1 2787 173 EZH2-MEDIATED EPIGENETIC MODIFICATION IS REQUIRED FOR ALLOGENEIC T CELL-INDUCED LUPUS DISEASE. BACKGROUND: THE MECHANISMS INVOLVED IN THE PATHOGENESIS OF AUTOIMMUNE DISORDERS, INCLUDING SYSTEMIC LUPUS ERYTHEMATOSUS (SLE), HAVE NOT BEEN FULLY ELUCIDATED. SOME OF THESE MECHANISMS INVOLVE EPIGENETIC REGULATION OF GENE EXPRESSION. THE HISTONE METHYLTRANSFERASE EZH2 CONTRIBUTES TO EPIGENETIC REGULATION OF GENE EXPRESSION, IS HIGHLY EXPRESSED IN GERMINAL CENTER (GC) B CELLS AND FOLLICULAR T HELPER (T(FH)) CELLS, AND MAY BE INVOLVED IN LUPUS PATHOGENESIS. METHODS: THE MURINE BM12 MODEL OF LUPUS-LIKE CHRONIC GRAFT VERSUS HOST DISEASE (CGVHD) WAS INDUCED BY INTRA-PERITONEAL INJECTION OF NEGATIVELY ISOLATED ALLOGENEIC CD4(+) T CELLS. LUPUS-LIKE DISEASE DEVELOPMENT WAS MONITORED BY ELISA DETERMINATION OF SERUM ANTI-DSDNA AND ANTI-CHROMATIN ANTIBODY TITERS. IMMUNE CELL ACTIVATION AND EZH2 EXPRESSION WERE EVALUATED BY FLOW CYTOMETRY AND WESTERN BLOTTING. RESULTS: DECREASED AUTOANTIBODY PRODUCTION AND GC FORMATION ARE OBSERVED WHEN EZH2-DEFICIENT CD4(+) T CELLS ARE USED INSTEAD OF WILD-TYPE (WT) TO INDUCE CGVHD AND WHEN MICE THAT RECEIVE ALLOGENEIC WT DONOR T CELLS TO INDUCE CGVHD ARE TREATED WITH GSK503, AN EZH2-SPECIFIC INHIBITOR. IN THE BM12 CGVHD MODEL, WT DONOR T CELLS ARE NORMALLY FULLY ACTIVATED 1 WEEK AFTER INFUSION INTO AN ALLOGENEIC HOST, EXHIBIT A T(FH) CELL (PD-1(HI)/CXCR5(HI)) PHENOTYPE WITH UPREGULATED EZH2, AND ACTIVATE B CELLS TO FORM GERMINAL CENTERS (GCS). IN CONTRAST, EZH2-DEFICIENT DONOR T CELLS GENERATE FEWER T(FH) CELLS THAT FAIL TO ACTIVATE B CELLS OR PROMOTE GC FORMATION. DESPITE SIMILAR T-INDEPENDENT, LPS-INDUCED B CELL RESPONSES, OVA-IMMUNIZED CD4.EZH2-KO MICE HAD A SKEWED LOW-AFFINITY IGM PHENOTYPE IN COMPARISON TO SIMILARLY TREATED WT MICE. IN ADDITION, EARLY AFTER OVA IMMUNIZATION, MORE CD4(+) T CELLS FROM B6.CD4.EZH2-KO MICE HAD A CD44(LO)/CD62L(LO) PHENOTYPE, WHICH SUGGESTS ARRESTED OR DELAYED ACTIVATION, THAN CD4(+) T CELLS FROM OVALBUMIN-IMMUNIZED B6.WT MICE. CONCLUSION: EZH2 GENE DELETION OR PHARMACOLOGICAL EZH2 INHIBITION SUPPRESSES AUTOANTIBODY PRODUCTION AND GC FORMATION IN BM12 LUPUS-LIKE CGVHD AND DECREASES AFFINITY MATURATION AND ISOTYPE SWITCHING IN RESPONSE TO IMMUNIZATION WITH A T CELL-DEPENDENT ANTIGEN. EZH2 INHIBITION MAY BE USEFUL FOR THE TREATMENT OF LUPUS AND OTHER AUTOIMMUNE DISORDERS. 2020 2 6117 39 THE EPIGENETIC DRUG TRICHOSTATIN A AMELIORATES EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS VIA T CELL TOLERANCE INDUCTION AND IMPAIRED INFLUX OF T CELLS INTO THE SPINAL CORD. MULTIPLE SCLEROSIS IS A T CELL MEDIATED CHRONIC DEMYELINATING DISEASE OF THE CENTRAL NERVOUS SYSTEM. ALTHOUGH CURRENTLY AVAILABLE THERAPIES REDUCE RELAPSES, THEY DO NOT FACILITATE TOLERIZATION OF MYELIN ANTIGEN-SPECIFIC T LYMPHOCYTES TO ENSURE PROLONGED PROTECTION AGAINST MULTIPLE SCLEROSIS. HERE, WE SHOW THAT TREATMENT OF NOD MICE WITH THE HISTONE DEACETYLASE INHIBITOR, TRICHOSTATIN A AFFORDS ROBUST PROTECTION AGAINST MYELIN PEPTIDE INDUCED EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS, A MOUSE MODEL OF MULTIPLE SCLEROSIS. PROTECTION WAS ACCOMPANIED BY HISTONE HYPERACETYLATION, AND REDUCED INFLAMMATION AND AXONAL DAMAGE IN THE SPINAL CORD. DRUG TREATMENT DIMINISHED THE GENERATION OF CD4(+) MEMORY T CELLS AND INDUCED TOLERANCE IN CD4(+) T CELLS RECOGNIZING THE IMMUNIZING MYELIN PEPTIDE. DURING THE EARLY IMMUNIZATION PERIOD, CD4(+) T CELLS PRODUCING GM-CSF+IFN-GAMMA, GM-CSF+IL-17A, AS WELL AS THOSE EXPRESSING BOTH IL-17A+IFN-GAMMA (DOUBLE-PRODUCERS) WERE DETECTED IN THE SECONDARY LYMPHOID ORGANS FOLLOWED BY THE APPEARANCE OF CELLS PRODUCING IFN-GAMMA AND GM-CSF. ON THE OTHER HAND, IFN-GAMMA PRODUCING TH1 CELLS APPEAR FIRST IN THE SPINAL CORD FOLLOWED BY CELLS