1 6011 142 THE ANTIRESECTION ACTIVITY OF THE X PROTEIN ENCODED BY HEPATITIS VIRUS B. CHRONIC INFECTION OF HEPATITIS B VIRUS (HBV) IS ASSOCIATED WITH AN INCREASED INCIDENCE OF HEPATOCELLULAR CARCINOMA (HCC). HBV ENCODES AN ONCOPROTEIN, HEPATITIS B X PROTEIN (HBX), THAT IS CRUCIAL FOR VIRAL REPLICATION AND INTERFERES WITH MULTIPLE CELLULAR ACTIVITIES INCLUDING GENE EXPRESSION, HISTONE MODIFICATIONS, AND GENOMIC STABILITY. TO DATE, IT REMAINS UNCLEAR HOW DISRUPTION OF THESE ACTIVITIES CONTRIBUTES TO HEPATOCARCINOGENESIS. HERE, WE REPORT THAT HBV EXHIBITS ANTIRESECTION ACTIVITY BY DISRUPTING DNA END RESECTION, THUS IMPAIRING THE INITIAL STEPS OF HOMOLOGOUS RECOMBINATION (HR). THIS ANTIRESECTION ACTIVITY OCCURS IN PRIMARY HUMAN HEPATOCYTES UNDERGOING A NATURAL VIRAL INFECTION-REPLICATION CYCLE AS WELL AS IN CELLS WITH INTEGRATED HBV GENOMES. AMONG THE SEVEN HBV-ENCODED PROTEINS, WE IDENTIFIED HBX AS THE SOLE VIRAL FACTOR THAT INHIBITS RESECTION. BY DISRUPTING AN EVOLUTIONARILY CONSERVED CULLIN4A-DAMAGE-SPECIFIC DNA BINDING PROTEIN 1-RING TYPE OF E3 LIGASE, CRL4(WDR70) , THROUGH ITS H-BOX, WE SHOW THAT HBX INHIBITS H2B MONOUBIQUITYLATION AT LYSINE 120 AT DOUBLE-STRAND BREAKS, THUS REDUCING THE EFFICIENCY OF LONG-RANGE RESECTION. WE FURTHER SHOW THAT DIRECTLY IMPAIRING H2B MONOUBIQUITYLATION ELICITED TUMORIGENESIS UPON ENGRAFTMENT OF DEFICIENT CELLS IN ATHYMIC MICE, CONFIRMING THAT THE IMPAIRMENT OF CRL4(WDR70) FUNCTION BY HBX IS SUFFICIENT TO PROMOTE CARCINOGENESIS. FINALLY, WE DEMONSTRATE THAT LACK OF H2B MONOUBIQUITYLATION IS MANIFEST IN HUMAN HBV-ASSOCIATED HCC WHEN COMPARED WITH HBV-FREE HCC, IMPLYING CORRESPONDING DEFECTS OF EPIGENETIC REGULATION AND END RESECTION. CONCLUSION: THE ANTIRESECTION ACTIVITY OF HBX INDUCES AN HR DEFECT AND GENOMIC INSTABILITY AND CONTRIBUTES TO TUMORIGENESIS OF HOST HEPATOCYTES. 2019 2 3728 34 INHIBITION OF REPLICATION OF HEPATITIS B VIRUS USING TRANSCRIPTIONAL REPRESSORS THAT TARGET THE VIRAL DNA. BACKGROUND: CHRONIC INFECTION WITH HEPATITIS B VIRUS (HBV) IS A SERIOUS GLOBAL HEALTH PROBLEM. PERSISTENCE OF THE VIRUS OCCURS AS A RESULT OF STABILITY OF THE REPLICATION INTERMEDIATE COMPRISING COVALENTLY CLOSED CIRCULAR DNA (CCCDNA). DEVELOPMENT OF DRUGS THAT ARE CAPABLE OF DISABLING THIS CCCDNA IS VITAL. METHODS: TO INVESTIGATE AN EPIGENETIC APPROACH TO INACTIVATING VIRAL DNA, WE ENGINEERED TRANSCRIPTIONAL REPRESSORS THAT COMPRISE AN HBV DNA-BINDING DOMAIN OF TRANSCRIPTION ACTIVATOR LIKE EFFECTORS (TALES) AND A FUSED KRUPPEL ASSOCIATED BOX (KRAB). THESE REPRESSOR TALES (RTALES) TARGETED THE VIRAL SURFACE OPEN READING FRAME AND WERE PLACED UNDER TRANSCRIPTION CONTROL OF CONSTITUTIVELY ACTIVE OR LIVER-SPECIFIC PROMOTERS. RESULTS: EVALUATION IN CULTURED CELLS AND FOLLOWING HYDRODYNAMIC INJECTION OF MICE REVEALED THAT THE RTALES SIGNIFICANTLY INHIBITED PRODUCTION OF MARKERS OF HBV REPLICATION WITHOUT EVIDENCE OF HEPATOTOXICITY. INCREASED METHYLATION OF HBV DNA AT CPG ISLAND II SHOWED THAT THE RTALES CAUSED INTENDED EPIGENETIC MODIFICATION. CONCLUSIONS: EPIGENETIC MODIFICATION OF HBV DNA IS A NEW AND EFFECTIVE MEANS OF INACTIVATING THE VIRUS IN VIVO. THE APPROACH HAS THERAPEUTIC POTENTIAL AND AVOIDS POTENTIALLY PROBLEMATIC UNINTENDED MUTAGENESIS OF GENE EDITING. 2019 3 4771 42 NUCLEAR SENSOR INTERFERON-INDUCIBLE PROTEIN 16 INHIBITS THE FUNCTION OF HEPATITIS B VIRUS COVALENTLY CLOSED CIRCULAR DNA BY INTEGRATING INNATE IMMUNE ACTIVATION AND EPIGENETIC SUPPRESSION. BACKGROUND AND AIMS: NUCLEAR-LOCATED COVALENTLY CLOSED CIRCULAR DNA (CCCDNA) OF HEPATITIS B VIRUS (HBV) IS A DETERMINING FACTOR FOR HBV PERSISTENCE AND THE KEY OBSTACLE FOR A CURE OF CHRONIC HEPATITIS B. HOWEVER, IT REMAINS UNCLEAR WHETHER AND HOW THE HOST IMMUNE SYSTEM SENSES HBV CCCDNA AND ITS BIOLOGICAL CONSEQUENCES. APPROACH AND RESULTS: HERE, WE DEMONSTRATED THAT INTERFERON-INDUCIBLE PROTEIN 16 (IFI16) COULD SERVE AS A UNIQUE INNATE SENSOR TO RECOGNIZE AND BIND TO HBV CCCDNA IN HEPATIC NUCLEI, LEADING TO THE INHIBITION OF CCCDNA TRANSCRIPTION AND HBV REPLICATION. MECHANISTICALLY, OUR DATA SHOWED THAT IFI16 PROMOTED THE EPIGENETIC SUPPRESSION OF HBV CCCDNA BY TARGETING AN INTERFERON-STIMULATED