1 788 121 CELLULAR ALLOSTATIC LOAD IS LINKED TO INCREASED ENERGY EXPENDITURE AND ACCELERATED BIOLOGICAL AGING. STRESS TRIGGERS ANTICIPATORY PHYSIOLOGICAL RESPONSES THAT PROMOTE SURVIVAL, A PHENOMENON TERMED ALLOSTASIS. HOWEVER, THE CHRONIC ACTIVATION OF ENERGY-DEPENDENT ALLOSTATIC RESPONSES RESULTS IN ALLOSTATIC LOAD, A DYSREGULATED STATE THAT PREDICTS FUNCTIONAL DECLINE, ACCELERATES AGING, AND INCREASES MORTALITY IN HUMANS. THE ENERGETIC COST AND CELLULAR BASIS FOR THE DAMAGING EFFECTS OF ALLOSTATIC LOAD HAVE NOT BEEN DEFINED. HERE, BY LONGITUDINALLY PROFILING THREE UNRELATED PRIMARY HUMAN FIBROBLAST LINES ACROSS THEIR LIFESPAN, WE FIND THAT CHRONIC GLUCOCORTICOID EXPOSURE INCREASES CELLULAR ENERGY EXPENDITURE BY APPROXIMATELY 60%, ALONG WITH A METABOLIC SHIFT FROM GLYCOLYSIS TO MITOCHONDRIAL OXIDATIVE PHOSPHORYLATION (OXPHOS). THIS STATE OF STRESS-INDUCED HYPERMETABOLISM IS LINKED TO MTDNA INSTABILITY, NON-LINEARLY AFFECTS AGE-RELATED CYTOKINES SECRETION, AND ACCELERATES CELLULAR AGING BASED ON DNA METHYLATION CLOCKS, TELOMERE SHORTENING RATE, AND REDUCED LIFESPAN. PHARMACOLOGICALLY NORMALIZING OXPHOS ACTIVITY WHILE FURTHER INCREASING ENERGY EXPENDITURE EXACERBATES THE ACCELERATED AGING PHENOTYPE, POINTING TO TOTAL ENERGY EXPENDITURE AS A POTENTIAL DRIVER OF AGING DYNAMICS. TOGETHER, OUR FINDINGS DEFINE BIOENERGETIC AND MULTI-OMIC RECALIBRATIONS OF STRESS ADAPTATION, UNDERSCORING INCREASED ENERGY EXPENDITURE AND ACCELERATED CELLULAR AGING AS INTERRELATED FEATURES OF CELLULAR ALLOSTATIC LOAD. 2023 2 3731 18 INNATE AND ADAPTIVE IMMUNE REGULATION DURING CHRONIC VIRAL INFECTIONS. CHRONIC VIRAL INFECTIONS REPRESENT A UNIQUE CHALLENGE TO THE INFECTED HOST. PERSISTENTLY REPLICATING VIRUSES OUTCOMPETE OR SUBVERT THE INITIAL ANTIVIRAL RESPONSE, ALLOWING THE ESTABLISHMENT OF CHRONIC INFECTIONS THAT RESULT IN CONTINUOUS STIMULATION OF BOTH THE INNATE AND ADAPTIVE IMMUNE COMPARTMENTS. THIS CAUSES A PROFOUND REPROGRAMMING OF THE HOST IMMUNE SYSTEM, INCLUDING ATTENUATION AND PERSISTENT LOW LEVELS OF TYPE I INTERFERONS, PROGRESSIVE LOSS (OR EXHAUSTION) OF CD8(+) T CELL FUNCTIONS, AND SPECIALIZATION OF CD4(+) T CELLS TO PRODUCE INTERLEUKIN-21 AND PROMOTE ANTIBODY-MEDIATED IMMUNITY AND IMMUNE REGULATION. EPIGENETIC, TRANSCRIPTIONAL, POSTTRANSCRIPTIONAL, AND METABOLIC CHANGES UNDERLIE THIS ADAPTATION OR RECALIBRATION OF IMMUNE CELLS TO THE EMERGING NEW ENVIRONMENT IN ORDER TO STRIKE AN OFTEN IMPERFECT BALANCE BETWEEN THE HOST AND THE INFECTIOUS PATHOGEN. IN THIS REVIEW WE DISCUSS THE COMMON IMMUNOLOGICAL HALLMARKS OBSERVED ACROSS A RANGE OF DIFFERENT PERSISTENTLY REPLICATING VIRUSES AND HOST SPECIES, THE UNDERLYING MOLECULAR MECHANISMS, AND THE BIOLOGICAL AND CLINICAL IMPLICATIONS. 