PRODUCING IL-17A AND GM-CSF. TREATMENT WITH TRICHOSTATIN A SUBSTANTIALLY REDUCED THE FREQUENCIES OF ALL T CELLS SECRETING VARIOUS LYMPHOKINES BOTH IN THE PERIPHERY AND IN THE SPINAL CORD. THESE DATA INDICATE THAT EPIGENETIC MODIFICATIONS INDUCED BY HISTONE HYPERACETYLATION FACILITATES T CELL TOLERANCE INDUCTION IN THE PERIPHERY LEADING TO REDUCED MIGRATION OF T CELLS TO THE SPINAL CORD AND MITIGATION OF NEURONAL DAMAGE AND IMPROVED CLINICAL OUTCOME. THESE RESULTS SUGGEST THAT EPIGENETIC MODULATION OF THE GENOME MAY SIMILARLY OFFER BENEFITS TO MULTIPLE SCLEROSIS PATIENTS VIA ABROGATING THE FUNCTION OF ENCEPHALITOGENIC T LYMPHOCYTES WITHOUT EXERTING SEVERE SIDE EFFECTS ASSOCIATED WITH CURRENTLY USED DISEASE-MODIFYING THERAPIES. 2017 3 2878 36 FUNCTIONAL T CELLS ARE CAPABLE OF SUPERNUMERARY CELL DIVISION AND LONGEVITY. DIFFERENTIATED SOMATIC MAMMALIAN CELLS PUTATIVELY EXHIBIT SPECIES-SPECIFIC DIVISION LIMITS THAT IMPEDE CANCER BUT MAY CONSTRAIN LIFESPANS(1-3). TO PROVIDE IMMUNITY, TRANSIENTLY STIMULATED CD8(+) T CELLS UNDERGO UNUSUALLY RAPID BURSTS OF NUMEROUS CELL DIVISIONS, AND THEN FORM QUIESCENT LONG-LIVED MEMORY CELLS THAT REMAIN POISED TO REPROLIFERATE FOLLOWING SUBSEQUENT IMMUNOLOGICAL CHALLENGES. HERE WE ADDRESSED WHETHER T CELLS ARE INTRINSICALLY CONSTRAINED BY CHRONOLOGICAL OR CELL-DIVISION LIMITS. WE ACTIVATED MOUSE T CELLS IN VIVO USING ACUTE HETEROLOGOUS PRIME-BOOST-BOOST VACCINATIONS(4), TRANSFERRED EXPANDED CELLS TO NEW MICE, AND THEN REPEATED THIS PROCESS ITERATIVELY. OVER 10 YEARS (GREATLY EXCEEDING THE MOUSE LIFESPAN)(5) AND 51 SUCCESSIVE IMMUNIZATIONS, T CELLS REMAINED COMPETENT TO RESPOND TO VACCINATION. CELLS REQUIRED SUFFICIENT REST BETWEEN STIMULATION EVENTS. DESPITE DEMONSTRATING THE POTENTIAL TO EXPAND THE STARTING POPULATION AT LEAST 10(40)-FOLD, CELLS DID NOT SHOW LOSS OF PROLIFERATION CONTROL AND RESULTS WERE NOT DUE TO CONTAMINATION WITH YOUNG CELLS. PERSISTENT STIMULATION BY CHRONIC INFECTIONS OR CANCER CAN CAUSE T CELL PROLIFERATIVE SENESCENCE, FUNCTIONAL EXHAUSTION AND DEATH(6). WE FOUND THAT ALTHOUGH ITERATIVE ACUTE STIMULATIONS ALSO INDUCED SUSTAINED EXPRESSION AND EPIGENETIC REMODELLING OF COMMON EXHAUSTION MARKERS (INCLUDING PD1, WHICH IS ALSO KNOWN AS PDCD1, AND TOX) IN THE CELLS, THEY COULD STILL PROLIFERATE, EXECUTE ANTIMICROBIAL FUNCTIONS AND FORM QUIESCENT MEMORY CELLS. THESE OBSERVATIONS PROVIDE A MODEL TO BETTER UNDERSTAND MEMORY CELL DIFFERENTIATION, EXHAUSTION, CANCER AND AGEING, AND SHOW THAT FUNCTIONALLY COMPETENT T CELLS CAN RETAIN THE POTENTIAL FOR EXTRAORDINARY POPULATION EXPANSION AND LONGEVITY WELL BEYOND THEIR ORGANISMAL LIFESPAN. 2023 4 6481 35 TOX IS EXPRESSED BY EXHAUSTED AND POLYFUNCTIONAL HUMAN EFFECTOR MEMORY CD8(+) T CELLS. CD8(+) T CELL EXHAUSTION IS A HALLMARK OF MANY CANCERS AND CHRONIC INFECTIONS. IN MICE, T CELL FACTOR 1 (TCF-1) MAINTAINS EXHAUSTED CD8(+) T CELL RESPONSES, WHEREAS THYMOCYTE SELECTION-ASSOCIATED HMG BOX (TOX) IS REQUIRED FOR THE EPIGENETIC REMODELING AND SURVIVAL OF EXHAUSTED CD8(+) T CELLS. HOWEVER, IT HAS REMAINED UNCLEAR TO WHAT EXTENT THESE TRANSCRIPTION FACTORS PLAY ANALOGOUS ROLES IN HUMANS. IN THIS STUDY, WE MAPPED THE EXPRESSION OF TOX AND TCF-1 AS A FUNCTION OF DIFFERENTIATION AND SPECIFICITY IN THE HUMAN CD8(+) T CELL LANDSCAPE. HERE, WE DEMONSTRATE THAT CIRCULATING TOX(+) CD8(+) T CELLS EXIST IN MOST HUMANS, BUT THAT TOX IS NOT EXCLUSIVELY ASSOCIATED WITH EXHAUSTION. EFFECTOR MEMORY CD8(+) T CELLS GENERALLY EXPRESSED TOX, WHEREAS NAIVE AND EARLY-DIFFERENTIATED MEMORY CD8(+) T CELLS GENERALLY EXPRESSED TCF-1. CYTOLYTIC GENE AND PROTEIN EXPRESSION SIGNATURES WERE ALSO DEFINED BY THE EXPRESSION OF TOX. IN THE CONTEXT OF A RELENTLESS IMMUNE CHALLENGE, EXHAUSTED HIV-SPECIFIC CD8(+) T CELLS COMMONLY EXPRESSED TOX, OFTEN