RESPONSE ELEMENT (ISRE) PRESENT IN CCCDNA. IT IS OF INTEREST THAT THIS ISRE WAS ALSO REVEALED TO PLAY AN IMPORTANT ROLE IN IFI16-ACTIVATED TYPE I INTERFERON RESPONSES. FURTHERMORE, OUR DATA REVEALED THAT HBV COULD DOWN-REGULATE THE EXPRESSION LEVEL OF IFI16 IN HEPATOCYTES, AND THERE WAS A NEGATIVE CORRELATION BETWEEN IFI16 AND HBV TRANSCRIPTS IN LIVER BIOPSIES, SUGGESTING THE POSSIBLE ROLE OF IFI16 IN SUPPRESSING CCCDNA FUNCTION UNDER PHYSIOLOGICAL CONDITIONS. CONCLUSIONS: THE NUCLEAR SENSOR IFI16 SUPPRESSES CCCDNA FUNCTION BY INTEGRATING INNATE IMMUNE ACTIVATION AND EPIGENETIC REGULATION BY TARGETING THE ISRE OF CCCDNA, AND IFI16 MAY PRESENT AS A THERAPEUTIC TARGET AGAINST HBV INFECTION. 2020 4 819 39 CHARACTERIZATION OF A KDM5 SMALL MOLECULE INHIBITOR WITH ANTIVIRAL ACTIVITY AGAINST HEPATITIS B VIRUS. CHRONIC HEPATITIS B (CHB) IS A GLOBAL HEALTH CARE CHALLENGE AND A MAJOR CAUSE OF LIVER DISEASE. TO FIND NEW THERAPEUTIC AVENUES WITH A POTENTIAL TO FUNCTIONALLY CURE CHRONIC HEPATITIS B VIRUS (HBV) INFECTION, WE PERFORMED A FOCUSED SCREEN OF EPIGENETIC MODIFIERS TO IDENTIFY POTENTIAL INHIBITORS OF REPLICATION OR GENE EXPRESSION. FROM THIS WORK WE IDENTIFIED ISONICOTINIC ACID INHIBITORS OF THE HISTONE LYSINE DEMETHYLASE 5 (KDM5) WITH POTENT ANTI-HBV ACTIVITY. TO ENHANCE THE CELLULAR PERMEABILITY AND LIVER ACCUMULATION OF THE MOST POTENT KDM5 INHIBITOR IDENTIFIED (GS-080) AN ESTER PRODRUG WAS DEVELOPED (GS-5801) THAT RESULTED IN IMPROVED BIOAVAILABILITY AND LIVER EXPOSURE AS WELL AS AN INCREASED H3K4ME3:H3 RATIO ON CHROMATIN. GS-5801 TREATMENT OF HBV-INFECTED PRIMARY HUMAN HEPATOCYTES REDUCED THE LEVELS OF HBV RNA, DNA AND ANTIGEN. EVALUATION OF GS-5801 ANTIVIRAL ACTIVITY IN A HUMANIZED MOUSE MODEL OF HBV INFECTION, HOWEVER, DID NOT RESULT IN ANTIVIRAL EFFICACY, DESPITE ACHIEVING PHARMACODYNAMIC LEVELS OF H3K4ME3:H3 PREDICTED TO BE EFFICACIOUS FROM THE IN VITRO MODEL. HERE WE DISCUSS POTENTIAL REASONS FOR THE DISCONNECT BETWEEN IN VITRO AND IN VIVO EFFICACY, WHICH HIGHLIGHT THE TRANSLATIONAL DIFFICULTIES OF EPIGENETIC TARGETS FOR VIRAL DISEASES. 2022 5 3255 34 HEPATITIS B VIRUS X PROTEIN MEDIATED EPIGENETIC ALTERATIONS IN THE PATHOGENESIS OF HEPATOCELLULAR CARCINOMA. CHRONIC HEPATITIS B VIRUS (HBV) INFECTION IS A WORLDWIDE HEALTH PROBLEM. HEPATITIS B VIRUS X PROTEIN (HBX), A PLEIOTROPIC REGULATORY PROTEIN ENCODED BY HBV, IS NECESSARY FOR THE TRANSCRIPTION OF HBV COVALENTLY CLOSED CIRCULAR DNA (CCCDNA) MINICHROMOSOMES, AND AFFECTS THE EPIGENETIC REGULATION OF HOST CELLS. THE EPIGENETIC REPROGRAMMING OF HBX ON HOST CELL GENOME IS STRONGLY INVOLVED IN HBV-RELATED HCC CARCINOGENESIS. HERE, WE REVIEW THE LATEST FINDINGS OF THE EPIGENETIC REGULATION INDUCED BY HBX PROTEIN IN HEPATOCELLULAR CARCINOMA (HCC), INCLUDING DNA METHYLATION, HISTONE MODIFICATION AND NON-CODING RNA EXPRESSION. THE INFLUENCE OF HBX ON THE EPIGENETIC REGULATION OF CCCDNA IS ALSO SUMMARIZED. IN ADDITION, PRELIMINARY STUDIES OF TARGETED DRUGS FOR EPIGENETIC CHANGES INDUCED BY HBX ARE ALSO DISCUSSED. THE EXPLORATION OF EPIGENETIC MARKERS AS POTENTIAL TARGETS WILL HELP TO DEVELOP NEW PREVENTION AND/OR TREATMENT METHODS FOR HBX-RELATED HCC. 2022 6 3253 38 HEPATITIS B VIRUS X PROTEIN ACCELERATES THE DEVELOPMENT OF HEPATOMA. THE CHRONIC INFECTION OF HEPATITIS B VIRUS (HBV) IS CLOSELY RELATED TO THE OCCURRENCE AND DEVELOPMENT OF HEPATOCELLULAR CARCINOMA (HCC). ACCUMULATED EVIDENCE HAS SHOWN THAT HBV X PROTEIN (HBX PROTEIN) IS A MULTIFUNCTIONAL REGULATOR WITH A CRUCIAL ROLE IN HEPATOCARCINOGENESIS. HOWEVER, INFORMATION ON THE MECHANISM BY WHICH HBV INDUCES HCC IS LACKING. THIS REVIEW FOCUSES ON THE PATHOLOGICAL FUNCTIONS OF HBX IN HBV-INDUCED HEPATOCARCINOGENESIS. AS A TRANSACTIVATOR, HBX CAN MODULATE NUCLEAR FACTOR KAPPA-LIGHT-CHAIN-ENHANCER OF ACTIVATED B CELLS (NF-KAPPAB) AND TRANSCRIPTION FACTOR AP-2. MOREOVER, HBX CAN AFFECT REGULATORY NON-CODING RNAS (NCRNAS) INCLUDING MICRORNAS AND LONG NCRNAS (LNCRNAS), SUCH AS MIRNA-205 AND HIGHLY UPREGULATED IN LIVER CANCER (HULC), RESPECTIVELY. HBX IS ALSO INVOLVED IN EPIGENETIC MODIFICATION, INCLUDING METHYLATION AND ACETYLATION. HBX INTERACTS WITH VARIOUS SIGNAL-TRANSDUCTION PATHWAYS, SUCH AS PROTEIN KINASE B/AKT, WNT/BETA-CATENIN, SIGNAL TRANSDUCER AND ACTIVATOR OF TRANSCRIPTION, AND NF-KAPPAB PATHWAYS. MOREOVER, HBX AFFECTS CELLULAR FATE BY SHIFTING THE BALANCE TOWARD CELL SURVIVAL. HBX MAY LEAD TO THE LOSS OF APOPTOTIC FUNCTIONS OR DIRECTLY CONTRIBUTES TO ONCOGENESIS BY ACHIEVING TRANSFORMING FUNCTIONS, WHICH INDUCE HEPATOCARCINOGENESIS. ADDITIONALLY, HBX CAN MODULATE APOPTOSIS AND IMMUNE RESPONSE BY DIRECT OR INDIRECT INTERACTION WITH HOST FACTORS. WE CONCLUDE THAT HBX HASTENS THE DEVELOPMENT OF HEPATOMA. 