2015 3 4196 26 METABOLIC PLASTICITY AND REGULATION OF T CELL EXHAUSTION. THE METABOLIC REPROGRAMMING DURING T CELL ACTIVATION AND DIFFERENTIATION AFFECTS T CELL FATE AND IMMUNE RESPONSES. CELL METABOLISM MAY SERVE AS THE DRIVING FORCE THAT INDUCES EPIGENETIC MODIFICATIONS, CONTRIBUTING TO REGULATING T CELL DIFFERENTIATION. PERSISTENT PATHOGEN INFECTION LEADS TO T CELL EXHAUSTION, WHICH IS COMPOSED OF TWO MAIN SUBSETS AND WITH DISTINCT METABOLIC CHARACTERISTICS. THE PROGENITOR EXHAUSTED T CELLS UTILIZE MITOCHONDRIAL FATTY ACID OXIDATION (FAO) AND OXIDATIVE PHOSPHORYLATION (OXPHOS) FOR ENERGY, WHILE TERMINALLY EXHAUSTED T CELLS MAINLY RELY ON GLYCOLYTIC METABOLISM WITH IMPAIRED GLYCOLYSIS AND OXPHOS. HERE, WE COMPILED THE LATEST RESEARCH ON HOW T CELL METABOLISM DEFINES DIFFERENTIATION, FOCUSING ON T CELL EXHAUSTION DURING CHRONIC INFECTIONS. IN ADDITION, METABOLIC-RELATED FACTORS INCLUDING ANTIGEN STIMULATION SIGNALS STRENGTH, CYTOKINES AND EPIGENETICS AFFECTING T CELL EXHAUSTION WERE ALSO REVIEWED. FURTHERMORE, THE INTERVENTION STRATEGIES ON METABOLISM AND EPIGENETICS TO REVERSE T CELL EXHAUSTION WERE DISCUSSED IN DETAIL, WHICH MAY CONTRIBUTE TO ACHIEVING THE GOAL OF PREVENTION AND TREATMENT OF T CELL EXHAUSTION. 2022 4 833 9 CHARTING A SHARED EPIGENETIC PATHWAY TO CD8(+) T CELL DYSFUNCTION IN INFECTION AND CANCER. PRITYKIN ET AL. (2021) ESTABLISH A COMPREHENSIVE CHROMATIN ATLAS OF CD8(+) T CELL DYSFUNCTION IN CHRONIC VIRAL INFECTION AND CANCER VIA ANALYSIS OF BULK AND SINGLE-CELL ATAC-SEQ DATASETS ACROSS IMMUNE CHALLENGES. THESE RESULTS UNIFY THE CLASSIFICATION SCHEME AND MOLECULAR PROGRAMS DRIVING CD8(+) T CELL DYSFUNCTION ACROSS DISEASE SETTINGS AND WILL FACILITATE BASIC DISCOVERY AND TRANSLATIONAL EFFORTS IN T CELL IMMUNITY. 2021 5 1278 19 DE NOVO EPIGENETIC PROGRAMS INHIBIT PD-1 BLOCKADE-MEDIATED T CELL REJUVENATION. IMMUNE-CHECKPOINT-BLOCKADE (ICB)-MEDIATED REJUVENATION OF EXHAUSTED T CELLS HAS EMERGED AS A PROMISING APPROACH FOR TREATING VARIOUS CANCERS AND CHRONIC INFECTIONS. HOWEVER, T CELLS THAT BECOME FULLY EXHAUSTED DURING PROLONGED ANTIGEN EXPOSURE REMAIN REFRACTORY TO ICB-MEDIATED REJUVENATION. WE REPORT THAT BLOCKING DE NOVO DNA METHYLATION IN ACTIVATED CD8 T CELLS ALLOWS THEM TO RETAIN THEIR EFFECTOR FUNCTIONS DESPITE CHRONIC STIMULATION DURING A PERSISTENT VIRAL INFECTION. WHOLE-GENOME BISULFITE SEQUENCING OF ANTIGEN-SPECIFIC MURINE CD8 T CELLS AT THE EFFECTOR AND EXHAUSTION STAGES OF AN IMMUNE RESPONSE IDENTIFIED PROGRESSIVELY ACQUIRED HERITABLE DE NOVO METHYLATION PROGRAMS THAT RESTRICT T CELL EXPANSION AND CLONAL DIVERSITY DURING PD-1 BLOCKADE TREATMENT. MOREOVER, THESE EXHAUSTION-ASSOCIATED DNA-METHYLATION PROGRAMS WERE ACQUIRED IN TUMOR-INFILTRATING PD-1HI CD8 T CELLS, AND APPROACHES TO REVERSE THESE PROGRAMS IMPROVED T CELL RESPONSES AND TUMOR CONTROL DURING ICB. THESE DATA ESTABLISH DE NOVO DNA-METHYLATION PROGRAMMING AS A REGULATOR OF T CELL EXHAUSTION AND BARRIER OF ICB-MEDIATED T CELL REJUVENATION. 