IN CLUSTERS WITH VARIOUS ACTIVATION MARKERS AND INHIBITORY RECEPTORS, AND EXPRESSED LESS TCF-1. HOWEVER, POLYFUNCTIONAL MEMORY CD8(+) T CELLS SPECIFIC FOR CYTOMEGALOVIRUS (CMV) OR EPSTEIN-BARR VIRUS (EBV) ALSO EXPRESSED TOX, EITHER WITH OR WITHOUT TCF-1. A SIMILAR PHENOTYPE WAS OBSERVED AMONG HIV-SPECIFIC CD8(+) T CELLS FROM INDIVIDUALS WHO MAINTAINED EXCEPTIONAL IMMUNE CONTROL OF VIRAL REPLICATION. COLLECTIVELY, THESE DATA DEMONSTRATE THAT TOX IS EXPRESSED BY MOST CIRCULATING EFFECTOR MEMORY CD8(+) T CELL SUBSETS AND NOT EXCLUSIVELY LINKED TO EXHAUSTION. 2020 5 5414 31 REGULATION OF CD8(+) T MEMORY AND EXHAUSTION BY THE MTOR SIGNALS. CD8(+) T CELLS ARE THE KEY EXECUTIONERS OF THE ADAPTIVE IMMUNE ARM, WHICH MEDIATES ANTITUMOR AND ANTIVIRAL IMMUNITY. NAIVE CD8(+) T CELLS DEVELOP IN THE THYMUS AND ARE QUICKLY ACTIVATED IN THE PERIPHERY AFTER ENCOUNTERING A COGNATE ANTIGEN, WHICH INDUCES THESE CELLS TO PROLIFERATE AND DIFFERENTIATE INTO EFFECTOR CELLS THAT FIGHT THE INITIAL INFECTION. SIMULTANEOUSLY, A FRACTION OF THESE CELLS BECOME LONG-LIVED MEMORY CD8(+) T CELLS THAT COMBAT FUTURE INFECTIONS. NOTABLY, THE GENERATION AND MAINTENANCE OF MEMORY CELLS IS PROFOUNDLY AFFECTED BY VARIOUS IN VIVO CONDITIONS, SUCH AS THE MODE OF PRIMARY ACTIVATION (E.G., ACUTE VS. CHRONIC IMMUNIZATION) OR FLUCTUATIONS IN HOST METABOLIC, INFLAMMATORY, OR AGING FACTORS. THEREFORE, MANY T CELLS MAY BE LOST OR BECOME EXHAUSTED AND NO LONGER FUNCTIONAL. COMPLICATED INTRACELLULAR SIGNALING PATHWAYS, TRANSCRIPTION FACTORS, EPIGENETIC MODIFICATIONS, AND METABOLIC PROCESSES ARE INVOLVED IN THIS PROCESS. THEREFORE, UNDERSTANDING THE CELLULAR AND MOLECULAR BASIS FOR THE GENERATION AND FATE OF MEMORY AND EXHAUSTED CD8(+) CELLS IS CENTRAL FOR HARNESSING CELLULAR IMMUNITY. IN THIS REVIEW, WE FOCUS ON MAMMALIAN TARGET OF RAPAMYCIN (MTOR), PARTICULARLY SIGNALING MEDIATED BY MTOR COMPLEX (MTORC) 2 IN MEMORY AND EXHAUSTED CD8(+) T CELLS AT THE MOLECULAR LEVEL. 2023 6 5015 28 PERSISTENCE OF SELF-REACTIVE CD8+ T CELLS IN THE CNS REQUIRES TOX-DEPENDENT CHROMATIN REMODELING. SELF-REACTIVE CD8(+) T CELLS ARE IMPORTANT MEDIATORS OF PROGRESSIVE TISSUE DAMAGE IN AUTOIMMUNE DISEASES, BUT THE MOLECULAR PROGRAM UNDERLYING THESE CELLS' FUNCTIONAL ADAPTATION IS UNCLEAR. HERE WE CHARACTERIZE THE TRANSCRIPTIONAL AND EPIGENETIC LANDSCAPE OF SELF-REACTIVE CD8(+) T CELLS IN A MOUSE MODEL OF PROTRACTED CENTRAL NERVOUS SYSTEM (CNS) AUTOIMMUNITY AND COMPARE IT TO POPULATIONS OF CNS-RESIDENT MEMORY CD8(+) T CELLS EMERGING FROM ACUTE VIRAL INFECTION. WE FIND THAT AUTOIMMUNE CD8(+) T CELLS PERSISTING AT SITES OF SELF-ANTIGEN EXHIBIT CHARACTERISTIC TRANSCRIPTIONAL REGULATION TOGETHER WITH DISTINCT EPIGENETIC REMODELING. THIS SELF-REACTIVE CD8(+) T CELL FATE DEPENDS ON THE TRANSCRIPTIONAL REGULATION BY THE DNA-BINDING HMG-BOX PROTEIN TOX WHICH REMODELS MORE THAN 400 GENOMIC REGIONS INCLUDING LOCI SUCH AS TCF7, WHICH IS CENTRAL TO STEMNESS OF CD8(+) T CELLS. CONTINUOUS EXPOSURE TO CNS SELF-ANTIGEN SUSTAINS TOX LEVELS IN SELF-REACTIVE CD8(+) T CELLS, WHEREAS GENETIC ABLATION OF TOX IN CD8(+) T CELLS RESULTS IN SHORTENED PERSISTENCE OF SELF-REACTIVE CD8(+) T CELLS IN THE INFLAMED CNS. OUR STUDY ESTABLISHES AND CHARACTERIZES THE GENETIC DIFFERENTIATION PROGRAM ENABLING CHRONIC T CELL-DRIVEN IMMUNOPATHOLOGY IN CNS AUTOIMMUNITY. 