2014 7 1615 30 DNA METHYLTRANSFERASE 3B PLAYS A PROTECTIVE ROLE AGAINST HEPATOCARCINOGENESIS CAUSED BY CHRONIC INFLAMMATION VIA MAINTAINING MITOCHONDRIAL HOMEOSTASIS. MOST HEPATOCELLULAR CARCINOMAS (HCCS) DEVELOP ON THE BASIS OF CHRONIC HEPATITIS, BUT THE MECHANISM OF EPIGENETIC REGULATION IN INFLAMMATORY HEPATOCARCINOGENESIS HAS YET TO BE ELUCIDATED. AMONG DE NOVO DNA METHYLTRANSFERASES (DNMTS), DNMT3B HAS LATELY BEEN REPORTED TO ACT SPECIFICALLY ON ACTIVELY TRANSCRIBED GENES, SUGGESTING THE POSSIBILITY THAT IT PLAYS A ROLE IN THE PATHOGENESIS OF CANCER. WE CONFIRMED THAT DNMT3B ISOFORMS LACKING ITS CATALYTIC DOMAIN WERE HIGHLY EXPRESSED IN HCCS COMPARED WITH NON-TUMOROUS LIVER TISSUE. TO ELUCIDATE THE ROLE OF DNMT3B IN HEPATOCARCINOGENESIS, WE GENERATED A GENETICALLY ENGINEERED MOUSE MODEL WITH HEPATOCYTE-SPECIFIC DNMT3B DELETION. THE LIVER OF THE DNMT3B-DEFICIENT MICE EXHIBITED AN EXACERBATION OF THIOACETAMIDE-INDUCED HEPATITIS, PROGRESSION OF LIVER FIBROSIS AND A HIGHER INCIDENCE OF HCC COMPARED WITH THE LIVER OF THE CONTROL MICE. WHOLE-GENOME BISULFITE SEQUENCING VERIFIED A LOWER CG METHYLATION LEVEL IN THE DNMT3B-DEFICIENT LIVER, DEMONSTRATING DIFFERENTIALLY METHYLATED REGIONS THROUGHOUT THE GENOME. TRANSCRIPTOME ANALYSIS REVEALED DECREASED EXPRESSION OF GENES RELATED TO OXIDATIVE PHOSPHORYLATION IN THE DNMT3B-DEFICIENT LIVER. MOREOVER, PRIMARY HEPATOCYTES ISOLATED FROM THE DNMT3B-DEFICIENT MICE SHOWED REDUCED MITOCHONDRIAL RESPIRATORY CAPACITY, LEADING TO THE ENHANCEMENT OF OXIDATIVE STRESS IN THE LIVER TISSUE. OUR FINDINGS SUGGEST THE PROTECTIVE ROLE OF DNMT3B AGAINST CHRONIC INFLAMMATION AND HCC DEVELOPMENT VIA MAINTAINING MITOCHONDRIAL HOMEOSTASIS. 2020 8 3948 31 LNCRNA-CD160 DECREASES THE IMMUNITY OF CD8(+) T CELLS THROUGH EPIGENETIC MECHANISMS IN HEPATITIS B VIRUS INFECTION. THE TRANSFER AND DEVELOPMENT OF CHRONIC HEPATITIS B VIRUS (HBV) INFECTION IS ASSOCIATED WITH THE T CELL IMMUNE RESPONSE, THEREFORE INVESTIGATING THE KEY REGULATORS OF CELL IMMUNE RESPONSE IS NEEDED TO IMPROVE CHRONIC HBV TREATMENT. BLOOD SAMPLES FROM PATIENTS WITH CHRONIC HBV INFECTION WERE USED TO CONFIRM THE CORRELATION BETWEEN HBV INFECTION STAGE AND CD160 RECEPTOR EXPRESSION LEVELS IN CD8(+) T CELLS, THE CD8(+) T CELLS ARE USED TO RESEARCH THE MECHANISM OF T CELL IMMUNE RESPONSE MODULATION, MOREOVER, C3H/HEN MICE WITH REDUCED CD160 EXPRESSION LEVELS WERE USED TO INVESTIGATE THE ASSOCIATION BETWEEN LONG NON-CODING (LNC)RNA-CD160 AND HBV INFECTION. LONG NON-CODING (LNC)RNA-CD160 AND HISTONE-MODIFICATION ENZYME GENE HISTONE DEACETYLASE 11 (HDAC11) EXPRESSION LEVELS WERE NEGATIVELY ASSOCIATED WITH CD160 EXPRESSION. LNCRNA-CD160 CAN INHIBIT THE SECRETION OF IFN-GAMMA AND TNF-ALPHA THROUGH HDAC11 RECRUITMENT AND BIND TO HDAC11 TO FORM A COMPLEX ON THE PROMOTERS OF IFN-GAMMA AND TNF-ALPHA. THE HDAC11, IFN-GAMMA AND TNF-ALPHA FORM A COMPLEX AND ENHANCE THE METHYLATION OF H3K9ME1, CHROMATIN CHANGES INTO THE HETEROCHROMATIN AND THE TRANSCRIPTION OF IFN-GAMMA AND TNF-ALPHA IS BLOCKED; MOREOVER, THE HDAC11/IFN-GAMMA/TNF-ALPHA COMPLEX CAN ALSO INHIBIT THE SECRETION OF IFN-GAMMA AND TNF-ALPHA IN CD160(-) CD8(+) T CELLS AND SUPPRESSES THE FUNCTION OF CD8(+) T CELLS. FURTHERMORE, SMALL INTERFERING RNA TARGETING LNCRNA-CD160 CAN BLOCK HBV INFECTION PROGRESSION. LNCRNA-CD160 ACTS AS AN IMMUNE SUPPRESSIVE FACTOR AND IS EXPRESSED AT A HIGH LEVEL IN PERIPHERAL BLOOD CD8(+) T CELLS OF HBV INFECTED PATIENTS. FURTHERMORE, HIGH EXPRESSION LEVELS OF LNCRNA-CD160 CAN CONTRIBUTE TO THE INHIBITION OF IFN-GAMMA AND TNF-ALPHA SECRETION IN CD8(+) T CELLS AND DECREASE THE IMMUNE RESPONSE OF CD8(+) T CELLS. THEREFORE, LNCRNA-CD160 MAY BECOME A NEW TARGET FOR IMMUNOTHERAPY OF CHRONIC HBV INFECTION IN THE FUTURE AND MAY PROVIDE A NEW THERAPEUTIC STRATEGY FOR THE TREATMENT OF HBV INFECTION. 