1 2809 148 FGF1 AMELIORATES OBESITY-ASSOCIATED HEPATIC STEATOSIS BY REVERSING IGFBP2 HYPERMETHYLATION. OBESITY IS A MAJOR CONTRIBUTING FACTOR FOR METABOLIC-ASSOCIATED FATTY LIVER DISEASE (MAFLD). FIBROBLAST GROWTH FACTOR (FGF) 1 IS THE FIRST PARACRINE FGF FAMILY MEMBER IDENTIFIED TO EXHIBIT PROMISING METABOLIC REGULATORY PROPERTIES CAPABLE OF CONFERRING GLUCOSE-LOWERING AND INSULIN-SENSITIZING EFFECT. THIS STUDY EXPLORES THE ROLE AND MOLECULAR UNDERPINNINGS OF FGF1 IN OBESITY-ASSOCIATED HEPATIC STEATOSIS. IN A MOUSE HIGH-FAT DIET (HFD)-INDUCED MAFLD MODEL, CHRONIC TREATMENT WITH RECOMBINANT FGF1(RFGF1) WAS FOUND TO EFFECTIVELY REDUCE THE SEVERITY OF INSULIN RESISTANCE, HYPERLIPIDEMIA, AND INFLAMMATION. FGF1 TREATMENT DECREASED LIPID ACCUMULATION IN THE MOUSE LIVER AND PALMITIC ACID-TREATED AML12 CELLS. THESE EFFECTS WERE ASSOCIATED WITH DECREASED MATURE FORM SREBF1 EXPRESSION AND ITS TARGET GENES FASN AND SCD1. INTERESTINGLY, WE UNCOVERED THAT RFGF1 SIGNIFICANTLY INDUCED IGFBP2 EXPRESSION AT BOTH MRNA AND PROTEIN LEVELS IN HFD-FED MOUSE LIVERS AND CULTURED HEPATOCYTES TREATED WITH PALMITIC ACID. ADENO-ASSOCIATED VIRUS-MEDIATED IGFBP2 SUPPRESSION SIGNIFICANTLY DIMINISHED THE THERAPEUTIC BENEFIT OF RFGF1 ON MAFLD-ASSOCIATED PHENOTYPES, INDICATING THAT IGFBP2 PLAYS A CRUCIAL ROLE IN THE FGF1-MEDIATED REDUCTION OF HEPATIC STEATOSIS. FURTHER ANALYSIS REVEALED THAT RFGF1 TREATMENT REDUCES THE RECRUITMENT OF DNA METHYLTRANSFERASE 3 ALPHA TO THE IGFBP2 GENOMIC LOCUS, LEADING TO DECREASED IGFBP2 GENE METHYLATION AND INCREASED MRNA AND PROTEIN EXPRESSION. COLLECTIVELY, OUR FINDINGS REVEAL FGF1 MODULATION OF LIPID METABOLISM VIA EPIGENETIC REGULATION OF IGFBP2 EXPRESSION, AND UNRAVEL THE THERAPEUTIC POTENTIAL OF THE FGF1-IGFBP2 AXIS IN METABOLIC DISEASES ASSOCIATED WITH OBESITY. 2023 2 6385 50 THE ROLE OF PROMYELOCYTIC LEUKEMIA PROTEIN IN STEATOSIS-ASSOCIATED HEPATIC TUMORS RELATED TO CHRONIC HEPATITIS B VIRUS INFECTION. THE PERSISTENCE OF HEPATITIS B SURFACE ANTIGEN (HBSAG) IS A RISK FACTOR FOR THE DEVELOPMENT OF STEATOSIS-ASSOCIATED TUMORS IN CHRONIC HEPATITIS B VIRUS (HBV) INFECTION, YET LITTLE IS KNOWN ABOUT THE METABOLIC LINK WITH THIS FACTOR. WE CORRELATED HBV-RELATED PATHOGENESIS IN GENETICALLY ENGINEERED MICE AND HUMAN CARRIERS WITH METABOLIC PROTEOMICS AND LIPOGENIC GENE EXPRESSION PROFILES. THE IMMUNOHISTOCHEMISTRY SHOWED THAT THE PROMYELOCYTIC LEUKEMIA PROTEIN (PML, A TUMOR SUPPRESSOR INVOLVED IN GENOME MAINTENANCE AND FATTY ACID OXIDATION), BEING INVERSELY INFLUENCED BY THE DYNAMIC HBSAG LEVELS FROM ACUTE PHASE TO SEROCLEARANCE, APPEARED AS A LIPO-METABOLIC SWITCH LINKING HBSAG-INDUCED STEATOSIS (LIPOGENESIS) TO HBSAG-LOST FAT-BURNING HEPATOCARCINOGENESIS (LIPOLYSIS). KNOCKDOWN OF PML IN HBSAG-TRANSGENIC MICE PREDISPOSED TO OBESITY AND DROVE EARLY STEATOSIS-SPECIFIC LIVER TUMORIGENESIS. PROTEOME ANALYSIS REVEALED THAT THE SIGNALING PATHWAYS CORRESPONDING TO ENERGY METABOLISM AND ITS REGULATORS WERE FREQUENTLY ALTERED BY SUPPRESSION OR DEPLETION OF PML IN THE HBSAG-TRANSGENIC MICE, MAINLY INCLUDING OXIDATIVE PHOSPHORYLATION AND FATTY ACID METABOLISM. EXPRESSION PROFILING FURTHER IDENTIFIED UPREGULATION OF STEAROYL-COA DESATURASE 1 (SCD1) AND EPIGENETIC METHYLATION OF NDUFA13 IN THE MITOCHONDRIAL RESPIRATORY CHAIN AND THE CELL CYCLE INHIBITOR CDKN1C IN CONCORDANCE TO THE INCREASED SEVERITY OF LIPODYSTROPHY AND NEOPLASIA IN THE LIVERS OF HBSAG-TRANSGENIC MICE WITH PML INSUFFICIENCY. THE DEFECT IN LIPOLYSIS IN PML-DEFICIENT HBSAG-TRANSGENIC MICE MADE THE HBSAG-INDUCED ADIPOSE-LIKE LIVER TUMORS VULNERABLE TO SYNTHETIC LETHALITY FROM TOXIC SATURATED FAT ACCUMULATION WITH A SCD1 INHIBITOR. OUR FINDINGS PROVIDE MECHANISTIC INSIGHTS INTO THE EVOLUTION OF STEATOSIS-ASSOCIATED HEPATIC TUMORS DRIVEN BY RECIPROCAL INTERACTIONS OF HBSAG AND PML, AND A POTENTIAL UTILITY OF LIPID METABOLIC REPROGRAMMING AS A TREATMENT TARGET. 