 Protein-Tyrosine Kinase/metabolism , Cell Line, Tumor , Cell Proliferation/drug effects , Cell Survival/drug effects , Gene Expression Regulation, Neoplastic , Gene Knockdown Techniques , Humans , Jurkat Cells , Lymphoma, Extranodal NK-T-Cell/genetics , Lymphoma, T-Cell, Peripheral/genetics , Phosphorylation/drug effects , Signal Transduction/drug effects , ZAP-70 Protein-Tyrosine Kinase/genetics
18.
Nat Commun ; 12(1): 5031, 2021 08 19.
Article in English | MEDLINE | ID: mdl-34413312

ABSTRACT

The limited sensitivity of Förster Resonance Energy Transfer (FRET) biosensors hinders their broader applications. Here, we develop an approach integrating high-throughput FRET sorting and next-generation sequencing (FRET-Seq) to identify sensitive biosensors with varying substrate sequences from large-scale libraries directly in mammalian cells, utilizing the design of self-activating FRET (saFRET) biosensor. The resulting biosensors of Fyn and ZAP70 kinases exhibit enhanced performance and enable the dynamic imaging of T-cell activation mediated by T cell receptor (TCR) or chimeric antigen receptor (CAR), revealing a highly organized ZAP70 subcellular activity pattern upon TCR but not CAR engagement. The ZAP70 biosensor elucidates the role of immunoreceptor tyrosine-based activation motif (ITAM) in affecting ZAP70 activation to regulate CAR functions. A saFRET biosensor-based high-throughput drug screening (saFRET-HTDS) assay further enables the identification of an FDA-approved cancer drug, Sunitinib, that can be repurposed to inhibit ZAP70 activity and autoimmune-disease-related T-cell activation.


Subject(s)
Biosensing Techniques/methods , Fluorescence Resonance Energy Transfer/methods , High-Throughput Nucleotide Sequencing/methods , Phosphotransferases/metabolism , Cells, Cultured , Humans , Protein Engineering/methods , Proto-Oncogene Proteins c-fyn/metabolism , T-Lymphocytes/metabolism , ZAP-70 Protein-Tyrosine Kinase/metabolism
19.
Front Immunol ; 12: 687367, 2021.
Article in English | MEDLINE | ID: mdl-34394081

ABSTRACT

The essential microelement zinc plays immunoregulatory roles via its ability to influence signaling pathways. Zinc deficiency impairs overall immune function and resultantly increases susceptibility to infection. Thus, zinc is considered as an immune-boosting supplement for populations with hypozincemia at high-risk for infection. Besides its role as a structural cofactor of many proteins, zinc also acts as an intracellular messenger in immune cell signaling. T-cell activation instructs zinc influx from extracellular and subcellular sources through the Zip6 and Zip8 zinc transporters, respectively. Increased cytoplasmic zinc participates in the regulation of T-cell responses by modifying activation signaling. However, the mechanism underlying the activation-dependent movement of zinc ions by Zip transporters in T cells remains elusive. Here, we demonstrate that Zip6, one of the most abundantly expressed Zip transporters in T cells, is mainly localized to lipid rafts in human T cells and is recruited into the immunological synapse in response to TCR stimulation. This was demonstrated through confocal imaging of the interaction between CD4+ T cells and antigen-presenting cells. Further, immunoprecipitation assays show that TCR triggering induces tyrosine phosphorylation of Zip6, which has at least three putative tyrosine motifs in its long cytoplasmic region, and this phosphorylation is coupled with its physical interaction with Zap70. Silencing Zip6 reduces zinc influx from extracellular sources and suppresses T-cell responses, suggesting an interaction between Zip6-mediated zinc influx and TCR activation. These results provide new insights into the mechanism through which Zip6-mediated zinc influx occurs in a TCR activation-dependent manner in human CD4+ T cells.


Subject(s)
Antigen-Presenting Cells/metabolism , CD4-Positive T-Lymphocytes/metabolism , Cation Transport Proteins/metabolism , Immunological Synapses/metabolism , Membrane Microdomains/metabolism , Neoplasm Proteins/metabolism , Receptors, Antigen, T-Cell/metabolism , ZAP-70 Protein-Tyrosine Kinase/metabolism , Antigen-Presenting Cells/immunology , CD4-Positive T-Lymphocytes/immunology , Cation Transport Proteins/genetics , Humans , Immunological Synapses/immunology , Jurkat Cells , Lymphocyte Activation , Membrane Microdomains/immunology , Neoplasm Proteins/genetics , Phosphorylation , Signal Transduction , Tyrosine
20.
Proc Natl Acad Sci U S A ; 118(35)2021 08 31.
Article in English | MEDLINE | ID: mdl-34452999

ABSTRACT

ZAP-70 is required for the initiation of T cell receptor (TCR) signaling, and Ssu72 is a phosphatase that regulates RNA polymerase II activity in the nucleus. However, the mechanism by which ZAP-70 regulates the fine-tuning of TCR signaling remains elusive. Here, we found that Ssu72 contributed to the fine-tuning of TCR signaling by acting as tyrosine phosphatase for ZAP-70. Affinity purification-mass spectrometry and an in vitro assay demonstrated specific interaction between Ssu72 and ZAP-70 in T cells. Upon TCR stimulation, Ssu72-deficient T cells increased the phosphorylation of ZAP-70 and downstream molecules and exhibited hyperresponsiveness, which was restored by reducing ZAP-70 phosphorylation. In vitro assay demonstrated that recombinant Ssu72 reduced tyrosine phosphorylation of ZAP-70 via phosphatase activity. Cd4-CreSsu72fl/fl mice showed a defect in the thymic development of invariant natural killer T cells and reductions in CD4+ and CD8+ T cell numbers in the periphery but more CD44hiCD62Llo memory T cells and fewer CD44loCD62Lhi naïve T cells, compared with wild-type mice. Furthermore, Cd4-CreSsu72fl/fl mice developed spontaneous inflammation at 6 mo. In conclusion, Ssu72 phosphatase regulates the fine-tuning of TCR signaling by binding to ZAP-70 and regulating its tyrosine phosphorylation, thereby preventing spontaneous inflammation.


Subject(s)
CD8-Positive T-Lymphocytes/immunology , Inflammation/prevention & control , Memory T Cells/immunology , Phosphoprotein Phosphatases/physiology , Receptors, Antigen, T-Cell/metabolism , ZAP-70 Protein-Tyrosine Kinase/metabolism , Animals , Cell Communication , Inflammation/etiology , Inflammation/metabolism , Inflammation/pathology , Mice , Mice, Inbred C57BL , Mice, Knockout , Phosphorylation , Receptors, Antigen, T-Cell/genetics , Receptors, Antigen, T-Cell/immunology , ZAP-70 Protein-Tyrosine Kinase/genetics
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