2020 9 3254 26 HEPATITIS B VIRUS X PROTEIN AND HEPATOCARCINOGENESIS. CHRONIC HEPATITIS B VIRUS (HBV) INFECTION IS ONE OF THE MOST ASSOCIATED FACTORS IN HEPATOCARCINOGENESIS. HBV IS ABLE TO INTEGRATE INTO THE HOST GENOME AND ENCODE THE MULTI-FUNCTIONAL HEPATITIS B VIRUS X PROTEIN (HBX). ALTHOUGH THE MECHANISM BETWEEN HBX AND CARCINOGENESIS IS STILL ELUSIVE, RECENT STUDIES HAVE SHOWN THAT HBX WAS ABLE TO INFLUENCE VARIOUS SIGNALING PATHWAYS, AS WELL AS EPIGENETIC AND GENETIC PROCESSES. THIS REVIEW WILL EXAMINE AND SUMMARIZE RECENT LITERATURE ABOUT HBX'S ROLE IN THESE VARIOUS PROCESSES. 2016 10 2837 43 FORKHEAD O TRANSCRIPTION FACTOR 4 RESTRICTS HBV COVALENTLY CLOSED CIRCULAR DNA TRANSCRIPTION AND HBV REPLICATION THROUGH GENETIC DOWNREGULATION OF HEPATOCYTE NUCLEAR FACTOR 4 ALPHA AND EPIGENETIC SUPPRESSION OF COVALENTLY CLOSED CIRCULAR DNA VIA INTERACTING WITH PROMYELOCYTIC LEUKEMIA PROTEIN. NUCLEAR LOCATED HEPATITIS B VIRUS (HBV) COVALENTLY CLOSED CIRCULAR DNA (CCCDNA) REMAINS THE KEY OBSTACLE TO CURE CHRONIC HEPATITIS B (CHB). IN OUR PREVIOUS INVESTIGATION, IT WAS FOUND THAT FOXO4 COULD INHIBIT HBV CORE PROMOTER ACTIVITY THROUGH DOWNREGULATING THE EXPRESSION OF HNF4ALPHA. HOWEVER, THE EXACT MECHANISMS WHEREBY FOXO4 INHIBITS HBV REPLICATION, ESPECIALLY ITS EFFECT ON CCCDNA, REMAIN UNCLEAR. HERE, OUR DATA FURTHER REVEALED THAT FOXO4 COULD EFFECTIVELY INHIBIT CCCDNA MEDIATED TRANSCRIPTION AND HBV REPLICATION WITHOUT AFFECTING CCCDNA LEVEL. MECHANISTIC STUDY SHOWED THAT FOXO4 COULD CAUSE EPIGENETIC SUPPRESSION OF CCCDNA. ALTHOUGH FOXO4-MEDIATED DOWNREGULATION OF HNF4ALPHA CONTRIBUTED TO INHIBITING HBV CORE PROMOTER ACTIVITY, IT HAD LITTLE EFFECT ON CCCDNA EPIGENETIC REGULATION. FURTHER, IT WAS FOUND THAT FOXO4 COULD COLOCALIZE WITHIN PROMYELOCYTIC LEUKEMIA PROTEIN (PML) NUCLEAR BODIES AND INTERACT WITH PML. OF NOTE, PML WAS REVEALED TO BE CRITICAL FOR FOXO4-MEDIATED INHIBITION OF CCCDNA EPIGENETIC MODIFICATION AND OF THE FOLLOWING CCCDNA TRANSCRIPTION AND HBV REPLICATION. FURTHERMORE, FOXO4 WAS FOUND TO BE DOWNREGULATED IN HBV-INFECTED HEPATOCYTES AND HUMAN LIVER TISSUES, AND IT WAS NEGATIVELY CORRELATED WITH CCCDNA TRANSCRIPTIONAL ACTIVITY IN CHB PATIENTS. TOGETHER, THESE FINDINGS HIGHLIGHT THE ROLE OF FOXO4 IN SUPPRESSING CCCDNA TRANSCRIPTION AND HBV REPLICATION VIA GENETIC DOWNREGULATION OF HNF4ALPHA AND EPIGENETIC SUPPRESSION OF CCCDNA THROUGH INTERACTING WITH PML. TARGETING FOXO4 MAY PRESENT AS A NEW THERAPEUTIC STRATEGY AGAINST CHRONIC HBV INFECTION. IMPORTANCE HBV CCCDNA IS A DETERMINING FACTOR FOR VIRAL PERSISTENCE AND THE MAIN OBSTACLE FOR A CURE OF CHRONIC HEPATITIS B. STRATEGIES THAT TARGET CCCDNA DIRECTLY ARE THEREFORE OF GREAT IMPORTANCE IN CONTROLLING PERSISTENT HBV INFECTION. IN PRESENT INVESTIGATION, WE FOUND THAT FOXO4 COULD EFFICIENTLY SUPPRESS CCCDNA TRANSCRIPTION AND HBV REPLICATION WITHOUT AFFECTING THE LEVEL OF CCCDNA ITSELF. FURTHER, OUR DATA REVEALED THAT FOXO4 MIGHT INHIBIT CCCDNA FUNCTION VIA A TWO-PART MECHANISM: ONE IS TO EPIGENETICALLY SUPPRESS CCCDNA TRANSCRIPTION VIA INTERACTING WITH PML, AND THE OTHER IS TO INHIBIT HBV CORE PROMOTER ACTIVITY VIA THE GENETIC DOWNREGULATION OF HNF4ALPHA. OF NOTE, HBV MIGHT DAMPEN THE EXPRESSION OF FOXO4 FOR ITS OWN PERSISTENT INFECTION. WE PROPOSE THAT MANIPULATION OF FOXO4 MAY PRESENT AS A POTENTIAL THERAPEUTIC STRATEGY AGAINST CHRONIC HBV INFECTION. 