2018 3 2427 38 EPIGENETIC SILENCING OF MICRORNA-125B-5P PROMOTES LIVER FIBROSIS IN NONALCOHOLIC FATTY LIVER DISEASE VIA INTEGRIN ALPHA8-MEDIATED ACTIVATION OF RHOA SIGNALING PATHWAY. BACKGROUND: NONALCOHOLIC FATTY LIVER DISEASE (NAFLD) IS ONE OF THE MOST COMMON CHRONIC LIVER DISEASES THAT MAY PROGRESS TO LIVER FIBROSIS OR CANCER. THE PRESENT STUDY AIMED TO INVESTIGATE THE ROLE OF MICRORNA-125B-5P (MIR-125B-5P) IN NAFLD AND TO FURTHER EXPLORE UNDERLYING MOLECULAR MECHANISMS. METHODS: A MOUSE MODEL OF NAFLD WAS CONSTRUCTED BY HIGH CHOLESTEROL DIET FEEDING AND A CELL-MODEL WAS DEVELOPED BY TREATING THE MOUSE LIVER CELL LINE NCTC1469 WITH PALMITIC ACID. GAIN- AND LOSS-OF-FUNCTION EXPERIMENTS WERE PERFORMED TO DETERMINE THE EFFECTS OF MIR-125B-5P, INTEGRIN ALPHA8 (ITGA8), AND THE RHOA SIGNALING PATHWAY ON LIVER FIBROSIS IN NAFLD. AFTER THE EXPRESSION LEVELS OF MIR-125B-5P, ITGA8, AND RHOA WERE DETERMINED, LIVER FIBROSIS WAS EVALUATED IN VIVO AND IN VITRO. THE BINDING RELATIONSHIP OF MIR-125B-5P AND ITGA8 WAS THEN VALIDATED. FINALLY, MIR-125B-5P PROMOTER METHYLATION IN NAFLD LIVER TISSUES AND CELLS WAS DETERMINED. RESULTS: IN NAFLD CLINICAL SAMPLES, MOUSE MODEL, AND CELL-MODEL, MIR-125B-5P EXPRESSION WAS REDUCED, WHILE ITGA8 EXPRESSION WAS INCREASED. MOREOVER, MIR-125B-5P TARGETED AND DOWNREGULATED ITGA8, LEADING TO INHIBITION OF THE RHOA SIGNALING PATHWAY. IN NAFLD LIVER TISSUES AND CELLS, THE CPG ISLAND IN THE MIR-125B-5P PROMOTER WAS METHYLATED, CAUSING EPIGENETIC SILENCING OF MIR-125B-5P. BOTH MIR-125B-5P SILENCING AND ITGA8 OVEREXPRESSION PROMOTED IN VITRO AND IN VIVO LIVER FIBROSIS IN NAFLD VIA ACTIVATION OF THE RHOA SIGNALING PATHWAY. CONCLUSIONS: COLLECTIVELY, EPIGENETIC SILENCING OF MIR-125B-5P UPREGULATES ITGA8 EXPRESSION TO ACTIVATE THE RHOA SIGNALING PATHWAY, LEADING TO LIVER FIBROSIS IN NAFLD. 2020 4 3237 43 HEPATIC COX-2 EXPRESSION PROTECTS MICE FROM AN ALCOHOL-HIGH FAT DIET-INDUCED METABOLIC DISORDER BY INVOLVING PROTEIN ACETYLATION RELATED ENERGY METABOLISM. PURPOSE: A DIET HIGH IN FAT AND ETHANOL OFTEN RESULTS IN CHRONIC METABOLIC DISORDER, HEPATIC STEATOSIS, AND LIVER INFLAMMATION. CONSTITUTIVE HEPATIC CYCLOOXYGENASE-2 (COX-2) EXPRESSION COULD PROTECT FROM HIGH FAT-INDUCED METABOLISM DISTURBANCE IN A MURINE MODEL. IN THIS STUDY, WE EXPLORED THE INFLUENCE OF HCOX-2 TRANSGENIC [TG] TO HIGH FAT WITH ETHANOL-INDUCED METABOLIC DISORDER AND LIVER INJURY USING A MOUSE ANIMAL MODEL. METHODS: 12-WEEK-OLD MALE HEPATIC HCOX-2 TRANSGENIC (TG) OR WILD TYPE MICE (WT) WERE FED EITHER A HIGH FAT AND ETHANOL LIQUID DIET (HF+ETH) OR A REGULAR CONTROL DIET (RCD) FOR 5 WEEKS (FOUR GROUPS: RCD/WT, RCD/TG; HF+ETH/TG, HF+ETH/WT). WE ASSESSED METABOLIC BIOMARKERS, CYTOKINE PROFILES, HISTOMORPHOLOGY, AND GENE EXPRESSION TO STUDY THE IMPACT OF PERSISTENT HEPATIC COX-2 EXPRESSION ON DIET-INDUCED LIVER INJURY. RESULTS: IN THE HF+ETH DIET, CONSTITUTIVELY HEPATIC HUMAN COX-2 EXPRESSION PROTECTS MICE FROM BODY WEIGHT GAIN AND WHITE ADIPOSE TISSUE ACCUMULATION, ACCOMPANIED BY IMPROVED IPGTT RESPONSE, SERUM TRIGLYCERIDE/CHOLESTEROL LEVELS, AND LOWER LEVELS OF SERUM AND LIVER INFLAMMATORY CYTOKINES. HISTOLOGICALLY, HCOX-2 MICE SHOWED DECREASED HEPATIC LIPID DROPLETS ACCUMULATION, DECREASED HEPATOCYTE BALLOONING, AND IMPROVED STEATOSIS SCORES. HEPATIC HCOX-2 OVEREXPRESSION ENHANCED AKT INSULIN SIGNALING AND INCREASED FATTY ACID SYNTHESIS IN BOTH RCD AND HF+ETH DIET GROUPS. THE ANTI-LIPOGENIC EFFECT OF HCOX-2 TG IN THE HF+ETH DIET ANIMALS WAS MEDIATED BY INCREASING LIPID DISPOSAL THROUGH ENHANCED BETA-OXIDATION VIA ELEVATIONS IN THE EXPRESSION OF PPARALPHA AND PPARGAMMA, AND INCREASED HEPATIC AUTOPHAGY AS ASSESSED BY THE RATIO OF AUTOPHAGY MARKERS LC3 II/I IN HEPATIC TISSUE. VARIOUS PROTEIN ACETYLATION PATHWAY COMPONENTS, INCLUDING HAT, HDAC1, SIRT1, AND SNAIL1, WERE MODULATED IN HCOX-2 TG MICE IN EITHER RCD OR HF+ETH DIET. CONCLUSIONS: HEPATIC HUMAN COX-2 EXPRESSION PROTECTED MICE FROM THE METABOLIC DISORDER AND LIVER INJURY INDUCED BY A HIGH FAT AND ETHANOL DIET BY ENHANCING HEPATIC LIPID EXPENDITURE. EPIGENETIC REPROGRAMMING OF DIVERSE METABOLIC GENES MIGHT BE INVOLVED IN THE ANTI-LIPOGENIC EFFECT OF COX-2. 