2021 7 2421 34 EPIGENETIC SIGNATURE OF PD-1+ TCF1+ CD8 T CELLS THAT ACT AS RESOURCE CELLS DURING CHRONIC VIRAL INFECTION AND RESPOND TO PD-1 BLOCKADE. WE HAVE RECENTLY DEFINED A NOVEL POPULATION OF PD-1 (PROGRAMMED CELL DEATH 1)+ TCF1 (T CELL FACTOR 1)+ VIRUS-SPECIFIC CD8 T CELLS THAT FUNCTION AS RESOURCE CELLS DURING CHRONIC LCMV INFECTION AND PROVIDE THE PROLIFERATIVE BURST SEEN AFTER PD-1 BLOCKADE. SUCH CD8 T CELLS HAVE BEEN FOUND IN OTHER CHRONIC INFECTIONS AND ALSO IN CANCER IN MICE AND HUMANS. THESE CD8 T CELLS EXHIBIT STEM-LIKE PROPERTIES UNDERGOING SELF-RENEWAL AND ALSO DIFFERENTIATING INTO THE TERMINALLY EXHAUSTED CD8 T CELLS. HERE WE COMPARED THE EPIGENETIC SIGNATURE OF STEM-LIKE CD8 T CELLS WITH EXHAUSTED CD8 T CELLS. ATAC-SEQ ANALYSIS SHOWED THAT STEM-LIKE CD8 T CELLS HAD A UNIQUE SIGNATURE IMPLICATING ACTIVITY OF HMG (TCF) AND RHD (NF-KAPPAB) TRANSCRIPTION FACTOR FAMILY MEMBERS IN CONTRAST TO HIGHER ACCESSIBILITY TO ETS AND RUNX MOTIFS IN EXHAUSTED CD8 T CELLS. IN ADDITION, REGULATORY REGIONS OF THE TRANSCRIPTION FACTORS TCF7 AND ID3 WERE MORE ACCESSIBLE IN STEM-LIKE CELLS WHEREAS PRDM1 AND ID2 WERE MORE ACCESSIBLE IN EXHAUSTED CD8 T CELLS. WE ALSO COMPARED THE EPIGENETIC SIGNATURES OF THE 2 CD8 T CELL SUBSETS FROM CHRONICALLY INFECTED MICE WITH EFFECTOR AND MEMORY CD8 T CELLS GENERATED AFTER AN ACUTE LCMV INFECTION. BOTH CD8 T CELL SUBSETS GENERATED DURING CHRONIC INFECTION WERE STRIKINGLY DIFFERENT FROM CD8 T CELL SUBSETS FROM ACUTE INFECTION. INTERESTINGLY, THE STEM-LIKE CD8 T CELL SUBSET FROM CHRONIC INFECTION, DESPITE SHARING KEY FUNCTIONAL PROPERTIES WITH MEMORY CD8 T CELLS, HAD A VERY DISTINCT EPIGENETIC PROGRAM. THESE RESULTS SHOW THAT THE CHRONIC STEM-LIKE CD8 T CELL PROGRAM REPRESENTS A SPECIFIC ADAPTATION OF THE T CELL RESPONSE TO PERSISTENT ANTIGENIC STIMULATION. 2019 8 3373 30 HISTONE MODULATION BLOCKS TREG-INDUCED FOXP3 BINDING TO THE IL-2 PROMOTER OF VIRUS-SPECIFIC CD8(+) T CELLS FROM FELINE IMMUNODEFICIENCY VIRUS-INFECTED CATS. CD8(+) T CELLS ARE CRITICAL FOR CONTROLLING HIV INFECTION. DURING THE CHRONIC PHASE OF LENTIVIRAL INFECTION, CD8(+) T CELLS LOSE THEIR PROLIFERATIVE CAPACITY AND EXHIBIT IMPAIRED ANTIVIRAL FUNCTION. THIS LOSS OF CD8(+) T CELL FUNCTION IS DUE, IN PART, TO CD4(+)CD25(+) T REGULATORY (TREG) CELL-MEDIATED SUPPRESSION. OUR RESEARCH GROUP HAS DEMONSTRATED THAT LENTIVIRUS-ACTIVATED CD4(+)CD25(+) TREG CELLS INDUCE THE REPRESSIVE TRANSCRIPTION FACTOR FORKHEAD BOX P3 (FOXP3) IN AUTOLOGOUS CD8(+) T CELLS FOLLOWING CO-CULTURE. WE HAVE RECENTLY REPORTED THAT TREG-INDUCED FOXP3 BINDS THE INTERLEUKIN-2 (IL-2), INTERFERON-GAMMA (IFN- GAMMA), AND TUMOR NECROSIS FACTOR-ALPHA (TNF-ALPHA) PROMOTERS IN VIRUS-SPECIFIC CD8(+) T CELLS. THESE DATA SUGGEST AN IMPORTANT ROLE OF FOXP3-MEDIATED CD8(+) T CELL DYSFUNCTION IN LENTIVIRAL INFECTION. TO ELUCIDATE THE MECHANISM OF THIS SUPPRESSION, WE PREVIOUSLY REPORTED THAT DECREASED METHYLATION FACILITATES FOXP3 BINDING IN MITOGEN-ACTIVATED CD8(+) T CELLS FROM FELINE IMMUNODEFICIENCY VIRUS (FIV)-INFECTED CATS. WE DEMONSTRATED THE REDUCED BINDING OF FOXP3 TO THE IL-2 PROMOTER BY INCREASING METHYLATION OF CD8(+) T CELLS. IN THE STUDIES PRESENTED HERE, WE ASK IF ANOTHER FORM OF EPIGENETIC MODULATION MIGHT ALLEVIATE FOXP3-MEDIATED SUPPRESSION IN CD8(+) T CELLS. WE HYPOTHESIZED THAT DECREASING HISTONE ACETYLATION IN VIRUS-SPECIFIC CD8(+) T CELLS WOULD DECREASE TREG-INDUCED FOXP3 BINDING TO THE IL-2 PROMOTER. INDEED, USING ANACARDIC ACID (AA), A KNOWN HISTONE ACETYL TRANSFERASE (HAT) INHIBITOR, WE DEMONSTRATE A REDUCTION IN FOXP3 BINDING TO THE IL-2 PROMOTER IN VIRUS-SPECIFIC CD8(+) T CELLS CO-CULTURED WITH AUTOLOGOUS TREG CELLS. THESE DATA IDENTIFY A NOVEL MECHANISM OF FOXP3-MEDIATED CD8(+) T CELL DYSFUNCTION DURING LENTIVIRAL INFECTION. 