2022 11 3256 30 HEPATITIS B VIRUS-ASSOCIATED HEPATOCELLULAR CARCINOMA AND HEPATIC CANCER STEM CELLS. CHRONIC HEPATITIS B VIRUS (HBV) INFECTION IS LINKED TO HEPATOCELLULAR CARCINOMA (HCC) PATHOGENESIS. DESPITE THE AVAILABILITY OF A HBV VACCINE, CURRENT TREATMENTS FOR HCC ARE INADEQUATE. GLOBALLY, 257 MILLION PEOPLE ARE CHRONIC HBV CARRIERS, AND CHILDREN BORN FROM HBV-INFECTED MOTHERS BECOME CHRONIC CARRIERS, DESTINED TO DEVELOP LIVER CANCER. THUS, NEW THERAPEUTIC APPROACHES ARE NEEDED TO TARGET ESSENTIAL PATHWAYS INVOLVED IN HCC PATHOGENESIS. ACCUMULATING EVIDENCE SUPPORTS EXISTENCE OF HEPATIC CANCER STEM CELLS (HCSCS), WHICH CONTRIBUTE TO CHEMOTHERAPY RESISTANCE AND CANCER RECURRENCE AFTER TREATMENT OR SURGERY. UNDERSTANDING HOW HCSCS FORM WILL ENABLE DEVELOPMENT OF THERAPEUTIC STRATEGIES TO PREVENT THEIR FORMATION. RECENT STUDIES HAVE IDENTIFIED AN EPIGENETIC MECHANISM INVOLVING THE DOWNREGULATION OF THE CHROMATIN MODIFYING POLYCOMB REPRESSIVE COMPLEX 2 (PRC2) DURING HBV INFECTION, WHICH RESULTS IN RE-EXPRESSION OF HCSC MARKER GENES IN INFECTED HEPATOCYTES AND HBV-ASSOCIATED LIVER TUMORS. HOWEVER, THE GENESIS OF HCSCS REQUIRES, IN ADDITION TO THE EXPRESSION OF HCSC MARKERS CELLULAR CHANGES, REWIRING OF METABOLISM, CELL SURVIVAL, ESCAPE FROM PROGRAMMED CELL DEATH, AND IMMUNE EVASION. HOW THESE CHANGES OCCUR IN CHRONICALLY HBV-INFECTED HEPATOCYTES IS NOT YET UNDERSTOOD. IN THIS REVIEW, WE WILL PRESENT THE BASICS ABOUT HBV INFECTION AND HEPATOCARCINOGENESIS. NEXT, WE WILL DISCUSS STUDIES DESCRIBING THE MUTATIONAL LANDSCAPE OF LIVER CANCERS AND HOW EPIGENETIC MECHANISMS LIKELY ORCHESTRATE CELLULAR REPROGRAMING OF HEPATOCYTES TO ENABLE FORMATION OF HCSCS. 2018 12 6707 31 VIRAL HEPATITIS AND HEPATOCELLULAR CARCINOMA: STATE OF THE ART. VIRAL HEPATITIS IS ONE OF THE MAIN CAUSES LEADING TO HEPATOCELLULAR CARCINOMA (HCC). THE CONTINUED RISE IN INCIDENCE OF HCC SUGGESTS ADDITIONAL FACTORS FOLLOWING INFECTION MAY BE INVOLVED. THIS REVIEW EXAMINES RECENT STUDIES INVESTIGATING THE MOLECULAR MECHANISMS OF CHRONIC HEPATITIS AND ITS ASSOCIATION WITH HEPATOCARCINOGENESIS. HEPATITIS B VIRUS PATIENTS WITH GENOTYPE C DISPLAY AN AGGRESSIVE DISEASE COURSE LEADING TO HCC MORE THAN OTHER GENOTYPES. FURTHERMORE, HEPATITIS B EXCRETORY ANTIGEN (HBEAG) SEEMS TO BE A MORE SENSITIVE PREDICTIVE TUMOR MARKER EXHIBITING A SIX-FOLD HIGHER RELATIVE RISK IN PATIENTS WITH POSITIVE HBSAG AND HBEAG THAN THOSE WITH HBSAG ONLY. SINGLE OR COMBINED MUTATIONS OF VIRAL GENOME CAN PREDICT HCC DEVELOPMENT IN UP TO 80% OF PATIENTS. SEVERAL MUTATIONS IN HBX-GENE ARE RELATED WITH HIGHER HCC INCIDENCE. OVEREXPRESSION OF THE CORE PROTEIN IN HCV LEADS TO HEPATOCELLULAR LIPID ACCUMULATION ASSOCIATED WITH ONCOGENESIS. REDUCED NUMBER AND DECREASED FUNCTIONALITY OF NATURAL KILLER CELLS IN CHRONIC HCV INDIVIDUALS DYSREGULATE THEIR SURVEILLANCE FUNCTION IN TUMOR AND VIRAL CELLS RESULTING IN HCC. FURTHERMORE, HIGH T-CELL IMMUNOGLOBULIN AND MUCIN 3 LEVELS SUPRESS CD8+ T-CELLS, WHICH LEAD TO IMMUNOLOGICAL DYSREGULATION. HEPATITIS D PROMOTES HCC DEVELOPMENT INDIRECTLY VIA MODIFICATIONS TO INNATE IMMUNITY, EPIGENETIC ALTERATIONS AND PRODUCTION OF REACTIVE OXYGEN SPECIES WITH THE LHDAG BEING THE MOST HIGHLY ASSOCIATED WITH HCC DEVELOPMENT. SUMMARIZING THE RESULTS, HBV AND HCV INFECTION REPRESENT THE MOST ASSOCIATED FORMS OF VIRAL HEPATITIS CAUSING HCC. FURTHER STUDIES ARE WARRANTED TO FURTHER IMPROVE THE PREDICTION OF HIGH-RISK PATIENTS AND DEVELOPMENT OF TARGETED THERAPEUTICS PREVENTING THE TRANSITION FROM HEPATIC INFLAMMATION-FIBROSIS TO CANCER. 2021 13 4131 42 MECHANISMS OF HBV-INDUCED HEPATOCELLULAR CARCINOMA. HEPATITIS B VIRUS (HBV) CONTRIBUTES TO HEPATOCELLULAR CARCINOMA (HCC) DEVELOPMENT THROUGH DIRECT AND INDIRECT MECHANISMS. HBV DNA INTEGRATION INTO THE HOST GENOME OCCURS AT EARLY STEPS OF CLONAL TUMOR EXPANSION AND INDUCES BOTH GENOMIC INSTABILITY AND DIRECT INSERTIONAL MUTAGENESIS OF DIVERSE CANCER-RELATED GENES. PROLONGED EXPRESSION OF THE VIRAL REGULATORY PROTEIN HBX AND/OR ALTERED VERSIONS OF THE PRES/S ENVELOPE PROTEINS DYSREGULATES CELL TRANSCRIPTION AND PROLIFERATION CONTROL AND SENSITIZES LIVER CELLS TO CARCINOGENIC FACTORS. ACCUMULATION OF PRES1 LARGE ENVELOPE PROTEINS AND/OR PRES2/S MUTANT PROTEINS ACTIVATES THE UNFOLD PROTEINS RESPONSE, THAT CAN CONTRIBUTE TO HEPATOCYTE TRANSFORMATION. EPIGENETIC CHANGES TARGETING THE EXPRESSION OF TUMOR SUPPRESSOR GENES OCCUR EARLY IN THE DEVELOPMENT OF HCC. A MAJOR ROLE IS PLAYED BY THE HBV PROTEIN, HBX, WHICH IS RECRUITED ON CELLULAR CHROMATIN AND MODULATES CHROMATIN DYNAMICS AT SPECIFIC GENE LOCI. COMPARED WITH TUMORS ASSOCIATED WITH OTHER RISK FACTORS, HBV-RELATED TUMORS HAVE A HIGHER RATE OF CHROMOSOMAL ALTERATIONS, P53 INACTIVATION BY MUTATIONS AND OVEREXPRESSION OF FETAL LIVER/HEPATIC PROGENITOR CELLS GENES. THE WNT/BETA-CATENIN PATHWAY IS ALSO OFTEN ACTIVATED BUT HBV-RELATED TUMORS DISPLAY A LOW RATE OF ACTIVATING BETA-CATENIN MUTATIONS. HBV-RELATED HCCS MAY ARISE ON NON-CIRRHOTIC LIVERS, FURTHER SUPPORTING THE NOTION THAT HBV PLAYS A DIRECT ROLE IN LIVER TRANSFORMATION BY TRIGGERING BOTH COMMON AND ETIOLOGY SPECIFIC ONCOGENIC PATHWAYS IN ADDITION TO STIMULATING THE HOST IMMUNE RESPONSE AND DRIVING LIVER CHRONIC NECRO-INFLAMMATION. 