2021 5 222 31 ACUTE LIVER STEATOSIS TRANSLATIONALLY CONTROLS THE EPIGENETIC REGULATOR MIER1 TO PROMOTE LIVER REGENERATION IN A STUDY WITH MALE MICE. THE EARLY PHASE LIPID ACCUMULATION IS ESSENTIAL FOR LIVER REGENERATION. HOWEVER, WHETHER THIS ACUTE LIPID ACCUMULATION CAN SERVE AS SIGNALS TO DIRECT LIVER REGENERATION RATHER THAN SIMPLY PROVIDING BUILDING BLOCKS FOR CELL PROLIFERATION REMAINS UNCLEAR. THROUGH IN VIVO CRISPR SCREENING, WE IDENTIFY MIER1 (MESODERM INDUCTION EARLY RESPONSE 1) AS A KEY EPIGENETIC REGULATOR THAT BRIDGES THE ACUTE LIPID ACCUMULATION AND CELL CYCLE GENE EXPRESSION DURING LIVER REGENERATION IN MALE ANIMALS. PHYSIOLOGICALLY, LIVER ACUTE LIPID ACCUMULATION INDUCES THE PHOSPHORYLATION OF EIF2S1(EUKARYOTIC TRANSLATION INITIATION FACTOR 2), WHICH CONSEQUENTLY ATTENUATED MIER1 TRANSLATION. MIER1 DOWNREGULATION IN TURN PROMOTES CELL CYCLE GENE EXPRESSION AND REGENERATION THROUGH CHROMATIN REMODELING. IMPORTANTLY, THE LIPIDS-EIF2S1-MIER1 PATHWAY IS IMPAIRED IN ANIMALS WITH CHRONIC LIVER STEATOSIS; WHEREAS MIER1 DEPLETION SIGNIFICANTLY IMPROVES REGENERATION IN THESE ANIMALS. TAKEN TOGETHER, OUR STUDIES IDENTIFY AN EPIGENETIC MECHANISM BY WHICH THE EARLY PHASE LIPID REDISTRIBUTION FROM ADIPOSE TISSUE TO LIVER DURING REGENERATION IMPACTS HEPATOCYTE PROLIFERATION, AND SUGGEST A POTENTIAL STRATEGY TO BOOST LIVER REGENERATION. 2023 6 3354 37 HISTONE DEMETHYLATION PROFILES IN NONALCOHOLIC FATTY LIVER DISEASE AND PROGNOSTIC VALUES IN HEPATOCELLULAR CARCINOMA: A BIOINFORMATIC ANALYSIS. NONALCOHOLIC FATTY LIVER DISEASE (NAFLD) IS THE MOST COMMON CHRONIC LIVER DISEASE WITH MULTIFACTORIAL PATHOGENESIS; HISTONE DEMETHYLASES (HDMS) ARE EMERGING AS ATTRACTIVE TARGETS. WE IDENTIFIED HDM GENES (INCLUDING KDM5C, KDM6B, KDM8, KDM4A, AND JMJD7) THAT WERE DIFFERENTIALLY EXPRESSED IN NAFLD AND NORMAL SAMPLES BY EXPLORING GENE EXPRESSION PROFILING DATASETS. THERE WAS NO SIGNIFICANT DIFFERENCE IN THE EXPRESSION OF GENES RELATED TO HISTONE DEMETHYLATION BETWEEN MILD AND ADVANCED NAFLD. IN VITRO AND IN VIVO STUDIES INDICATED THAT KDM6B AND JMJD7 WERE UPREGULATED AT THE MRNA LEVEL IN NAFLD. WE EXPLORED THE EXPRESSION LEVELS AND PROGNOSTIC VALUES OF THE IDENTIFIED HDM GENES IN HEPATOCELLULAR CARCINOMA (HCC). KDM5C AND KDM4A WERE UPREGULATED IN HCC COMPARED TO NORMAL TISSUE, WHILE KDM8 SHOWED DOWNREGULATION. THE ABNORMAL EXPRESSION LEVELS OF THESE HDMS COULD PROVIDE PROGNOSTIC VALUES. FURTHERMORE, KDM5C AND KDM4A WERE ASSOCIATED WITH IMMUNE CELL INFILTRATION IN HCC. HDMS WERE ASSOCIATED WITH CELLULAR AND METABOLIC PROCESSES AND MAY BE INVOLVED IN THE REGULATION OF GENE EXPRESSION. DIFFERENTIALLY EXPRESSED HDM GENES IDENTIFIED IN NAFLD MAY PROVIDE VALUE TO UNDERSTANDING PATHOGENESIS AND IN THE DEVELOPMENT OF EPIGENETIC THERAPEUTIC TARGETS. HOWEVER, ON THE BASIS OF THE INCONSISTENT RESULTS OF IN VITRO STUDIES, FUTURE IN VIVO EXPERIMENTS COMBINED WITH TRANSCRIPTOMIC ANALYSIS ARE NEEDED FOR FURTHER VALIDATION. 2023 7 3243 36 HEPATIC STEATOSIS IN HEPATITIS C IS A STORAGE DISEASE DUE TO HCV INTERACTION WITH MICROSOMAL TRIGLYCERIDE TRANSFER PROTEIN (MTP). LIVER STEATOSIS IS A FREQUENT HISTOLOGICAL FEATURE IN PATIENTS CHRONICALLY INFECTED WITH HEPATITIS C VIRUS (HCV). THE RELATIONSHIP BETWEEN HCV AND HEPATIC STEATOSIS SEEMS TO BE THE RESULT OF BOTH EPIGENETIC AND GENETIC FACTORS. IN VIVO AND IN VITRO STUDIES HAVE SHOWN THAT HCV CAN ALTER INTRAHEPATIC LIPID METABOLISM BY AFFECTING LIPID SYNTHESIS, OXIDATIVE STRESS, LIPID PEROXIDATION, INSULIN RESISTANCE AND THE ASSEMBLY AND SECRETION OF VLDL. MANY STUDIES SUGGEST THAT HCV-RELATED STEATOSIS MIGHT BE THE RESULT OF A DIRECT INTERACTION BETWEEN THE VIRUS AND MTP. IT HAS BEEN DEMONSTRATED THAT MTP IS CRITICAL FOR THE SECRETION OF HCV PARTICLES AND THAT INHIBITION OF ITS LIPID TRANSFER ACTIVITY REDUCES HCV PRODUCTION. HOWEVER, HIGHER DEGREES OF HEPATIC STEATOSIS WERE FOUND IN CHRONIC HEPATITIS C PATIENTS CARRYING THE T ALLELE OF MTP -493G/T POLYMORPHISM THAT SEEMS TO BE ASSOCIATED WITH INCREASED MTP TRANSCRIPTION. WE PROPOSE HERE THAT LIVER STEATOSIS IN HEPATITIS C COULD BE A STORAGE DISEASE INDUCED BY THE EFFECTS OF THE VIRUS AND OF ITS PROTEINS ON THE INTRACELLULAR LIPID MACHINERY AND ON MTP. AVAILABLE DATA SUPPORT THE HYPOTHESIS THAT HCV MAY MODULATE MTP EXPRESSION AND ACTIVITY THROUGH A NUMBER OF MECHANISMS SUCH AS INHIBITION OF ITS ACTIVITY AND TRANSCRIPTIONAL CONTROL. INITIAL UP REGULATION COULD FAVOUR PROPAGATION OF HCV WHILE DOWN REGULATION IN CHRONIC PHASE COULD CAUSE IMPAIRMENT OF TRIGLYCERIDE SECRETION AND EXCESSIVE LIPID ACCUMULATION, WITH ABNORMAL LIPID DROPLETS FACILITATING THE "STORAGE" OF VIRUS PARTICLES FOR PERSISTENT INFECTION. 