2018 9 950 24 CHRONIC MILD STRESS EXACERBATES SEVERITY OF EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS IN ASSOCIATION WITH ALTERED NON-CODING RNA AND METABOLIC BIOMARKERS. THE CAUSAL FACTORS DETERMINING THE ONSET AND SEVERITY OF MULTIPLE SCLEROSIS (MS) ARE NOT WELL UNDERSTOOD. HERE, WE INVESTIGATED THE INFLUENCE OF CHRONIC STRESS ON CLINICAL SYMPTOMS, METABOLIC AND EPIGENETIC MANIFESTATIONS OF EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS (EAE), A COMMON ANIMAL MODEL OF MS. LEWIS RATS WERE IMMUNIZED FOR MONOPHASIC EAE WITH MBP(69-88) AND WERE EXPOSED TO CHRONIC STRESS FOR 37DAYS STARTING 7DAYS PRIOR TO IMMUNIZATION. THE EXPOSURE TO STRESS ACCELERATED AND EXACERBATED THE CLINICAL SYMPTOMS OF EAE. BOTH STRESS AND EAE ALSO DISRUPTED METABOLIC STATUS AS INDICATED BY TRACE ELEMENTAL ANALYSIS IN BODY HAIR. STRESS PARTICULARLY EXACERBATED CHLORINE DEPOSITION IN EAE ANIMALS. MOREOVER, DEEP SEQUENCING REVEALED A CONSIDERABLE IMPACT OF STRESS ON MICRORNA EXPRESSION IN EAE. EAE BY ITSELF UPREGULATED MICRORNA EXPRESSION IN LUMBAR SPINAL CORD, INCLUDING MIR-21, MIR-142-3P, MIR-142-5P, MIR-146A, AND MIR-155. STRESS IN EAE FURTHER UP-REGULATED MIR-16, MIR-146A AND MIR-155 LEVELS. THE LATTER TWO MICRORNAS ARE RECOGNIZED BIOMARKERS OF HUMAN MS. THUS, STRESS MAY SYNERGISTICALLY EXACERBATE SEVERITY OF EAE BY ALTERING EPIGENETIC REGULATORY PATHWAYS. THE FINDINGS SUGGEST THAT STRESS MAY REPRESENT A SIGNIFICANT RISK FACTOR FOR SYMPTOMATIC DETERIORATION IN MS. STRESS-RELATED METABOLIC AND MICRORNA SIGNATURES SUPPORT THEIR VALUE AS BIOMARKERS FOR PREDICTING THE RISK AND SEVERITY OF MS. 2017 10 3735 24 INNATE IMMUNE MEMORY: IMPLICATIONS FOR DEVELOPMENT OF PEDIATRIC IMMUNOMODULATORY AGENTS AND ADJUVANTED VACCINES. UNIQUE FEATURES OF IMMUNITY EARLY IN LIFE INCLUDE A DISTINCT IMMUNE SYSTEM PARTICULARLY RELIANT ON INNATE IMMUNITY, WITH WEAK T HELPER (TH)1-POLARIZING IMMUNE RESPONSES, AND IMPAIRED RESPONSES TO CERTAIN VACCINES LEADING TO A HEIGHTENED SUSCEPTIBILITY TO INFECTION. TO THESE IMPORTANT ASPECTS, WE NOW ADD AN INCREASINGLY APPRECIATED CONCEPT THAT THE INNATE IMMUNE SYSTEM DISPLAYS EPIGENETIC MEMORY OF AN EARLIER INFECTION OR VACCINATION, A PHENOMENON THAT HAS BEEN NAMED "TRAINED IMMUNITY." EXPOSURE OF NEONATAL LEUKOCYTES IN VITRO OR NEONATAL ANIMALS OR HUMANS IN VIVO TO SPECIFIC INNATE IMMUNE STIMULI RESULTS IN AN ALTERED INNATE IMMUNE SET POINT. GIVEN THE PARTICULAR IMPORTANCE OF INNATE IMMUNITY EARLY IN LIFE, TRAINED IMMUNITY TO EARLY LIFE INFECTION AND/OR IMMUNIZATION MAY PLAY AN IMPORTANT ROLE IN MODULATING BOTH ACUTE AND CHRONIC DISEASES. 2014 11 2409 28 EPIGENETIC SCARRING OF EXHAUSTED T CELLS HINDERS MEMORY DIFFERENTIATION UPON ELIMINATING CHRONIC ANTIGENIC STIMULATION. EXHAUSTED CD8 T CELLS (T(EX)) ARE A DISTINCT STATE OF T CELL DIFFERENTIATION ASSOCIATED WITH FAILURE TO CLEAR CHRONIC VIRUSES AND CANCER. IMMUNOTHERAPIES SUCH AS PD-1 BLOCKADE CAN REINVIGORATE T(EX) CELLS, BUT REINVIGORATION IS NOT DURABLE. A MAJOR UNANSWERED QUESTION IS WHETHER T(EX) CELLS DIFFERENTIATE INTO FUNCTIONAL DURABLE MEMORY T CELLS (T(MEM)) UPON ANTIGEN CLEARANCE. HERE, USING A MOUSE MODEL, WE FOUND THAT UPON ELIMINATING CHRONIC ANTIGENIC STIMULATION, T(EX) CELLS PARTIALLY (RE)ACQUIRE PHENOTYPIC AND TRANSCRIPTIONAL FEATURES OF T(MEM) CELLS. THESE 'RECOVERING' T(EX) CELLS ORIGINATED FROM THE T CELL FACTOR (TCF-1(+)) T(EX) PROGENITOR SUBSET. NEVERTHELESS, THE RECALL CAPACITY OF THESE RECOVERING T(EX) CELLS REMAINED COMPROMISED AS COMPARED TO T(MEM) CELLS. CHROMATIN-ACCESSIBILITY PROFILING REVEALED A FAILURE TO RECOVER CORE MEMORY EPIGENETIC CIRCUITS AND MAINTENANCE OF A LARGELY EXHAUSTED OPEN CHROMATIN LANDSCAPE. THUS, DESPITE SOME PHENOTYPIC AND TRANSCRIPTIONAL RECOVERY UPON ANTIGEN CLEARANCE, EXHAUSTION LEAVES DURABLE EPIGENETIC SCARS CONSTRAINING FUTURE IMMUNE RESPONSES. THESE RESULTS SUPPORT EPIGENETIC REMODELING INTERVENTIONS FOR T(EX) CELL-TARGETED IMMUNOTHERAPIES. 