2016 14 6337 23 THE ROLE OF DNA-METHYLTRANSFERASES IN THE LIFE CYCLE OF HEPATITIS B VIRUS AND PATHOGENESIS OF CHRONIC HEPATITIS B. CHRONIC HEPATITIS B IS CAUSED BY A PERSISTENT FORM OF HEPATITIS B VIRUS, COVALENTLY CLOSED CIRCULAR DNA (CCCDNA). STABILITY OF CCCDNA IS ASSOCIATED WITH INTRACELLULAR LOCALIZATION OF CCCDNA AND FORMATION OF MINICHROMOSOME, REGULATED BY EPIGENETIC MECHANISMS. ONE OF THE KEY MECHANISMS IN EPIGENETICS IS METHYLATION OF DNA ON CPG ISLANDS. EXPRESSION LEVELS OF DNA-METHYLTRANSFERASES (DNMTS) IN CHRONIC HEPATITIS B PATIENTS WERE SHOWN TO BE UPREGULATED. NEVERTHELESS, THE ROLE OF DNMTS IN THE LIFE CYCLE OF HBV AND THEIR EFFECTS ON THE CELL REMAIN ELUSIVE. IN THIS REVIEW, WE DISCUSS LATEST ACHIEVEMENTS ON THE ROLE OF DNMTS IN CHRONIC HEPATITIS B AND HBV IN VITRO MODELS. 2018 15 3189 42 HBX RELIEVES CHROMATIN-MEDIATED TRANSCRIPTIONAL REPRESSION OF HEPATITIS B VIRAL CCCDNA INVOLVING SETDB1 HISTONE METHYLTRANSFERASE. BACKGROUND & AIMS: MAINTENANCE OF THE COVALENTLY CLOSED CIRCULAR HBV DNA (CCCDNA) THAT SERVES AS A TEMPLATE FOR HBV TRANSCRIPTION IS RESPONSIBLE FOR THE FAILURE OF ANTIVIRAL THERAPIES. WHILE STUDIES IN CHRONIC HEPATITIS PATIENTS HAVE SHOWN THAT HIGH VIREMIA CORRELATES WITH HYPERACETYLATION OF CCCDNA-ASSOCIATED HISTONES, THE MOLECULAR MECHANISMS CONTROLLING CCCDNA STABILITY AND TRANSCRIPTIONAL REGULATION ARE STILL POORLY UNDERSTOOD. THIS STUDY AIMED TO DECIPHER THE ROLE OF CHROMATIN AND CHROMATIN MODIFIER PROTEINS ON HBV TRANSCRIPTION. METHODS: WE ANALYZED THE CHROMATIN STRUCTURE OF ACTIVELY TRANSCRIBED OR SILENCED CCCDNA BY INFECTING PRIMARY HUMAN HEPATOCYTES AND DIFFERENTIATED HEPARG CELLS WITH WILD-TYPE VIRUS OR VIRUS DEFICIENT (HBVX-) FOR THE EXPRESSION OF HEPATITIS B VIRUS X PROTEIN (HBX), THAT IS REQUIRED FOR HBV EXPRESSION. RESULTS: IN THE ABSENCE OF HBX, HBV CCCDNA WAS TRANSCRIPTIONALLY SILENCED WITH THE CONCOMITANT DECREASE OF HISTONE 3 (H3) ACETYLATION AND H3K4ME3, INCREASE OF H3 DI- AND TRI-METHYLATION (H3K9ME) AND THE RECRUITMENT OF HETEROCHROMATIN PROTEIN 1 FACTORS (HP1) THAT CORRELATE WITH CONDENSED CHROMATIN. SETDB1 WAS FOUND TO BE THE MAIN HISTONE METHYLTRANSFERASE RESPONSIBLE FOR THE DEPOSITION OF H3K9ME3 AND HBV REPRESSION. FINALLY, FULL TRANSCRIPTIONAL REACTIVATION OF HBVX- UPON HBX RE-EXPRESSION CORRELATED WITH AN INCREASE OF HISTONE ACETYLATION AND H3K4ME3, AND A CONCOMITANT DECREASE OF HP1 BINDING AND OF H3K9ME3 ON THE CCCDNA. CONCLUSION: UPON HBV INFECTION, CELLULAR MECHANISMS INVOLVING SETDB1-MEDIATED H3K9ME3 AND HP1 INDUCE SILENCING OF HBV CCCDNA TRANSCRIPTION THROUGH MODULATION OF CHROMATIN STRUCTURE. HBX IS ABLE TO RELIEVE THIS REPRESSION AND ALLOW THE ESTABLISHMENT OF ACTIVE CHROMATIN. 2015 16 3392 35 HOST AND VIRAL GENETIC VARIATION IN HBV-RELATED HEPATOCELLULAR CARCINOMA. HEPATOCELLULAR CARCINOMA (HCC) IS THE FIFTH MOST COMMON CANCER IN MEN AND THE SECOND LEADING CAUSE OF CANCER DEATHS GLOBALLY. THE HIGH PREVALENCE OF HCC IS DUE IN PART TO THE HIGH PREVALENCE OF CHRONIC HBV INFECTION AND THE HIGH MORTALITY RATE IS DUE TO THE LACK OF BIOMARKERS FOR EARLY DETECTION AND LIMITED TREATMENT OPTIONS FOR LATE STAGE HCC. THE OBSERVED INDIVIDUAL VARIANCE IN DEVELOPMENT OF HCC IS ATTRIBUTABLE TO DIFFERENCES IN HBV GENOTYPE AND MUTATIONS, HOST PREDISPOSING GERMLINE GENETIC VARIATIONS, THE ACQUISITION OF TUMOR-SPECIFIC SOMATIC MUTATIONS, AS WELL AS ENVIRONMENTAL FACTORS. HBV GENOTYPE C AND MUTATIONS IN THE PRES, BASIC CORE PROMOTER (BCP) OR HBX REGIONS ARE ASSOCIATED WITH AN INCREASED RISK OF HCC. GENOME-WIDE ASSOCIATION STUDIES HAVE IDENTIFIED COMMON POLYMORPHISMS IN KIF1B, HLA-DQ, STAT4, AND GRIK1 WITH