2010 8 4233 37 METHYLATION OF SEPTIN9 MEDIATED BY DNMT3A ENHANCES HEPATIC STELLATE CELLS ACTIVATION AND LIVER FIBROGENESIS. LIVER FIBROSIS, RESULTING FROM CHRONIC AND PERSISTENT INJURY TO THE LIVER, IS A WORLDWIDE HEALTH PROBLEM. ADVANCED LIVER FIBROSIS RESULTS IN CIRRHOSIS, LIVER FAILURE AND EVEN HEPATOCELLULAR CANCER (HCC), OFTEN EVENTUALLY REQUIRING LIVER TRANSPLANTATION, POSES A HUGE HEALTH BURDEN ON THE GLOBAL COMMUNITY. HOWEVER, THE SPECIFIC PATHOGENESIS OF LIVER FIBROSIS REMAINS NOT FULLY UNDERSTOOD. NUMEROUS BASIC AND CLINICAL STUDIES HAVE PROVIDED EVIDENCE THAT EPIGENETIC MODIFICATIONS, ESPECIALLY DNA METHYLATION, MIGHT CONTRIBUTE TO THE ACTIVATION OF HEPATIC STELLATE CELLS (HSCS), THE PIVOTAL CELL TYPE RESPONSIBLE FOR THE FIBROUS SCAR IN LIVER. HERE, REDUCED REPRESENTATION BISULFITE SEQUENCING (RRBS) AND BISULFITE PYROSEQUENCING PCR (BSP) ANALYSIS IDENTIFIED HYPERMETHYLATION STATUS OF SEPTIN9 (SEPT9) GENE IN LIVER FIBROGENESIS. SEPT9 PROTEIN WAS DRAMATICALLY DECREASED IN LIVERS OF CCL4-TREATED MICE AND IMMORTALIZED HSC-T6 CELLS EXPOSED TO TGF-BETA1. NEVERTHELESS, THE SUPPRESSION OF SEPT9 COULD BE BLOCKED BY DNMT3A-SIRNA AND DNA METHYLTRANSFERASE INHIBITOR, 5-AZA-2'-DEOXYCYTIDINE (5-AZADC). OVEREXPRESSED SEPT9 ATTENUATED TGF-BETA1-INDUCED EXPRESSION OF MYOFIBROBLAST MARKERS ALPHA-SMA AND COL1A1, ACCOMPANIED BY UP-REGULATION OF CELL APOPTOSIS-RELATED PROTEINS. CONVERSELY, RNAI-MEDIATED SILENCING OF SEPT9 ENHANCED ACCUMULATION OF EXTRACELLULAR MATRIX. THESE OBSERVATIONS SUGGESTED THAT SEPT9 CONTRIBUTED TO ALLEVIATE LIVER FIBROSIS MIGHT PARTIALLY THROUGH PROMOTING ACTIVATED HSCS APOPTOSIS AND THIS ANTI-FIBROGENESIS EFFECT MIGHT BE BLOCKED BY DNMT-3A MEDIATED METHYLATION OF SEPT9. THEREFORE, PHARMACOLOGICAL AGENTS THAT INHIBIT SEPT9 METHYLATION AND INCREASE ITS EXPRESSION COULD BE CONSIDERED AS VALUABLE TREATMENTS FOR LIVER FIBROSIS. 2017 9 3049 39 GENOME-WIDE ANALYSIS REVEALS ZINC TRANSPORTER ZIP9 REGULATED BY DNA METHYLATION PROMOTES RADIATION-INDUCED SKIN FIBROSIS VIA THE TGF-BETA SIGNALING PATHWAY. RADIATION-INDUCED SKIN FIBROSIS IS A DETRIMENTAL AND CHRONIC DISORDER THAT OCCURS AFTER RADIATION EXPOSURE. DNA METHYLATION HAS BEEN CHARACTERIZED AS AN IMPORTANT REGULATORY MECHANISM OF MULTIPLE PATHOLOGICAL PROCESSES. IN THIS STUDY, WE COMPARED THE GENOME-WIDE DNA METHYLATION STATUS IN RADIATION-INDUCED FIBROTIC SKIN AND ADJACENT NORMAL TISSUES OF RATS BY METHYLATED DNA IMMUNOPRECIPITATION SEQUENCING. RADIATION-INDUCED FIBROTIC SKIN SHOWED DIFFERENTIALLY METHYLATED REGIONS ASSOCIATED WITH 3,650 PROTEIN-CODING GENES, 72 MICRORNAS, 5,836 LONG NONCODING RNAS AND 3 PIWI-INTERACTING RNAS. BY INTEGRATING THE MRNA AND METHYLATION PROFILES, THE ZINC TRANSPORTER SLC39A9/ZIP9 WAS INVESTIGATED IN GREATER DETAIL. THE PROTEIN LEVEL OF ZIP9 WAS INCREASED IN IRRADIATED SKIN TISSUES OF HUMANS, MONKEYS, AND RATS, ESPECIALLY IN RADIOGENIC FIBROTIC SKIN TISSUES. RADIATION INDUCED THE DEMETHYLATION OF A CPG DINUCLEOTIDE IN EXON 1 OF ZIP9 THAT RESULTED IN RECRUITMENT OF THE TRANSCRIPTIONAL FACTOR SP1 AND INCREASED ZIP9 EXPRESSION. OVEREXPRESSION OF ZIP9 RESULTED IN ACTIVATION OF THE PROFIBROTIC TRANSFORMING GROWTH FACTOR-BETA SIGNALING PATHWAY THROUGH PROTEIN KINASE B IN HUMAN FIBROBLASTS. IN ADDITION, RADIATION-INDUCED SKIN FIBROSIS WAS ASSOCIATED WITH INCREASED ZINC ACCUMULATION. THE ZINC CHELATOR N,N,N',N'-TETRAKIS(2-PYRIDYLMETHYL)-1,2-ETHYLENEDIAMINE ABROGATED ZIP9-INDUCED ACTIVATION OF THE TRANSFORMING GROWTH FACTOR-BETA SIGNALING PATHWAY AND ATTENUATED RADIATION-INDUCED SKIN FIBROSIS IN A RAT MODEL. IN SUMMARY, OUR FINDINGS ILLUSTRATE EPIGENETIC REGULATION OF ZIP9 AND ITS CRITICAL ROLE IN PROMOTING RADIATION-INDUCED SKIN FIBROSIS. 2020 10 1499 33 DNA METHYLATION ANALYSIS IN NONALCOHOLIC FATTY LIVER DISEASE SUGGESTS DISTINCT DISEASE-SPECIFIC AND REMODELING SIGNATURES AFTER BARIATRIC SURGERY. NONALCOHOLIC FATTY LIVER DISEASE (NAFLD) IS THE MOST COMMON CHRONIC LIVER DISORDER IN INDUSTRIALIZED COUNTRIES. LIVER SAMPLES FROM MORBIDLY OBESE PATIENTS (N = 45) WITH ALL STAGES OF NAFLD AND CONTROLS (N = 18) WERE ANALYZED BY ARRAY-BASED DNA METHYLATION AND MRNA EXPRESSION PROFILING. NAFLD-SPECIFIC EXPRESSION AND METHYLATION DIFFERENCES WERE SEEN FOR NINE GENES CODING FOR KEY ENZYMES IN INTERMEDIATE METABOLISM (INCLUDING PC, ACLY, AND PLCG1) AND INSULIN/INSULIN-LIKE SIGNALING (INCLUDING IGF1, IGFBP2, AND PRKCE) AND REPLICATED BY BISULFITE PYROSEQUENING (INDEPENDENT N = 39). TRANSCRIPTION FACTOR BINDING SITES AT NAFLD-SPECIFIC CPG SITES WERE >1,000-FOLD ENRICHED FOR ZNF274, PGC1A, AND SREBP2. INTRAINDIVIDUAL COMPARISON OF LIVER BIOPSIES BEFORE AND AFTER BARIATRIC SURGERY SHOWED NAFLD-ASSOCIATED METHYLATION CHANGES TO BE PARTIALLY REVERSIBLE. POSTBARIATRIC AND NAFLD-SPECIFIC METHYLATION SIGNATURES WERE CLEARLY DISTINCT BOTH IN GENE ONTOLOGY AND TRANSCRIPTION FACTOR BINDING SITE ANALYSES, WITH >400-FOLD ENRICHMENT OF NRF1, HSF1, AND ESRRA SITES. OUR FINDINGS PROVIDE AN EXAMPLE OF TREATMENT-INDUCED EPIGENETIC ORGAN REMODELING IN HUMANS. 