2021 12 559 23 BACH2 ENFORCES THE TRANSCRIPTIONAL AND EPIGENETIC PROGRAMS OF STEM-LIKE CD8(+) T CELLS. DURING CHRONIC INFECTION AND CANCER, A SELF-RENEWING CD8(+) T CELL SUBSET MAINTAINS LONG-TERM IMMUNITY AND IS CRITICAL TO THE EFFECTIVENESS OF IMMUNOTHERAPY. THESE STEM-LIKE CD8(+) T CELLS DIVERGE FROM OTHER CD8(+) SUBSETS EARLY AFTER CHRONIC VIRAL INFECTION. HOWEVER, PATHWAYS GUARDING STEM-LIKE CD8(+) T CELLS AGAINST TERMINAL EXHAUSTION REMAIN UNCLEAR. HERE, WE SHOW THAT THE GENE ENCODING TRANSCRIPTIONAL REPRESSOR BACH2 IS TRANSCRIPTIONALLY AND EPIGENETICALLY ACTIVE IN STEM-LIKE CD8(+) T CELLS BUT NOT TERMINALLY EXHAUSTED CELLS EARLY AFTER INFECTION. BACH2 OVEREXPRESSION ENFORCED STEM-LIKE CELL FATE, WHEREAS BACH2 DEFICIENCY IMPAIRED STEM-LIKE CD8(+) T CELL DIFFERENTIATION. SINGLE-CELL TRANSCRIPTOMIC AND EPIGENOMIC APPROACHES REVEALED THAT BACH2 ESTABLISHED THE TRANSCRIPTIONAL AND EPIGENETIC PROGRAMS OF STEM-LIKE CD8(+) T CELLS. IN ADDITION, BACH2 SUPPRESSED THE MOLECULAR PROGRAM DRIVING TERMINAL EXHAUSTION THROUGH TRANSCRIPTIONAL REPRESSION AND EPIGENETIC SILENCING. THUS, OUR STUDY REVEALS A NEW PATHWAY THAT ENFORCES COMMITMENT TO STEM-LIKE CD8(+) LINEAGE AND PREVENTS AN ALTERNATIVE TERMINALLY EXHAUSTED CELL FATE. 2021 13 991 31 CHRONIC STIMULATION DRIVES HUMAN NK CELL DYSFUNCTION AND EPIGENETIC REPROGRAMING. A POPULATION OF NATURAL KILLER (NK) CELLS EXPRESSING THE ACTIVATING RECEPTOR NKG2C AND THE MATURATION MARKER CD57 EXPANDS IN RESPONSE TO HUMAN CYTOMEGALOVIRUS (HCMV) INFECTION. CD3-CD56DIMCD57+NKG2C+ NK CELLS ARE SIMILAR TO CD8+ MEMORY T CELLS WITH RAPID AND ROBUST EFFECTOR FUNCTION UPON RE-STIMULATION, PERSISTENCE, AND EPIGENETIC REMODELING OF THE IFNG LOCUS. CHRONIC ANTIGEN STIMULATION DRIVES CD8+ MEMORY T CELL PROLIFERATION WHILE ALSO INDUCING GENOME-WIDE EPIGENETIC REPROGRAMING AND DYSFUNCTION. WE HYPOTHESIZED THAT CHRONIC STIMULATION COULD SIMILARLY INDUCE EPIGENETIC REPROGRAMING AND DYSFUNCTION IN NK CELLS. HERE WE SHOW THAT CHRONIC STIMULATION OF ADAPTIVE NK CELLS THROUGH NKG2C USING PLATE-BOUND AGONISTIC ANTIBODIES IN COMBINATION WITH IL-15 DROVE ROBUST PROLIFERATION AND ACTIVATION OF CD3-CD56DIMCD57+NKG2C+ NK CELLS WHILE SIMULTANEOUSLY INDUCING HIGH EXPRESSION OF THE CHECKPOINT INHIBITORY RECEPTORS LAG-3 AND PD-1. MARKED INDUCTION OF CHECKPOINT INHIBITORY RECEPTORS WAS ALSO OBSERVED ON THE SURFACE OF ADAPTIVE NK CELLS CO-CULTURED WITH HCMV-INFECTED ENDOTHELIAL CELLS. CHRONICALLY STIMULATED ADAPTIVE NK CELLS WERE DYSFUNCTIONAL WHEN CHALLENGED WITH TUMOR TARGETS. THESE CELLS EXHIBITED A PATTERN OF EPIGENETIC REPROGRAMING, WITH GENOME-WIDE ALTERATIONS IN DNA METHYLATION. OUR STUDY HAS IMPORTANT IMPLICATIONS FOR CANCER IMMUNOTHERAPY AND SUGGEST THAT EXHAUSTED NK CELLS COULD BE TARGETED WITH INHIBITORY CHECKPOINT RECEPTOR BLOCKADE. 2019 14 2793 25 FATE-MAPPING OF GM-CSF EXPRESSION IDENTIFIES A DISCRETE SUBSET OF INFLAMMATION-DRIVING T HELPER CELLS REGULATED BY CYTOKINES IL-23 AND IL-1BETA. PATHOGENIC LYMPHOCYTES INITIATE THE DEVELOPMENT OF CHRONIC INFLAMMATORY DISEASES. THE CYTOKINE GRANULOCYTE-MACROPHAGE COLONY-STIMULATING FACTOR (GM-CSF) (ENCODED BY CSF2) IS A KEY COMMUNICATOR BETWEEN PATHOGENIC LYMPHOCYTES AND TISSUE-INVADING INFLAMMATORY PHAGOCYTES. HOWEVER, THE MOLECULAR PROPERTIES OF GM-CSF-PRODUCING CELLS AND THE MODE OF CSF2 REGULATION IN VIVO REMAIN UNCLEAR. TO SYSTEMATICALLY STUDY AND MANIPULATE GM-CSF(+) CELLS AND THEIR PROGENY IN VIVO, WE GENERATED A FATE-MAP AND REPORTER OF GM-CSF EXPRESSION MOUSE STRAIN (FROG). WE MAPPED THE PHENOTYPIC AND FUNCTIONAL PROFILE OF AUTO-AGGRESSIVE T HELPER (TH) CELLS DURING NEUROINFLAMMATION AND IDENTIFIED THE SIGNATURE AND PATHOGENIC MEMORY OF A DISCRETE ENCEPHALITOGENIC TH SUBSET. THESE CELLS REQUIRED INTERLEUKIN-23 RECEPTOR (IL-23R) AND IL-1R BUT NOT IL-6R SIGNALING FOR THEIR MAINTENANCE AND PATHOGENICITY. SPECIFIC ABLATION OF THIS SUBSET INTERRUPTED THE INFLAMMATORY CASCADE, DESPITE THE UNPERTURBED TISSUE ACCUMULATION OF OTHER TH SUBSETS (E.G., TH1 AND TH17), HIGHLIGHTING THAT GM-CSF EXPRESSION NOT ONLY MARKS PATHOGENIC TH CELLS, BUT THAT THIS SUBSET MEDIATES IMMUNOPATHOLOGY AND TISSUE DESTRUCTION. 