2017 6 4178 14 MEMORY T-CELL HETEROGENEITY AND TERMINOLOGY. IMMUNOLOGICAL MEMORY AND EXHAUSTION ARE FUNDAMENTAL FEATURES OF ADAPTIVE IMMUNITY. RECENT ADVANCES REVEAL INCREASING HETEROGENEITY AND DIVERSITY AMONG CD8 T-CELL SUBSETS, RESULTING IN NEW SUBSETS TO ANNOTATE AND UNDERSTAND. HERE, WE REVIEW OUR CURRENT KNOWLEDGE OF DIFFERENTIATION AND MAINTENANCE OF MEMORY AND EXHAUSTED CD8 T CELLS, INCLUDING PHENOTYPIC CLASSIFICATION, DEVELOPMENTAL PATHS, TRANSCRIPTIONAL AND EPIGENETIC FEATURES, AND CELL INTRINSIC AND EXTRINSIC FACTORS. ADDITIONALLY, WE USE THIS OUTLINE TO DISCUSS THE NOMENCLATURE OF EFFECTOR, MEMORY, AND EXHAUSTED CD8 T CELLS. FINALLY, WE DISCUSS HOW NEW FINDINGS ABOUT THESE CELL TYPES MAY IMPACT THE THERAPEUTIC EFFICACY AND DEVELOPMENT OF IMMUNOTHERAPIES TARGETING EFFECTOR, MEMORY, AND/OR EXHAUSTED CD8 T CELLS IN CHRONIC INFECTIONS AND CANCER. 2021 7 5853 20 SUBSETS OF EXHAUSTED CD8(+) T CELLS DIFFERENTIALLY MEDIATE TUMOR CONTROL AND RESPOND TO CHECKPOINT BLOCKADE. T CELL DYSFUNCTION IS A HALLMARK OF MANY CANCERS, BUT THE BASIS FOR T CELL DYSFUNCTION AND THE MECHANISMS BY WHICH ANTIBODY BLOCKADE OF THE INHIBITORY RECEPTOR PD-1 (ANTI-PD-1) REINVIGORATES T CELLS ARE NOT FULLY UNDERSTOOD. HERE WE SHOW THAT SUCH THERAPY ACTS ON A SPECIFIC SUBPOPULATION OF EXHAUSTED CD8(+) TUMOR-INFILTRATING LYMPHOCYTES (TILS). DYSFUNCTIONAL CD8(+) TILS POSSESS CANONICAL EPIGENETIC AND TRANSCRIPTIONAL FEATURES OF EXHAUSTION THAT MIRROR THOSE SEEN IN CHRONIC VIRAL INFECTION. EXHAUSTED CD8(+) TILS INCLUDE A SUBPOPULATION OF 'PROGENITOR EXHAUSTED' CELLS THAT RETAIN POLYFUNCTIONALITY, PERSIST LONG TERM AND DIFFERENTIATE INTO 'TERMINALLY EXHAUSTED' TILS. CONSEQUENTLY, PROGENITOR EXHAUSTED CD8(+) TILS ARE BETTER ABLE TO CONTROL TUMOR GROWTH THAN ARE TERMINALLY EXHAUSTED T CELLS. PROGENITOR EXHAUSTED TILS CAN RESPOND TO ANTI-PD-1 THERAPY, BUT TERMINALLY EXHAUSTED TILS CANNOT. PATIENTS WITH MELANOMA WHO HAVE A HIGHER PERCENTAGE OF PROGENITOR EXHAUSTED CELLS EXPERIENCE A LONGER DURATION OF RESPONSE TO CHECKPOINT-BLOCKADE THERAPY. THUS, APPROACHES TO EXPAND THE POPULATION OF PROGENITOR EXHAUSTED CD8(+) T CELLS MIGHT BE AN IMPORTANT COMPONENT OF IMPROVING THE RESPONSE TO CHECKPOINT BLOCKADE. 