2013 11 3327 35 HISTONE DEACETYLASE 4 PROMOTES CHOLESTATIC LIVER INJURY IN THE ABSENCE OF PROHIBITIN-1. PROHIBITIN-1 (PHB1) IS AN EVOLUTIONARILY CONSERVED PLEIOTROPIC PROTEIN THAT PARTICIPATES IN DIVERSE PROCESSES DEPENDING ON ITS SUBCELLULAR LOCALIZATION AND INTERACTOME. RECENT DATA HAVE INDICATED A DIVERSE ROLE FOR PHB1 IN THE PATHOGENESIS OF OBESITY, CANCER, AND INFLAMMATORY BOWEL DISEASE, AMONG OTHERS. DATA PRESENTED HERE SUGGEST THAT PHB1 IS ALSO LINKED TO CHOLESTATIC LIVER DISEASE. EXPRESSION OF PHB1 IS MARKEDLY REDUCED IN PATIENTS WITH PRIMARY BILIARY CIRRHOSIS AND BILIARY ATRESIA OR WITH ALAGILLE SYNDROME, TWO MAJOR PEDIATRIC CHOLESTATIC CONDITIONS. IN THE EXPERIMENTAL MODEL OF BILE DUCT LIGATION, SILENCING OF PHB1 INDUCED LIVER FIBROSIS, REDUCED ANIMAL SURVIVAL, AND INDUCED BILE DUCT PROLIFERATION. IMPORTANTLY, THE MODULATORY EFFECT OF PHB1 IS NOT DEPENDENT ON ITS KNOWN MITOCHONDRIAL FUNCTION. ALSO, PHB1 INTERACTS WITH HISTONE DEACETYLASE 4 (HDAC4) IN THE PRESENCE OF BILE ACIDS. HENCE, PHB1 DEPLETION LEADS TO INCREASED NUCLEAR HDAC4 CONTENT AND ITS ASSOCIATED EPIGENETIC CHANGES. REMARKABLY, HDAC4 SILENCING AND THE ADMINISTRATION OF THE HDAC INHIBITOR PARTHENOLIDE DURING OBSTRUCTIVE CHOLESTASIS IN VIVO PROMOTE GENOMIC REPROGRAMMING, LEADING TO REGRESSION OF THE FIBROTIC PHENOTYPE IN LIVER-SPECIFIC PHB1 KNOCKOUT MICE. CONCLUSION: PHB1 IS AN IMPORTANT MEDIATOR OF CHOLESTATIC LIVER INJURY THAT REGULATES THE ACTIVITY OF HDAC4, WHICH CONTROLS SPECIFIC EPIGENETIC MARKERS; THESE RESULTS IDENTIFY POTENTIAL NOVEL STRATEGIES TO TREAT LIVER INJURY AND FIBROSIS, PARTICULARLY AS A CONSEQUENCE OF CHRONIC CHOLESTASIS. 2015 12 4020 36 LOW-MOLECULAR-WEIGHT FIBROBLAST GROWTH FACTOR 2 ATTENUATES HEPATIC FIBROSIS BY EPIGENETIC DOWN-REGULATION OF DELTA-LIKE1. LIVER FIBROSIS, A MAJOR CAUSE OF END-STAGE LIVER DISEASES, IS CLOSELY REGULATED BY MULTIPLE GROWTH FACTORS AND CYTOKINES. THE CORRELATION OF FIBROBLAST GROWTH FACTOR 2 (FGF2) WITH CHRONIC LIVER INJURY HAS BEEN REPORTED, BUT THE EXACT FUNCTIONS OF DIFFERENT FGF2 ISOFORMS IN LIVER FIBROGENESIS REMAIN UNCLEAR. HERE, WE REPORT ON THE DIFFERENTIAL EXPRESSION PATTERNS AND FUNCTIONS OF LOW- AND HIGH-MOLECULAR-WEIGHT FGF2 (NAMELY, FGF2(LMW) AND FGF2(HMW) , RESPECTIVELY) IN HEPATIC FIBROGENESIS USING A CCL4 -INDUCED MOUSE LIVER FIBROSIS MODEL. FGF2(HMW) DISPLAYED A ROBUST INCREASE IN CCL4 -INDUCED HEPATIC FIBROSIS AND PROMOTED FIBROGENESIS. IN CONTRAST, ENDOGENOUS FGF2(LMW) EXHIBITED A SLIGHT INCREASE IN HEPATIC FIBROSIS AND SUPPRESSED THIS PATHOLOGICAL PROGRESSION. MOREOVER, EXOGENOUS ADMINISTRATION OF RECOMBINANT FGF2(LMW) POTENTLY AMELIORATED CCL4 -INDUCED LIVER FIBROSIS. MECHANISTICALLY, WE SHOWED THAT FGF2(LMW) TREATMENT ATTENUATED HEPATIC STELLATE CELL ACTIVATION AND FIBROSIS BY EPIGENETIC DOWN-REGULATION OF DELTA-LIKE 1 EXPRESSION THROUGH THE P38 MITOGEN-ACTIVATED PROTEIN KINASE PATHWAY. CONCLUSION: FGF2(LMW) AND FGF2(HMW) HAVE DISTINCT ROLES IN LIVER FIBROGENESIS. THESE FINDINGS DEMONSTRATE A POTENT ANTIFIBROTIC EFFECT OF FGF2(LMW) ADMINISTRATION, WHICH MAY PROVIDE A NOVEL APPROACH TO TREAT CHRONIC LIVER DISEASES. 2015 13 1634 39 DOCOSAHEXAENOIC ACID ALTERS LIPID METABOLISM PROCESSES VIA H3K9AC EPIGENETIC MODIFICATION IN DAIRY GOAT. GOAT MILK IS INCREASINGLY RECOGNIZED BY CONSUMERS DUE TO ITS HIGH NUTRITIONAL VALUE, RICHNESS IN SHORT- AND MEDIUM-CHAIN FATTY ACIDS, AND RICHNESS IN POLYUNSATURATED FATTY ACIDS (PUFA). EXOGENOUS SUPPLEMENTATION OF DOCOSAHEXAENOIC ACID (DHA) IS AN IMPORTANT APPROACH TO INCREASING THE CONTENT OF PUFA IN GOAT MILK. SEVERAL STUDIES HAVE REPORTED BENEFITS OF DIETARY DHA IN TERMS OF HUMAN HEALTH, INCLUDING POTENTIAL AGAINST CHRONIC DISEASES AND TUMORS. HOWEVER, THE MECHANISMS WHEREBY AN INCREASED SUPPLY OF DHA REGULATES MAMMARY CELL FUNCTION IS UNKNOWN. IN THIS STUDY, WE INVESTIGATED THE EFFECT OF DHA ON LIPID METABOLISM PROCESSES IN GOAT MAMMARY EPITHELIAL CELLS (GMEC) AND THE FUNCTION OF H3K9AC EPIGENETIC MODIFICATIONS IN THIS