ALTERED RISK OF HBV-RELATED HCC. HBV INTEGRATION INTO GROWTH CONTROL GENES (SUCH AS TERT), PRO-ONCOGENIC GENES, OR TUMOR SUPPRESSOR GENES AND THE ONCOGENIC ACTIVITY OF TRUNCATED HBX PROMOTE HEPATOCARCINOGENESIS. SOMATIC MUTATIONS IN THE TERT PROMOTER AND CLASSIC CANCER SIGNALING PATHWAYS, INCLUDING WNT (CTNNB1), CELL CYCLE REGULATION (TP53), AND EPIGENETIC MODIFICATION (ARID2 AND MLL4) ARE FREQUENTLY DETECTED IN HEPATIC TUMOR TISSUES. THE IDENTIFICATION OF HBV AND HOST VARIATION ASSOCIATED WITH TUMOR INITIATION AND PROGRESSION HAS CLINICAL UTILITY FOR IMPROVING EARLY DIAGNOSIS AND PROGNOSIS; WHEREAS THE IDENTIFICATION OF SOMATIC MUTATIONS DRIVING TUMORIGENESIS HOLD PROMISE TO INFORM PRECISION TREATMENT FOR HCC PATIENTS. 2018 17 6753 35 WILD TYPE HBX AND TRUNCATED HBX: PLEIOTROPIC REGULATORS DRIVING SEQUENTIAL GENETIC AND EPIGENETIC STEPS OF HEPATOCARCINOGENESIS AND PROGRESSION OF HBV-ASSOCIATED NEOPLASMS. HEPATITIS B VIRUS (HBV) IS ONE OF THE CAUSATIVE AGENTS OF HEPATOCELLULAR CARCINOMA. THE MOLECULAR MECHANISMS OF TUMORIGENESIS ARE COMPLEX. ONE OF THE HOST FACTORS INVOLVED IS APPARENTLY THE LONG-LASTING INFLAMMATORY REACTION WHICH ACCOMPANIES CHRONIC HBV INFECTION. ALTHOUGH HBV LACKS A TYPICAL VIRAL ONCOGENE, THE HBX GENE ENCODING A PLEIOTROPIC REGULATORY PROTEIN EMERGED AS A MAJOR PLAYER IN LIVER CARCINOGENESIS. HERE WE REVIEW THE TUMORIGENIC FUNCTIONS OF HBX WITH AN EMPHASIS ON WILD TYPE AND TRUNCATED HBX VARIANTS, AND THEIR ROLE IN THE TRANSCRIPTIONAL DYSREGULATION AND EPIGENETIC REPROGRAMMING OF THE HOST CELL GENOME. WE SUGGEST THAT HBX ACQUIRED BY THE HBV GENOME DURING EVOLUTION ACTS LIKE A CELLULAR PROTO-ONC GENE THAT IS ACTIVATED BY DELETION DURING HEPATOCARCINOGENESIS. THE RESULTING VIRAL ONCOGENE (V-ONC GENE) CODES FOR A TRUNCATED HBX PROTEIN THAT FACILITATES TUMOR PROGRESSION. COPYRIGHT (C) 2015 JOHN WILEY & SONS, LTD. 2016 18 4056 40 MAPPING THE HETEROGENEITY OF HISTONE MODIFICATIONS ON HEPATITIS B VIRUS DNA USING LIVER NEEDLE BIOPSIES OBTAINED FROM CHRONICALLY INFECTED PATIENTS. COVALENTLY CLOSED CIRCULAR DNA (CCCDNA) FORMS THE BASIS FOR REPLICATION AND PERSISTENCE OF HEPATITIS B VIRUS (HBV) IN THE CHRONICALLY INFECTED LIVER. WE HAVE PREVIOUSLY SHOWN THAT VIRAL TRANSCRIPTION IS SUBJECT TO REGULATION BY POSTTRANSLATIONAL MODIFICATIONS (PTMS) OF HISTONE PROTEINS BOUND TO CCCDNA THROUGH ANALYSIS OF DE NOVO HBV-INFECTED CELL LINES. WE NOW REPORT THE SUCCESSFUL ADAPTATION OF THIS CHROMATIN IMMUNOPRECIPITATION SEQUENCING (CHIPSEQ) APPROACH FOR ANALYSIS OF FINE-NEEDLE PATIENT LIVER BIOPSY SPECIMENS TO INVESTIGATE THE ROLE OF HISTONE PTMS IN CHRONICALLY HBV-INFECTED PATIENTS. USING 18 SPECIMENS FROM PATIENTS IN DIFFERENT STAGES OF CHRONIC HBV INFECTION, OUR WORK SHOWS THAT THE PROFILE OF HISTONE PTMS IN CHRONIC INFECTION IS MORE NUANCED THAN PREVIOUSLY OBSERVED IN IN VITRO MODELS OF ACUTE INFECTION. IN LINE WITH OUR PREVIOUS FINDINGS, WE FIND THAT THE MAJORITY OF HBV-DERIVED SEQUENCES ARE ASSOCIATED WITH THE ACTIVATING HISTONE PTM H3K4ME3. HOWEVER, WE SHOW A STRIKING INTERPATIENT VARIABILITY OF ITS DEPOSITION IN THIS PATIENT COHORT CORRELATED WITH VIRAL TRANSCRIPTION AND PATIENT HBV EARLY ANTIGEN (HBEAG) STATUS. UNEXPECTEDLY, WE DETECTED DEPOSITION OF THE CLASSICAL INHIBITORY HISTONE PTM H3K9ME3 ON HBV-DNA IN AROUND HALF OF THE PATIENT BIOPSY SPECIMENS, WHICH COULD NOT BE LINKED TO REDUCED LEVELS OF VIRAL TRANSCRIPTS. OUR RESULTS SHOW THAT CURRENT IN VITRO MODELS ARE UNABLE TO FULLY RECAPITULATE THE COMPLEX EPIGENETIC LANDSCAPE OF CHRONIC HBV INFECTION OBSERVED IN VIVO AND DEMONSTRATE THAT FINE-NEEDLE LIVER BIOPSY SPECIMENS CAN PROVIDE SUFFICIENT MATERIAL TO FURTHER INVESTIGATE THE INTERACTION OF VIRAL AND HOST PROTEINS ON HBV-DNA.IMPORTANCE HEPATITIS B VIRUS (HBV) IS A MAJOR GLOBAL HEALTH CONCERN, CHRONICALLY INFECTING MILLIONS OF PATIENTS AND CONTRIBUTING TO A RISING BURDEN OF LIVER DISEASE. THE VIRAL GENOME FORMS THE BASIS FOR CHRONIC INFECTION AND HAS BEEN SHOWN TO BE SUBJECT TO REGULATION BY EPIGENETIC MECHANISMS, SUCH AS POSTTRANSLATIONAL MODIFICATION OF HISTONE PROTEINS. HERE, WE CONFIRM AND EXPAND ON PREVIOUS RESULTS BY ADAPTING A HIGH-RESOLUTION TECHNIQUE FOR ANALYSIS OF HISTONE MODIFICATIONS FOR USE WITH PATIENT-DERIVED FINE-NEEDLE LIVER BIOPSY SPECIMENS. OUR WORK HIGHLIGHTS THAT THE SITUATION IN VIVO IS MORE COMPLEX THAN PREDICTED BY CURRENT IN VITRO MODELS, FOR EXAMPLE, BY SUGGESTING A NOVEL, NONCANONICAL ROLE OF THE HISTONE MODIFICATION H3K9ME3 IN THE HBV LIFE CYCLE. IMPORTANTLY, ENABLING THE USE OF FINE-NEEDLE LIVER BIOPSY SPECIMENS FOR SUCH HIGH-RESOLUTION ANALYSES MAY FACILITATE FURTHER RESEARCH INTO THE EPIGENETIC REGULATION OF THE HBV GENOME. 