2019 8 771 24 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 9 1175 25 CONTRIBUTIONS OF AGE-RELATED THYMIC INVOLUTION TO IMMUNOSENESCENCE AND INFLAMMAGING. IMMUNE SYSTEM AGING IS CHARACTERIZED BY THE PARADOX OF IMMUNOSENESCENCE (INSUFFICIENCY) AND INFLAMMAGING (OVER-REACTION), WHICH INCORPORATE TWO SIDES OF THE SAME COIN, RESULTING IN IMMUNE DISORDER. IMMUNOSENESCENCE REFERS TO DISRUPTION IN THE STRUCTURAL ARCHITECTURE OF IMMUNE ORGANS AND DYSFUNCTION IN IMMUNE RESPONSES, RESULTING FROM BOTH AGED INNATE AND ADAPTIVE IMMUNITY. INFLAMMAGING, DESCRIBED AS A CHRONIC, STERILE, SYSTEMIC INFLAMMATORY CONDITION ASSOCIATED WITH ADVANCED AGE, IS MAINLY ATTRIBUTED TO SOMATIC CELLULAR SENESCENCE-ASSOCIATED SECRETORY PHENOTYPE (SASP) AND AGE-RELATED AUTOIMMUNE PREDISPOSITION. HOWEVER, THE INABILITY TO REDUCE SENESCENT SOMATIC CELLS (SSCS), BECAUSE OF IMMUNOSENESCENCE, EXACERBATES INFLAMMAGING. AGE-RELATED ADAPTIVE IMMUNE SYSTEM DEVIATIONS, PARTICULARLY ALTERED T CELL FUNCTION, ARE DERIVED FROM AGE-RELATED THYMIC ATROPHY OR INVOLUTION, A HALLMARK OF THYMIC AGING. RECENTLY, THERE HAVE BEEN MAJOR DEVELOPMENTS IN UNDERSTANDING HOW AGE-RELATED THYMIC INVOLUTION CONTRIBUTES TO INFLAMMAGING AND IMMUNOSENESCENCE AT THE CELLULAR AND MOLECULAR LEVELS, INCLUDING GENETIC AND EPIGENETIC REGULATION, AS WELL AS DEVELOPMENTS OF MANY POTENTIAL REJUVENATION STRATEGIES. HEREIN, WE DISCUSS THE RESEARCH PROGRESS UNCOVERING HOW AGE-RELATED THYMIC INVOLUTION CONTRIBUTES TO IMMUNOSENESCENCE AND INFLAMMAGING, AS WELL AS THEIR INTERSECTION. WE ALSO DESCRIBE HOW T CELL ADAPTIVE IMMUNITY MEDIATES INFLAMMAGING AND PLAYS A CRUCIAL ROLE IN THE PROGRESSION OF AGE-RELATED NEUROLOGICAL AND CARDIOVASCULAR DISEASES, AS WELL AS CANCER. WE THEN BRIEFLY OUTLINE THE UNDERLYING CELLULAR AND MOLECULAR MECHANISMS OF AGE-RELATED THYMIC INVOLUTION, AND FINALLY SUMMARIZE POTENTIAL REJUVENATION STRATEGIES TO RESTORE AGED THYMIC FUNCTION. 2020 10 5895 12 T CELL EXHAUSTION: AN EPIGENETICALLY IMPRINTED PHENOTYPIC AND FUNCTIONAL MAKEOVER. A RECENT ARTICLE IN CELL DEMONSTRATES THAT THE ABSENCE OF A SINGLE DNA METHYLTRANSFERASE, DNMT3A, PREVENTS CYTOTOXIC T CELLS FROM ACQUIRING THE HYPOFUNCTIONAL OR EXHAUSTED PHENOTYPE TYPICALLY SEEN IN CHRONIC VIRAL INFECTIONS AND TUMORS. UPON ESTABLISHING A CAUSAL RELATIONSHIP BETWEEN EXHAUSTION-ASSOCIATED EPIGENETIC CHANGES AND REDUCED CD8(+) T CELL FUNCTION, THE AUTHORS PROVIDED MECHANISTIC EVIDENCE THAT EXHAUSTION CONSTITUTES A SPECIFIC DIFFERENTIATION PROGRAM. 