PROCESS. SUPPLEMENTATION OF DHA PROMOTED LIPID DROPLET ACCUMULATION INCREASED THE DHA CONTENT AND ALTERED FATTY ACID COMPOSITION IN GMEC. LIPID METABOLISM PROCESSES WERE ALTERED BY DHA SUPPLEMENTATION THROUGH TRANSCRIPTIONAL PROGRAMS IN GMEC. CHIP-SEQ ANALYSIS REVEALED THAT DHA INDUCED GENOME-WIDE H3K9AC EPIGENETIC CHANGES IN GMEC. MULTIOMICS ANALYSES (H3K9AC GENOME-WIDE SCREENING AND RNA-SEQ) REVEALED THAT DHA-INDUCED EXPRESSION OF LIPID METABOLISM GENES (FASN, SCD1, FADS1, FADS2, LPIN1, DGAT1, MBOAT2), WHICH WERE CLOSELY RELATED WITH CHANGES IN LIPID METABOLISM PROCESSES AND FATTY ACID PROFILES, WERE REGULATED BY MODIFICATION OF H3K9AC. IN PARTICULAR, DHA INCREASED THE ENRICHMENT OF H3K9AC IN THE PROMOTER REGION OF PDK4 AND PROMOTED ITS TRANSCRIPTION, WHILE PDK4 INHIBITED LIPID SYNTHESIS AND ACTIVATED AMPK SIGNALING IN GMEC. THE ACTIVATION OF THE EXPRESSION OF FATTY ACID METABOLISM-RELATED GENES FASN, FADS2, AND SCD1 AND THEIR UPSTREAM TRANSCRIPTION FACTOR SREBP1 BY THE AMPK INHIBITOR WAS ATTENUATED IN PDK4-OVEREXPRESSING GMEC. IN CONCLUSION, DHA ALTERS LIPID METABOLISM PROCESSES VIA H3K9AC MODIFICATIONS AND THE PDK4-AMPK-SREBP1 SIGNALING AXIS IN GOAT MAMMARY EPITHELIAL CELLS, PROVIDING NEW INSIGHTS INTO THE MECHANISM THROUGH WHICH DHA AFFECTS MAMMARY CELL FUNCTION AND REGULATES MILK FAT METABOLISM. 2023 14 984 36 CHRONIC PSYCHOLOGICAL STRESS ALTERS GENE EXPRESSION IN RAT COLON EPITHELIAL CELLS PROMOTING CHROMATIN REMODELING, BARRIER DYSFUNCTION AND INFLAMMATION. CHRONIC STRESS IS COMMONLY ASSOCIATED WITH ENHANCED ABDOMINAL PAIN (VISCERAL HYPERSENSITIVITY), BUT THE CELLULAR MECHANISMS UNDERLYING HOW CHRONIC STRESS INDUCES VISCERAL HYPERSENSITIVITY ARE POORLY UNDERSTOOD. IN THIS STUDY, WE EXAMINED CHANGES IN GENE EXPRESSION IN COLON EPITHELIAL CELLS FROM A RAT MODEL USING RNA-SEQUENCING TO EXAMINE STRESS-INDUCED CHANGES TO THE TRANSCRIPTOME. FOLLOWING CHRONIC STRESS, THE MOST SIGNIFICANTLY UP-REGULATED GENES INCLUDED ATG16L1, COQ10B, DCAF13, NAT2, PTBP2, RRAS2, SPINK4 AND DOWN-REGULATED GENES INCLUDING ABAT, CITED2, CNNM2, DAB2IP, PLEKHM1, SCD2, AND TAB2. THE PRIMARY ALTERED BIOLOGICAL PROCESSES REVEALED BY NETWORK ENRICHMENT ANALYSIS WERE INFLAMMATION/IMMUNE RESPONSE, TISSUE MORPHOGENESIS AND DEVELOPMENT, AND NUCLEOSOME/CHROMATIN ASSEMBLY. THE MOST SIGNIFICANTLY DOWN-REGULATED PROCESS WAS THE DIGESTIVE SYSTEM DEVELOPMENT/FUNCTION, WHEREAS THE MOST SIGNIFICANTLY UP-REGULATED PROCESSES WERE INFLAMMATORY RESPONSE, ORGANISMAL INJURY, AND CHROMATIN REMODELING MEDIATED BY H3K9 METHYLATION. FURTHERMORE, A SUBPOPULATION OF STRESSED RATS DEMONSTRATED VERY SIGNIFICANTLY ALTERED GENE EXPRESSION AND TRANSCRIPT ISOFORMS, ENRICHED FOR THE DIFFERENTIAL EXPRESSION OF GENES INVOLVED IN THE INFLAMMATORY RESPONSE, INCLUDING UPREGULATION OF CYTOKINE AND CHEMOKINE RECEPTOR GENE EXPRESSION COUPLED WITH DOWNREGULATION OF EPITHELIAL ADHERENS AND TIGHT JUNCTION MRNAS. IN SUMMARY, THESE FINDINGS SUPPORT THAT CHRONIC STRESS IS ASSOCIATED WITH INCREASED LEVELS OF CYTOKINES AND CHEMOKINES, THEIR DOWNSTREAM SIGNALING PATHWAYS COUPLED TO DYSREGULATION OF INTESTINAL CELL DEVELOPMENT AND FUNCTION. EPIGENETIC REGULATION OF CHROMATIN REMODELING LIKELY PLAYS A PROMINENT ROLE IN THIS PROCESS. RESULTS ALSO SUGGEST THAT SUPER ENHANCERS PLAY A PRIMARY ROLE IN CHRONIC STRESS-ASSOCIATED INTESTINAL BARRIER DYSFUNCTION. 2022 15 5332 39 PYRUVATE DEHYDROGENASE KINASE 1 AND 2 DEFICIENCY REDUCES HIGH-FAT DIET-INDUCED HYPERTROPHIC OBESITY AND INHIBITS THE DIFFERENTIATION OF PREADIPOCYTES INTO MATURE ADIPOCYTES. OBESITY IS NOW RECOGNIZED AS A DISEASE. THIS STUDY REVEALED A NOVEL ROLE FOR PYRUVATE DEHYDROGENASE KINASE (PDK) IN DIET-INDUCED HYPERTROPHIC OBESITY. MICE WITH GLOBAL OR ADIPOSE TISSUE-SPECIFIC PDK2 DEFICIENCY WERE PROTECTED AGAINST DIET-INDUCED OBESITY. THE WEIGHT OF ADIPOSE TISSUES AND THE SIZE OF ADIPOCYTES WERE REDUCED. ADIPOCYTE-SPECIFIC PDK2 DEFICIENCY SLIGHTLY INCREASED INSULIN SENSITIVITY IN HFD-FED MICE. IN STUDIES WITH 3T3-L1 PREADIPOCYTES, PDK2 AND PDK1 EXPRESSION WAS STRONGLY INCREASED DURING ADIPOGENESIS. EVIDENCE WAS FOUND FOR EPIGENETIC INDUCTION OF BOTH PDK1 AND PDK2. GAIN- AND LOSS-OF-FUNCTION STUDIES WITH 3T3-L1 CELLS REVEALED A CRITICAL ROLE FOR PDK1/2 IN ADIPOCYTE DIFFERENTIATION AND LIPID ACCUMULATION. PDK1/2 INDUCTION DURING DIFFERENTIATION WAS ALSO ACCOMPANIED BY INCREASED