2019 15 771 29 CD8(+) T CELL EXHAUSTION. CD8(+) T CELLS ARE IMPORTANT FOR THE PROTECTIVE IMMUNITY AGAINST INTRACELLULAR PATHOGENS AND TUMOR. IN THE CASE OF CHRONIC INFECTION OR CANCER, CD8(+) T CELLS ARE EXPOSED TO PERSISTENT ANTIGEN AND/OR INFLAMMATORY SIGNALS. THIS EXCESSIVE AMOUNT OF SIGNALS OFTEN LEADS CD8(+) T CELLS TO GRADUAL DETERIORATION OF T CELL FUNCTION, A STATE CALLED "EXHAUSTION." EXHAUSTED T CELLS ARE CHARACTERIZED BY PROGRESSIVE LOSS OF EFFECTOR FUNCTIONS (CYTOKINE PRODUCTION AND KILLING FUNCTION), EXPRESSION OF MULTIPLE INHIBITORY RECEPTORS (SUCH AS PD-1 AND LAG3), DYSREGULATED METABOLISM, POOR MEMORY RECALL RESPONSE, AND HOMEOSTATIC PROLIFERATION. THESE ALTERED FUNCTIONS ARE CLOSELY RELATED WITH ALTERED TRANSCRIPTIONAL PROGRAM AND EPIGENETIC LANDSCAPE THAT CLEARLY DISTINGUISH EXHAUSTED T CELLS FROM NORMAL EFFECTOR AND MEMORY T CELLS. T CELL EXHAUSTION IS OFTEN ASSOCIATED WITH INEFFICIENT CONTROL OF PERSISTING INFECTIONS AND CANCERS, BUT RE-INVIGORATION OF EXHAUSTED T CELLS WITH INHIBITORY RECEPTOR BLOCKADE CAN PROMOTE IMPROVED IMMUNITY AND DISEASE OUTCOME. ACCUMULATING EVIDENCES SUPPORT THE THERAPEUTIC POTENTIAL OF TARGETING EXHAUSTED T CELLS. HOWEVER, EXHAUSTED T CELLS COMPRISE HETEROGENOUS CELL POPULATION WITH DISTINCT RESPONSIVENESS TO INTERVENTION. UNDERSTANDING MOLECULAR MECHANISM OF T CELL EXHAUSTION IS ESSENTIAL TO ESTABLISH RATIONAL IMMUNOTHERAPEUTIC INTERVENTIONS. 2019 16 1007 27 CHRONIC VIRUS INFECTION ENFORCES DEMETHYLATION OF THE LOCUS THAT ENCODES PD-1 IN ANTIGEN-SPECIFIC CD8(+) T CELLS. FUNCTIONALLY EXHAUSTED T CELLS HAVE HIGH EXPRESSION OF THE PD-1 INHIBITORY RECEPTOR, AND THERAPIES THAT BLOCK PD-1 SIGNALING SHOW PROMISE FOR RESOLVING CHRONIC VIRAL INFECTIONS AND CANCER. BY USING HUMAN AND MURINE SYSTEMS OF ACUTE AND CHRONIC VIRAL INFECTIONS, WE ANALYZED EPIGENETIC REGULATION OF PD-1 EXPRESSION DURING CD8(+) T CELL DIFFERENTIATION. DURING ACUTE INFECTION, NAIVE TO EFFECTOR CD8(+) T CELL DIFFERENTIATION WAS ACCOMPANIED BY A TRANSIENT LOSS OF DNA METHYLATION OF THE PDCD1 LOCUS THAT WAS DIRECTLY COUPLED TO THE DURATION AND STRENGTH OF T CELL RECEPTOR SIGNALING. FURTHER DIFFERENTIATION INTO FUNCTIONAL MEMORY CELLS COINCIDED WITH PDCD1 REMETHYLATION, PROVIDING AN ADAPTED PROGRAM FOR REGULATION OF PD-1 EXPRESSION. IN CONTRAST, THE PDCD1 REGULATORY REGION WAS COMPLETELY DEMETHYLATED IN EXHAUSTED CD8(+) T CELLS AND REMAINED UNMETHYLATED EVEN WHEN VIRUS TITERS DECREASED. THIS LACK OF DNA REMETHYLATION LEAVES THE PDCD1 LOCUS POISED FOR RAPID EXPRESSION, POTENTIALLY PROVIDING A SIGNAL FOR PREMATURE TERMINATION OF ANTIVIRAL FUNCTIONS. 2011 17 5704 30 SINGLE-CELL RNA-SEQ REVEALS TOX AS A KEY REGULATOR OF CD8(+) T CELL PERSISTENCE IN CHRONIC INFECTION. PROGENITOR-LIKE CD8(+) T CELLS MEDIATE LONG-TERM IMMUNITY TO CHRONIC INFECTION AND CANCER AND RESPOND POTENTLY TO IMMUNE CHECKPOINT BLOCKADE. THESE CELLS SHARE TRANSCRIPTIONAL REGULATORS WITH MEMORY PRECURSOR CELLS, INCLUDING T CELL-SPECIFIC TRANSCRIPTION FACTOR 1 (TCF1), BUT IT IS UNCLEAR WHETHER THEY ADOPT DISTINCT PROGRAMS TO ADAPT TO THE IMMUNOSUPPRESSIVE ENVIRONMENT. BY COMPARING THE SINGLE-CELL TRANSCRIPTOMES AND EPIGENETIC PROFILES OF CD8(+) T CELLS RESPONDING TO ACUTE AND CHRONIC VIRAL INFECTIONS, WE FOUND THAT PROGENITOR-LIKE CD8(+) T CELLS BECAME DISTINCT FROM MEMORY PRECURSOR CELLS BEFORE THE PEAK OF THE T CELL RESPONSE. WE DISCOVERED A COEXPRESSION GENE MODULE CONTAINING TOX THAT EXHIBITED HIGHER TRANSCRIPTIONAL ACTIVITY ASSOCIATED WITH MORE ABUNDANT ACTIVE HISTONE MARKS IN PROGENITOR-LIKE CELLS THAN MEMORY PRECURSOR CELLS. MOREOVER, THYMOCYTE SELECTION-ASSOCIATED HIGH MOBILITY GROUP BOX PROTEIN TOX (TOX) PROMOTED THE PERSISTENCE