2017 11 1310 23 DEFINING TRAINED IMMUNITY AND ITS ROLE IN HEALTH AND DISEASE. IMMUNE MEMORY IS A DEFINING FEATURE OF THE ACQUIRED IMMUNE SYSTEM, BUT ACTIVATION OF THE INNATE IMMUNE SYSTEM CAN ALSO RESULT IN ENHANCED RESPONSIVENESS TO SUBSEQUENT TRIGGERS. THIS PROCESS HAS BEEN TERMED 'TRAINED IMMUNITY', A DE FACTO INNATE IMMUNE MEMORY. RESEARCH IN THE PAST DECADE HAS POINTED TO THE BROAD BENEFITS OF TRAINED IMMUNITY FOR HOST DEFENCE BUT HAS ALSO SUGGESTED POTENTIALLY DETRIMENTAL OUTCOMES IN IMMUNE-MEDIATED AND CHRONIC INFLAMMATORY DISEASES. HERE WE DEFINE 'TRAINED IMMUNITY' AS A BIOLOGICAL PROCESS AND DISCUSS THE INNATE STIMULI AND THE EPIGENETIC AND METABOLIC REPROGRAMMING EVENTS THAT SHAPE THE INDUCTION OF TRAINED IMMUNITY. 2020 12 5358 17 REBALANCING TGFBETA1/BMP SIGNALS IN EXHAUSTED T CELLS UNLOCKS RESPONSIVENESS TO IMMUNE CHECKPOINT BLOCKADE THERAPY. T CELL DYSFUNCTIONALITY PREVENTS THE CLEARANCE OF CHRONIC INFECTIONS AND CANCER. FURTHERMORE, EPIGENETIC PROGRAMMING IN DYSFUNCTIONAL CD8(+) T CELLS LIMITS THEIR RESPONSE TO IMMUNOTHERAPIES, INCLUDING IMMUNE CHECKPOINT BLOCKADE (ICB). HOWEVER, IT IS UNCLEAR WHICH UPSTREAM SIGNALS DRIVE ACQUISITION OF DYSFUNCTIONAL EPIGENETIC PROGRAMS, AND WHETHER THERAPEUTICALLY TARGETING THESE SIGNALS CAN REMODEL TERMINALLY DYSFUNCTIONAL T CELLS TO AN ICB-RESPONSIVE STATE. HERE WE INNOVATE AN IN VITRO MODEL SYSTEM OF STABLE HUMAN T CELL DYSFUNCTION AND SHOW THAT CHRONIC TGFBETA1 SIGNALING IN POSTEFFECTOR CD8(+) T CELLS ACCELERATES THEIR TERMINAL DYSFUNCTION THROUGH STABLE EPIGENETIC CHANGES. CONVERSELY, BOOSTING BONE MORPHOGENETIC PROTEIN (BMP) SIGNALING WHILE BLOCKING TGFBETA1 PRESERVED EFFECTOR AND MEMORY PROGRAMS IN CHRONICALLY STIMULATED HUMAN CD8(+) T CELLS, INDUCING SUPERIOR RESPONSES TO TUMORS AND SYNERGIZING THE ICB RESPONSES DURING CHRONIC VIRAL INFECTION. THUS, REBALANCING TGFBETA1/BMP SIGNALS PROVIDES AN EXCITING NEW APPROACH TO UNLEASH DYSFUNCTIONAL CD8(+) T CELLS AND ENHANCE T CELL IMMUNOTHERAPIES. 2023 13 790 17 CELLULAR AND MOLECULAR MECHANISMS OF CD8(+) T CELL DIFFERENTIATION, DYSFUNCTION AND EXHAUSTION. T CELLS FOLLOW A TRIPHASIC DISTINCT PATHWAY OF ACTIVATION, PROLIFERATION AND DIFFERENTIATION BEFORE BECOMING FUNCTIONALLY AND PHENOTYPICALLY "EXHAUSTED" IN SETTINGS OF CHRONIC INFECTION, AUTOIMMUNITY AND IN CANCER. EXHAUSTED T CELLS PROGRESSIVELY LOSE CANONICAL EFFECTOR FUNCTIONS, EXHIBIT ALTERED TRANSCRIPTIONAL NETWORKS AND EPIGENETIC SIGNATURES AND GAIN CONSTITUTIVE EXPRESSION OF A BROAD COINHIBITORY RECEPTOR SUITE. THIS REVIEW OUTLINES RECENT ADVANCES IN OUR UNDERSTANDING OF EXHAUSTED T CELL BIOLOGY AND EXAMINES CELLULAR AND MOLECULAR MECHANISMS BY WHICH A STATE OF DYSFUNCTION OR EXHAUSTION IS ESTABLISHED, AND MECHANISMS BY WHICH EXHAUSTED T CELLS MAY STILL CONTRIBUTE TO PATHOGEN OR TUMOUR CONTROL. FURTHER, THIS REVIEW DESCRIBES OUR UNDERSTANDING OF EXHAUSTED T CELL HETEROGENEITY AND OUTLINES THE MECHANISMS BY WHICH CHECKPOINT BLOCKADE DIFFERENTIALLY ENGAGES EXHAUSTED T CELL SUBSETS TO OVERCOME EXHAUSTION AND RECOVER T CELL FUNCTION. 