EXPRESSION OF HYPOXIA-INDUCIBLE FACTOR-1ALPHA (HIF1ALPHA) AND ENHANCED LACTATE PRODUCTION, BOTH OF WHICH WERE ABSENT IN THE CONTEXT OF PDK1/2 DEFICIENCY. EXOGENOUS LACTATE SUPPLEMENTATION INCREASED THE STABILITY OF HIF1ALPHA AND PROMOTED ADIPOGENESIS. PDK1/2 OVEREXPRESSION-MEDIATED ADIPOGENESIS WAS ABOLISHED BY HIF1ALPHA INHIBITION, SUGGESTING A ROLE FOR THE PDK-LACTATE-HIF1ALPHA AXIS DURING ADIPOGENESIS. IN HUMAN ADIPOSE TISSUE, THE EXPRESSION OF PDK1/2 WAS POSITIVELY CORRELATED WITH THAT OF THE ADIPOGENIC MARKER PPARGAMMA AND INVERSELY CORRELATED WITH OBESITY. SIMILARLY, PDK1/2 EXPRESSION IN MOUSE ADIPOSE TISSUE WAS DECREASED BY CHRONIC HIGH-FAT DIET FEEDING. WE CONCLUDE THAT PDK1 AND 2 ARE NOVEL REGULATORS OF ADIPOGENESIS THAT PLAY CRITICAL ROLES IN OBESITY. 2021 16 3128 46 GIPC-REGULATED IGFBP-3 PROMOTES HSC MIGRATION IN VITRO AND PORTAL HYPERTENSION IN VIVO THROUGH A BETA1-INTEGRIN PATHWAY. BACKGROUND & AIMS: TRANSFORMING GROWTH FACTOR (TGF-BETA)-INDUCED ACTIVATION OF QUIESCENT HEPATIC STELLATE CELLS (HSCS) AND THEIR TRANSFORMATION TO MYOFIBROBLASTS IS A KEY EVENT IN LIVER FIBROSIS AND PORTAL HYPERTENSION. GIPC (ALSO REFERRED TO AS SYNECTIN) IS A DOWNSTREAM SIGNAL ACTIVATION MOLECULE OF TGF-BETA AND OTHER RECEPTORS. IN THIS STUDY, WE SOUGHT TO IDENTIFY NOVEL GENES TARGETED BY TGF-BETA AND GIPC AND ELUCIDATE IF AND HOW THEY MAY CONTRIBUTE TO LIVER FIBROSIS. METHODS: WE PERFORMED SEQUENTIAL MESSENGER RNA SEQUENCING ANALYSIS ON TGF-BETA-STIMULATED HSCS AND THEN ON TGF-BETA-STIMULATED HSCS IN THE PRESENCE AND ABSENCE OF GIPC ALSO REFERRED TO AS SYNECTIN (GIPC) KNOCKDOWN. INSULIN-LIKE GROWTH FACTOR BINDING PROTEIN-3 (IGFBP-3) TRANSPORT PROTEIN EMERGED AS A TOP ACTIVATION TARGET OF BOTH TGF-BETA AND GIPC. QUANTITATIVE POLYMERASE CHAIN REACTION, ENZYME-LINKED IMMUNOSORBENT ASSAY, TARGETED CHROMATIN IMMUNOPRECIPITATION, AND WESTERN BLOT ANALYSIS WERE DONE FOR FURTHER CONFIRMATION. RESULTS: IGFBP-3, AN INSULIN GROWTH FACTOR TRANSPORT PROTEIN, EMERGED AS A TOP ACTIVATION TARGET OF BOTH TGF-BETA AND GIPC, WHICH WAS CONFIRMED BY QUANTITATIVE POLYMERASE CHAIN REACTION, ENZYME-LINKED IMMUNOSORBENT ASSAY, AND WESTERN BLOT ANALYSIS. TARGETED CHROMATIN IMMUNOPRECIPITATION SHOWED THAT GIPC INCREASES THE HISTONE 3 LYSINE 27 (H3K27) ACETYLATION ACTIVATING MARK AND CONCURRENTLY DECREASES THE H3K27 INHIBITORY TRIMETHYLATION (H3K27M3) MARK, PROVIDING AN EPIGENETIC CORRELATE TO THE GENE REGULATION CHANGES. IN VIVO, GLOBAL KNOCKOUT OF IGFBP-3 MICE RESULTED IN ATTENUATION OF HSC ACTIVATION MARKERS AND ATTENUATION OF PORTAL PRESSURE IN RESPONSE TO CHRONIC LIVER INJURY MODELS. ANALYSIS OF SERUM LEVELS FROM CIRRHOTIC PATIENTS ALSO SHOWED AN IGFBP-3 INCREASE OF MORE THAN 2-FOLD COMPARED WITH HEALTHY CONTROLS. FINALLY, IN VITRO MECHANISM STUDIES SHOWED THAT IGFBP-3 PROMOTES HSC MIGRATION THROUGH INTEGRIN-DEPENDENT PHOSPHORYLATION OF PROTEIN KINASE B. CONCLUSIONS: TGF-BETA UP-REGULATES IGFBP-3 THROUGH GIPC, LEADING TO INCREASED HSC MIGRATION IN VITRO AND PROMOTES PORTAL HYPERTENSION IN VIVO. THESE STUDIES SUPPORT THE ROLE OF IGFBP-3 AS A POTENTIAL PATHOPHYSIOLOGIC TARGET OR BIOMARKER IN CHRONIC LIVER DISEASE. 2020 17 3468 47 HYPOXIA-INDUCED DNA HYPERMETHYLATION IN HUMAN PULMONARY FIBROBLASTS IS ASSOCIATED WITH THY-1 PROMOTER METHYLATION AND THE DEVELOPMENT OF A PRO-FIBROTIC PHENOTYPE. BACKGROUND: PULMONARY FIBROSIS IS A DEBILITATING AND LETHAL DISEASE WITH NO EFFECTIVE TREATMENT OPTIONS. UNDERSTANDING THE PATHOLOGICAL PROCESSES AT PLAY WILL DIRECT THE APPLICATION OF NOVEL THERAPEUTIC AVENUES. HYPOXIA HAS BEEN IMPLICATED IN THE PATHOGENESIS OF PULMONARY FIBROSIS YET THE PRECISE MECHANISM BY WHICH IT CONTRIBUTES TO DISEASE PROGRESSION REMAINS TO BE FULLY ELUCIDATED. IT HAS BEEN SHOWN THAT CHRONIC HYPOXIA CAN ALTER DNA METHYLATION PATTERNS IN TUMOUR-DERIVED CELL LINES. THIS EPIGENETIC ALTERATION CAN INDUCE CHANGES IN CELLULAR PHENOTYPE WITH PROMOTER METHYLATION BEING ASSOCIATED WITH GENE SILENCING. OF PARTICULAR RELEVANCE TO IDIOPATHIC PULMONARY FIBROSIS (IPF) IS THE OBSERVATION THAT THY-1 PROMOTER METHYLATION IS ASSOCIATED WITH A MYOFIBROBLAST PHENOTYPE WHERE LOSS OF THY-1 OCCURS ALONGSIDE INCREASED ALPHA SMOOTH MUSCLE ACTIN (ALPHA-SMA) EXPRESSION. THE INITIAL AIM OF THIS STUDY WAS TO DETERMINE WHETHER HYPOXIA REGULATES DNA METHYLATION IN NORMAL HUMAN LUNG FIBROBLASTS (CCD19LU). AS