OF ANTIVIRAL CD8(+) T CELLS AND WAS REQUIRED FOR THE PROGRAMMING OF PROGENITOR-LIKE CD8(+) T CELLS. THUS, LONG-TERM CD8(+) T CELL IMMUNITY TO CHRONIC VIRAL INFECTION REQUIRES UNIQUE TRANSCRIPTIONAL AND EPIGENETIC PROGRAMS ASSOCIATED WITH THE TRANSCRIPTION FACTOR TOX. 2019 18 4057 31 MAPPING THE LINEAGE RELATIONSHIP BETWEEN CXCR5(+) AND CXCR5(-) CD4(+) T CELLS IN HIV-INFECTED HUMAN LYMPH NODES. CXCR5 IS A KEY MARKER OF FOLLICULAR HELPER T (T(FH)) CELLS. USING PRIMARY LYMPH NODES (LNS) FROM HIV-INFECTED PATIENTS, WE IDENTIFIED A POPULATION OF CXCR5(-) CD4(+) T CELLS WITH T(FH)-CELL-LIKE FEATURES. THIS CXCR5(-) SUBSET BECOMES EXPANDED IN SEVERE HIV INFECTION AND IS CHARACTERIZED BY THE UPREGULATION OF ACTIVATION MARKERS AND HIGH PD-1 AND ICOS SURFACE EXPRESSION. INTEGRATED ANALYSES ON THE PHENOTYPIC HETEROGENEITY, FUNCTIONAL CAPACITY, T CELL RECEPTOR (TCR) REPERTOIRE, TRANSCRIPTIONAL PROFILE, AND EPIGENETIC STATE OF CXCR5(-)PD-1(+)ICOS(+) T CELLS REVEALED A SHARED CLONAL RELATIONSHIP WITH T(FH) CELLS. CXCR5(-)PD-1(+)ICOS(+) T CELLS RETAINED A POISED STATE FOR CXCR5 EXPRESSION AND EXHIBITED A MIGRATORY TRANSCRIPTIONAL PROGRAM. TCR SEQUENCE OVERLAP REVEALED A CONTRIBUTION OF LN-DERIVED CXCR5(-)PD-1(+)ICOS(+) T CELLS TO CIRCULATING CXCR5(-) CD4(+) T CELLS WITH B CELL HELP FUNCTION. THESE DATA LINK LN PATHOLOGY TO CIRCULATING T CELLS AND EXPAND THE CURRENT UNDERSTANDING ON THE DIVERSITY OF T CELLS THAT REGULATE B CELL RESPONSES DURING CHRONIC INFLAMMATION. 2019 19 2146 30 EPIGENETIC MANIPULATION RESTORES FUNCTIONS OF DEFECTIVE CD8(+) T CELLS FROM CHRONIC VIRAL INFECTION. FUNCTIONAL EXHAUSTION OF ANTIGEN-SPECIFIC T CELLS IS A DEFINING CHARACTERISTIC OF MANY CHRONIC INFECTIONS, BUT THE UNDERLYING MECHANISMS OF T CELL DYSFUNCTION ARE NOT WELL UNDERSTOOD. EPIGENETICS PLAYS AN IMPORTANT ROLE IN THE CONTROL OF T CELL DEVELOPMENT, DIFFERENTIATION, AND FUNCTION. TO EXAMINE IF EPIGENETICS ALSO PLAYS A ROLE IN T CELL EXHAUSTION, WE ANALYZED CHROMATIN REMODELING IN CD8(+) T CELLS FROM MICE WITH CHRONIC LYMPHOCYTIC CHORIOMENINGITIS VIRUS INFECTION. WE OBSERVED DOWNREGULATION OF DIACETYLATED HISTONE H3 IN BOTH VIRUS-SPECIFIC AND TOTAL CD8(+) T CELLS, AND FUNCTIONAL DEFECTS NOT ONLY IN VIRUS-SPECIFIC CD8(+) T CELLS BUT ALSO WITHIN THE TOTAL CD8(+) T CELL POPULATION. IN VITRO TREATMENT OF THESE EXHAUSTED CD8(+) T CELLS WITH HISTONE DEACETYLASE INHIBITORS RESTORED DIACETYLATED HISTONE H3 LEVELS, AND IMPROVED THEIR IMMUNE FUNCTIONS. UPON ADOPTIVE TRANSFER, THESE TREATED CD8(+) T CELLS DEVELOPED INTO FUNCTIONAL MEMORY T CELLS IN VIVO THAT ENHANCED PROTECTIVE IMMUNITY. THESE RESULTS DEFINE A ROLE OF EPIGENETICS IN T CELL EXHAUSTION AND SUGGEST EPIGENETIC MANIPULATION AS A NOVEL MOLECULAR THERAPY TO RESTORE IMMUNE FUNCTIONS. 2014 20 4726 21 NOT-SO-OPPOSITE ENDS OF THE SPECTRUM: CD8(+) T CELL DYSFUNCTION ACROSS CHRONIC INFECTION, CANCER AND AUTOIMMUNITY. CD8(+) T CELLS ARE CRITICAL MEDIATORS OF CYTOTOXIC EFFECTOR FUNCTION IN INFECTION, CANCER AND AUTOIMMUNITY. IN CANCER AND CHRONIC VIRAL INFECTION, CD8(+) T CELLS UNDERGO A PROGRESSIVE LOSS OF CYTOKINE PRODUCTION AND CYTOTOXICITY, A STATE TERMED T CELL EXHAUSTION. IN AUTOIMMUNITY, AUTOREACTIVE CD8(+) T CELLS RETAIN THE CAPACITY TO EFFECTIVELY MEDIATE THE DESTRUCTION OF HOST TISSUES. ALTHOUGH THE CLINICAL OUTCOME DIFFERS IN EACH CONTEXT, CD8(+) T CELLS ARE CHRONICALLY EXPOSED TO ANTIGEN IN ALL THREE. THESE CHRONICALLY STIMULATED CD8(+) T CELLS SHARE SOME COMMON PHENOTYPIC FEATURES, AS WELL AS TRANSCRIPTIONAL AND EPIGENETIC PROGRAMMING, ACROSS DISEASE CONTEXTS. A BETTER UNDERSTANDING OF THESE CD8(+) T CELL STATES MAY REVEAL NOVEL STRATEGIES TO AUGMENT CLEARANCE OF CHRONIC VIRAL INFECTION AND CANCER AND TO MITIGATE SELF-REACTIVITY LEADING TO TISSUE DAMAGE IN AUTOIMMUNITY. 2021