2020 14 4177 27 MEMORY T CELL, EXHAUSTION, AND TUMOR IMMUNITY. CD8(+)T CELLS ARE IMPORTANT IN PROTECTIVE IMMUNITY AGAINST INTRACELLULAR PATHOGENS AND TUMORS. IN CHRONIC INFECTIONS OR CANCER, CD8(+)T CELLS ARE CONSTANTLY EXPOSED TO ANTIGENS AND INFLAMMATORY SIGNALS. SUCH EXCESSIVE AND CONSTITUTIVE SIGNALS LEAD TO THE DETERIORATION OF T CELL FUNCTION, CALLED 'EXHAUSTION'. EXHAUSTED T CELLS ARE CHARACTERIZED BY LOW PROLIFERATION IN RESPONSE TO ANTIGEN STIMULATION, PROGRESSIVE LOSS OF EFFECTOR FUNCTION (CYTOKINE PRODUCTION AND KILLING FUNCTION), EXPRESSION OF MULTIPLE INHIBITORY RECEPTORS SUCH AS PD-1, TIM3, AND LAG3, AND METABOLIC ALTERATIONS FROM OXIDATIVE PHOSPHORYLATION TO GLYCOLYSIS. THESE DYSFUNCTIONS ARE ASSOCIATED WITH ALTERED TRANSCRIPTIONAL PROGRAMS AND EPIGENETIC REGULATIONS AND RECENT STUDIES SUGGESTED THAT NR4A AND TOX TRANSCRIPTION FACTORS ARE DEEPLY INVOLVED IN EXHAUSTION PHENOTYPES. HOWEVER, AN INCREASE THE EARLY MEMORY T CELLS INCLUDING STEM CELL MEMORY T (T(SCM)) CELLS IS CRITICAL FOR T CELL PERSISTENCE AND EFFICIENT TUMOR KILLING ESPECIALLY FOR ADOPTIVE CANCER IMMUNOTHERAPY SUCH AS CAR-T CELL THERAPY. AN INCREASING AMOUNT OF EVIDENCE SUPPORTS THE THERAPEUTIC POTENTIAL OF TARGETING EXHAUSTED T CELLS AND T(SCM) CELLS. WE HAVE BEGUN TO UNDERSTAND THE MOLECULAR MECHANISMS OF T CELL EXHAUSTION AND EARLY MEMORY FORMATION, AND THE CLINICAL APPLICATION OF CONVERTING EXHAUSTED T CELLS TO REJUVENATED EARLY MEMORY T CELLS IS THE GOAL OF OUR STUDY. 2020 15 4386 24 MITOCHONDRIAL STRESS INDUCED BY CONTINUOUS STIMULATION UNDER HYPOXIA RAPIDLY DRIVES T CELL EXHAUSTION. CANCER AND CHRONIC INFECTIONS INDUCE T CELL EXHAUSTION, A HYPOFUNCTIONAL FATE CARRYING DISTINCT EPIGENETIC, TRANSCRIPTOMIC AND METABOLIC CHARACTERISTICS. HOWEVER, DRIVERS OF EXHAUSTION REMAIN POORLY UNDERSTOOD. AS INTRATUMORAL EXHAUSTED T CELLS EXPERIENCE SEVERE HYPOXIA, WE HYPOTHESIZED THAT METABOLIC STRESS ALTERS THEIR RESPONSES TO OTHER SIGNALS, SPECIFICALLY, PERSISTENT ANTIGENIC STIMULATION. IN VITRO, ALTHOUGH CD8(+) T CELLS EXPERIENCING CONTINUOUS STIMULATION OR HYPOXIA ALONE DIFFERENTIATED INTO FUNCTIONAL EFFECTORS, THE COMBINATION RAPIDLY DROVE T CELL DYSFUNCTION CONSISTENT WITH EXHAUSTION. CONTINUOUS STIMULATION PROMOTED BLIMP-1-MEDIATED REPRESSION OF PGC-1ALPHA-DEPENDENT MITOCHONDRIAL REPROGRAMMING, RENDERING CELLS POORLY RESPONSIVE TO HYPOXIA. LOSS OF MITOCHONDRIAL FUNCTION GENERATED INTOLERABLE LEVELS OF REACTIVE OXYGEN SPECIES (ROS), SUFFICIENT TO PROMOTE EXHAUSTED-LIKE STATES, IN PART THROUGH PHOSPHATASE INHIBITION AND THE CONSEQUENT ACTIVITY OF NUCLEAR FACTOR OF ACTIVATED T CELLS. REDUCING T CELL-INTRINSIC ROS AND LOWERING TUMOR HYPOXIA LIMITED T CELL EXHAUSTION, SYNERGIZING WITH IMMUNOTHERAPY. THUS, IMMUNOLOGIC AND METABOLIC SIGNALING ARE INTRINSICALLY LINKED: THROUGH MITIGATION OF METABOLIC STRESS, T CELL DIFFERENTIATION CAN BE ALTERED TO PROMOTE MORE FUNCTIONAL CELLULAR FATES. 