2019 19 5955 34 TELBIVUDINE TREATMENT CORRECTS HBV-INDUCED EPIGENETIC ALTERATIONS IN LIVER CELLS OF PATIENTS WITH CHRONIC HEPATITIS B. HEPATITIS B VIRUS (HBV) ALTERS THE EXPRESSION OF HOST CELLULAR GENES TO SUPPORT ITS REPLICATION AND SURVIVAL AND TO PROMOTE THE LIVER CELL INJURY. HOWEVER, THE UNDERLYING MECHANISM REMAINED INCOMPLETELY UNDERSTOOD. IN THIS STUDY, WE INVESTIGATED HBV-INDUCED EPIGENETIC CHANGES IN HEPG2 CELLS BY PROFILING THE LANDSCAPES OF THE ACTIVE HISTONE MODIFICATION MARK H3K4ME3 AND REPRESSIVE MARK H3K27ME3 USING CHROMATIN IMMUNOPRECIPITATION-SEQUENCING. HBV CAUSED THE ALTERED HISTONE MODIFICATIONS AT THOUSANDS OF GENOMIC LOCI, WHICH ARE CRITICALLY INVOLVED IN HBV ENTRY, INFLAMMATION, FIBROSIS AND CARCINOGENESIS OF HOST CELLS. INTERESTINGLY, TREATMENT OF THE HBV-TRANSFORMED HEPG2 CELLS WITH THE ANTI-HBV DRUG TELBIVUDINE SUBSTANTIALLY RESTORED THE H3K4ME3 LEVEL TO THAT OF UNTRANSFORMED HEPG2 CELLS. MORE IMPORTANTLY, OUR ANALYSIS OF LIVER SAMPLES FROM CONTROL AND CHRONIC HEPATITIS B PATIENTS REVEALED THAT TREATMENT OF THE PATIENTS WITH TELBIVUDINE NOT ONLY CORRECTED THE TARGET GENE EXPRESSION BUT ALSO THE EPIGENETIC MODIFICATION OF CRITICAL GENES. IN ADDITION, THE EXPRESSION OF THE HISTONE METHYLTRANSFERASES SMYD3 AND EZH2 THAT REGULATE HISTONE H3-SPECIFIC METHYLATION SHOWED NO DIFFERENCE IN HEPG2 CELL WITH OR WITHOUT HBV EXISTENCE. THUS, OUR DATA SUGGEST THAT ABNORMAL HISTONE MODIFICATIONS MIGHT CRITICALLY INVOLVED IN HBV-MEDIATED LIVER PATHOGENESIS AND TELBIVUDINE THERAPY MIGHT BENEFIT PATIENTS WITH HBV-RELATED CHRONIC INFECTION, LIVER CIRRHOSIS AND EVEN HEPATIC CARCINOMA. SUMMARY: TELBIVUDINE SUBSTANTIALLY RESTORES IN VITRO AND IN VIVO HBV-CAUSED ABNORMAL EXPRESSIONS AND HISTONE H3K4ME3 AND H3K27ME3 MODIFICATIONS AT THOUSANDS OF GENOMIC LOCI THAT ARE INVOLVED IN THE PATHOGENESIS OF LIVER CELLS, REVEALING A NOVEL MECHANISM FOR HBV-MEDIATED LIVER DAMAGE. 2014 20 3261 39 HEPATITIS C VIRUS-INDUCED UP-REGULATION OF PROTEIN PHOSPHATASE 2A INHIBITS HISTONE MODIFICATION AND DNA DAMAGE REPAIR. THE MOLECULAR MECHANISMS UNDERLYING HEPATOCARCINOGENESIS IN CHRONIC VIRAL HEPATITIS ARE POORLY UNDERSTOOD. A POTENTIAL TUMORIGENIC PATHWAY COULD INVOLVE PROTEIN PHOSPHATASE 2A (PP2A) AND PROTEIN ARGININE METHYLTRANSFERASE 1 (PRMT1), BECAUSE BOTH ENZYMES ARE DYSREGULATED IN CHRONIC HEPATITIS C, AND BOTH ENZYMES HAVE BEEN INVOLVED IN CHROMATIN REMODELING AND DNA DAMAGE REPAIR. WE USED CELL LINES THAT ALLOW THE INDUCIBLE EXPRESSION OF HEPATITIS C VIRUS PROTEINS (UHCV57.3) AND OF THE CATALYTIC SUBUNIT OF PP2A (UPP2A-C8) AS WELL AS HUH7.5 CELLS INFECTED WITH RECOMBINANT CELL CULTURE-DERIVED HEPATITIS C VIRUS (HCVCC) TO STUDY EPIGENETIC HISTONE MODIFICATIONS AND DNA DAMAGE REPAIR. THE INDUCTION OF VIRAL PROTEINS, THE OVEREXPRESSION OF PP2AC, OR THE INFECTION OF HUH7.5 CELLS WITH HCVCC RESULTED IN AN INHIBITION OF HISTONE H4 METHYLATION/ACETYLATION AND HISTONE H2AX PHOSPHORYLATION, IN A SIGNIFICANTLY CHANGED EXPRESSION OF GENES IMPORTANT FOR HEPATOCARCINOGENESIS, AND INHIBITED DNA DAMAGE REPAIR. OVEREXPRESSION OF PP2AC IN NIH-3T3 CELLS INCREASED ANCHORAGE-INDEPENDENT GROWTH. THESE CHANGES WERE PARTIALLY REVERSED BY THE TREATMENT OF CELLS WITH THE METHYL-GROUP DONOR S-ADENOSYL-L-METHIONINE (SAME). CONCLUSION: HEPATITIS C VIRUS-INDUCED OVEREXPRESSION OF PP2AC CONTRIBUTES TO HEPATOCARCINOGENESIS THROUGH DYSREGULATION OF EPIGENETIC HISTONE MODIFICATIONS. THE CORRECTION OF DEFECTIVE HISTONE MODIFICATIONS BY S-ADENOSYL-L-METHIONINE MAKES THIS DRUG A CANDIDATE FOR CHEMOPREVENTIVE THERAPIES IN PATIENTS WITH CHRONIC HEPATITIS C WHO ARE AT RISK FOR DEVELOPING HEPATOCELLULAR CARCINOMA. 2010