2021 16 4186 20 METABOLIC AND EPIGENETIC REGULATION OF T-CELL EXHAUSTION. CURRENT IMMUNOTHERAPIES YIELD REMARKABLE CLINICAL OUTCOMES BY BOOSTING THE POWER OF HOST IMMUNITY IN CANCER CELL ELIMINATION AND VIRAL CLEARANCE. HOWEVER, AFTER PROLONGED ANTIGEN EXPOSURE, CD8(+) T CELLS DIFFERENTIATE INTO A SPECIAL DIFFERENTIATION STATE KNOWN AS T-CELL EXHAUSTION, WHICH POSES ONE OF THE MAJOR HURDLES TO ANTIVIRAL AND ANTITUMOR IMMUNITY DURING CHRONIC VIRAL INFECTION AND TUMOUR DEVELOPMENT. GROWING EVIDENCE INDICATES THAT EXHAUSTED T CELLS UNDERGO METABOLIC INSUFFICIENCY WITH ALTERED SIGNALLING CASCADES AND EPIGENETIC LANDSCAPES, WHICH DAMPEN EFFECTOR IMMUNITY AND CAUSE POOR RESPONSIVENESS TO IMMUNE-CHECKPOINT-BLOCKADE THERAPIES. HOW METABOLIC STRESS AFFECTS T-CELL EXHAUSTION REMAINS UNCLEAR; THEREFORE, IN THIS REVIEW, WE SUMMARIZE CURRENT KNOWLEDGE OF HOW T-CELL EXHAUSTION OCCURS, AND DISCUSS HOW METABOLIC INSUFFICIENCY AND PROLONGED STRESS RESPONSES MAY AFFECT SIGNALLING CASCADES AND EPIGENETIC REPROGRAMMING, THUS LOCKING T CELLS INTO AN EXHAUSTED STATE VIA SPECIALIZED DIFFERENTIATION PROGRAMMING. 2020 17 375 26 AN ENERGETIC VIEW OF STRESS: FOCUS ON MITOCHONDRIA. ENERGY IS REQUIRED TO SUSTAIN LIFE AND ENABLE STRESS ADAPTATION. AT THE CELLULAR LEVEL, ENERGY IS LARGELY DERIVED FROM MITOCHONDRIA - UNIQUE MULTIFUNCTIONAL ORGANELLES WITH THEIR OWN GENOME. FOUR MAIN ELEMENTS CONNECT MITOCHONDRIA TO STRESS: (1) ENERGY IS REQUIRED AT THE MOLECULAR, (EPI)GENETIC, CELLULAR, ORGANELLAR, AND SYSTEMIC LEVELS TO SUSTAIN COMPONENTS OF STRESS RESPONSES; (2) GLUCOCORTICOIDS AND OTHER STEROID HORMONES ARE PRODUCED AND METABOLIZED BY MITOCHONDRIA; (3) RECIPROCALLY, MITOCHONDRIA RESPOND TO NEUROENDOCRINE AND METABOLIC STRESS MEDIATORS; AND (4) EXPERIMENTALLY MANIPULATING MITOCHONDRIAL FUNCTIONS ALTERS PHYSIOLOGICAL AND BEHAVIORAL RESPONSES TO PSYCHOLOGICAL STRESS. THUS, MITOCHONDRIA ARE ENDOCRINE ORGANELLES THAT PROVIDE BOTH THE ENERGY AND SIGNALS THAT ENABLE AND DIRECT STRESS ADAPTATION. NEURAL CIRCUITS REGULATING SOCIAL BEHAVIOR - AS WELL AS PSYCHOPATHOLOGICAL PROCESSES - ARE ALSO INFLUENCED BY MITOCHONDRIAL ENERGETICS. AN INTEGRATIVE VIEW OF STRESS AS AN ENERGY-DRIVEN PROCESS OPENS NEW OPPORTUNITIES TO STUDY MECHANISMS OF ADAPTATION AND REGULATION ACROSS THE LIFESPAN. 2018 18 5015 25 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 19 4376 29 MITOCHONDRIAL (DYS) FUNCTION IN INFLAMMAGING: DO MITOMIRS INFLUENCE THE ENERGETIC, OXIDATIVE, AND INFLAMMATORY STATUS OF SENESCENT CELLS? A RELEVANT FEATURE OF AGING IS CHRONIC LOW-GRADE INFLAMMATION, TERMED INFLAMMAGING, A KEY PROCESS PROMOTING THE DEVELOPMENT OF ALL MAJOR AGE-RELATED DISEASES. SENESCENT CELLS CAN ACQUIRE THE SENESCENCE-ASSOCIATED (SA) SECRETORY PHENOTYPE (SASP), CHARACTERIZED BY THE SECRETION OF PROINFLAMMATORY FACTORS FUELLING INFLAMMAGING. CELLULAR SENESCENCE IS ALSO ACCOMPANIED BY A DEEP RESHAPING OF MICRORNA EXPRESSION AND BY THE MODULATION OF MITOCHONDRIA ACTIVITY, BOTH MASTER REGULATORS OF THE SASP. HERE, WE SYNTHESIZE NOVEL FINDINGS REGARDING THE ROLE OF MITOCHONDRIA IN THE SASP AND IN THE INFLAMMAGING PROCESS AND PROPOSE A NETWORK LINKING NUCLEAR-ENCODED SA-MIRNAS TO MITOCHONDRIAL GENE REGULATION AND FUNCTION IN AGING CELLS. IN THIS CONCEPTUAL STRUCTURE, SA-MIRNAS CAN TRANSLOCATE TO MITOCHONDRIA (SA-MITOMIRS) AND MAY AFFECT THE ENERGETIC, OXIDATIVE, AND INFLAMMATORY STATUS OF SENESCENT CELLS. WE DISCUSS THE POTENTIAL ROLE OF SEVERAL OF SA-MITOMIRS (I.E., LET-7B, MIR-1, MIR-130A-3P, MIR-133A, MIR-146A-5P, MIR-181C-5P, AND MIR-378-5P), USING MIR-146A AS A PROOF-OF-PRINCIPLE MODEL. FINALLY, WE PROPOSE A COMPREHENSIVE, METABOLIC, AND EPIGENETIC VIEW OF THE SENESCENCE PROCESS, IN ORDER TO AMPLIFY THE RANGE OF POSSIBLE APPROACHES TO TARGET INFLAMMAGING, WITH THE ULTIMATE GOAL OF DECELERATING THE AGING RATE, POSTPONING OR BLUNTING THE DEVELOPMENT OF AGE-RELATED DISEASES. 2017 20 3288 20 HIERARCHICAL TRANSCRIPTIONAL NETWORK GOVERNING HETEROGENEOUS T CELL EXHAUSTION AND ITS IMPLICATIONS FOR IMMUNE CHECKPOINT BLOCKADE. THE FUNDAMENTAL PRINCIPLE OF IMMUNE CHECKPOINT BLOCKADE (ICB) IS TO PROTECT TUMOR-INFILTRATING T CELLS FROM BEING EXHAUSTED. DESPITE THE REMARKABLE SUCCESS ACHIEVED BY ICB TREATMENT, ONLY A SMALL GROUP OF PATIENTS BENEFIT FROM IT. CHARACTERIZED BY A HYPOFUNCTIONAL STATE WITH THE EXPRESSION OF MULTIPLE INHIBITORY RECEPTORS, EXHAUSTED T (TEX) CELLS ARE A MAJOR OBSTACLE IN IMPROVING ICB. T CELL EXHAUSTION IS A PROGRESSIVE PROCESS WHICH ADAPTS TO PERSISTENT ANTIGEN STIMULATION IN CHRONIC INFECTIONS AND CANCERS. IN THIS REVIEW, WE ELUCIDATE THE HETEROGENEITY OF TEX CELLS AND OFFER NEW INSIGHTS INTO THE HIERARCHICAL TRANSCRIPTIONAL REGULATION OF T CELL EXHAUSTION. FACTORS AND SIGNALING PATHWAYS THAT INDUCE AND PROMOTE EXHAUSTION ARE ALSO SUMMARIZED. MOREOVER, WE REVIEW THE EPIGENETIC AND METABOLIC ALTERATIONS OF TEX CELLS AND DISCUSS HOW PD-1 SIGNALING AFFECTS THE BALANCE BETWEEN T CELL ACTIVATION AND EXHAUSTION, AIMING TO PROVIDE MORE THERAPEUTIC TARGETS FOR APPLICATIONS OF COMBINATIONAL IMMUNOTHERAPIES. 2023