IT HAS BEEN REPORTED THAT HYPOXIA SUPPRESSES THY-1 EXPRESSION DURING LUNG DEVELOPMENT WE ALSO STUDIED THE EFFECT OF HYPOXIA ON THY-1 PROMOTER METHYLATION AND GENE EXPRESSION. METHODS: CCD19LU WERE GROWN FOR UP TO 8 DAYS IN HYPOXIA AND ASSESSED FOR GLOBAL CHANGES IN DNA METHYLATION USING FLOW CYTOMETRY. REAL-TIME PCR WAS USED TO QUANTIFY EXPRESSION OF THY-1, ALPHA-SMA, COLLAGEN I AND III. GENOMIC DNA WAS BISULPHITE TREATED AND METHYLATION SPECIFIC PCR (MSPCR) WAS USED TO EXAMINE THE METHYLATION STATUS OF THE THY-1 PROMOTER. RESULTS: SIGNIFICANT GLOBAL HYPERMETHYLATION WAS DETECTED IN HYPOXIC FIBROBLASTS RELATIVE TO NORMOXIC CONTROLS AND WAS ACCOMPANIED BY INCREASED EXPRESSION OF MYOFIBROBLAST MARKERS. THY-1 MRNA EXPRESSION WAS SUPPRESSED IN HYPOXIC CELLS, WHICH WAS RESTORED WITH THE DEMETHYLATING AGENT 5-AZA-2'-DEOXYCYTIDINE. MSPCR REVEALED THAT THY-1 BECAME METHYLATED FOLLOWING FIBROBLAST EXPOSURE TO 1% O2. CONCLUSION: THESE DATA SUGGEST THAT GLOBAL AND GENE-SPECIFIC CHANGES IN DNA METHYLATION MAY PLAY AN IMPORTANT ROLE IN FIBROBLAST FUNCTION IN HYPOXIA. 2012 18 662 32 BLOOD MONOCYTE TRANSCRIPTOME AND EPIGENOME ANALYSES REVEAL LOCI ASSOCIATED WITH HUMAN ATHEROSCLEROSIS. LITTLE IS KNOWN REGARDING THE EPIGENETIC BASIS OF ATHEROSCLEROSIS. HERE WE PRESENT THE CD14+ BLOOD MONOCYTE TRANSCRIPTOME AND EPIGENOME SIGNATURES ASSOCIATED WITH HUMAN ATHEROSCLEROSIS. THE TRANSCRIPTOME SIGNATURE INCLUDES TRANSCRIPTION COACTIVATOR, ARID5B, WHICH IS KNOWN TO FORM A CHROMATIN DEREPRESSOR COMPLEX WITH A HISTONE H3K9ME2-SPECIFIC DEMETHYLASE AND PROMOTE ADIPOGENESIS AND SMOOTH MUSCLE DEVELOPMENT. ARID5B CPG (CG25953130) METHYLATION IS INVERSELY ASSOCIATED WITH BOTH ARID5B EXPRESSION AND ATHEROSCLEROSIS, CONSISTENT WITH THIS CPG RESIDING IN AN ARID5B ENHANCER REGION, BASED ON CHROMATIN CAPTURE AND HISTONE MARKS DATA. MEDIATION ANALYSIS SUPPORTS ASSUMPTIONS THAT ARID5B EXPRESSION MEDIATES EFFECTS OF CG25953130 METHYLATION AND SEVERAL CARDIOVASCULAR DISEASE RISK FACTORS ON ATHEROSCLEROTIC BURDEN. IN LIPOPOLYSACCHARIDE-STIMULATED HUMAN THP1 MONOCYTES, ARID5B KNOCKDOWN REDUCED EXPRESSION OF GENES INVOLVED IN ATHEROSCLEROSIS-RELATED INFLAMMATORY AND LIPID METABOLISM PATHWAYS, AND INHIBITED CELL MIGRATION AND PHAGOCYTOSIS. THESE DATA SUGGEST THAT ARID5B EXPRESSION, POSSIBLY REGULATED BY AN EPIGENETICALLY CONTROLLED ENHANCER, PROMOTES ATHEROSCLEROSIS BY DYSREGULATING IMMUNOMETABOLISM TOWARDS A CHRONIC INFLAMMATORY PHENOTYPE.THE MOLECULAR MECHANISMS MEDIATING THE IMPACT OF ENVIRONMENTAL FACTORS IN ATHEROSCLEROSIS ARE UNCLEAR. HERE, THE AUTHORS EXAMINE CD14+ BLOOD MONOCYTE'S TRANSCRIPTOME AND EPIGENOME SIGNATURES TO FIND DIFFERENTIAL METHYLATION AND EXPRESSION OF ARID5B TO BE ASSOCIATED WITH HUMAN ATHEROSCLEROSIS. 2017 19 3238 35 HEPATIC EPIGENETIC REPROGRAMMING AFTER LIVER RESECTION IN OFFSPRING ALLEVIATES THE EFFECTS OF MATERNAL OBESITY. OBESITY HAS BECOME A PUBLIC HEALTH PROBLEM IN RECENT DECADES, AND DURING PREGNANCY, IT CAN LEAD TO AN INCREASED RISK OF GESTATIONAL COMPLICATIONS AND PERMANENT CHANGES IN THE OFFSPRING RESULTING FROM A PROCESS KNOWN AS METABOLIC PROGRAMMING. THE OFFSPRING OF OBESE DAMS ARE AT INCREASED RISK OF DEVELOPING NON-ALCOHOLIC FATTY LIVER DISEASE (NAFLD), EVEN IN THE ABSENCE OF HIGH-FAT DIET CONSUMPTION. NAFLD IS A CHRONIC FATTY LIVER DISEASE THAT CAN PROGRESS TO EXTREMELY SEVERE CONDITIONS THAT REQUIRE SURGICAL INTERVENTION WITH THE REMOVAL OF THE INJURED TISSUE. LIVER REGENERATION IS NECESSARY TO PRESERVE ORGAN FUNCTION. A RANGE OF PATHWAYS IS ACTIVATED IN THE LIVER REGENERATION PROCESS, INCLUDING THE HIPPO, TGFBETA, AND AMPK SIGNALING PATHWAYS THAT ARE UNDER EPIGENETIC CONTROL. WE INVESTIGATED WHETHER MICRORNA MODULATION IN THE LIVER OF THE OFFSPRING OF OBESE DAMS WOULD IMPACT GENE EXPRESSION OF HIPPO, TGFBETA, AND AMPK PATHWAYS AND TISSUE REGENERATION AFTER PARTIAL HEPATECTOMY (PHX). FEMALE SWISS MICE FED A STANDARD CHOW OR A HIGH-FAT DIET (HFD) BEFORE AND DURING PREGNANCY AND LACTATION WERE MATED WITH MALE CONTROL MICE. THE OFFSPRING FROM CONTROL (CT-O) AND OBESE (HF-O) DAMS WEANED TO STANDARD CHOW DIET UNTIL DAY 56 WERE SUBMITTED TO PHX SURGERY. PRIOR TO THE SURGERY, HF-O PRESENTED ALTERATIONS IN MIR-122, MIR-370, AND LET-7A EXPRESSION IN THE LIVER COMPARED TO CT-O, AS PREVIOUSLY SHOWN, AS WELL AS IN ITS TARGET GENES INVOLVED IN LIVER REGENERATION. HOWEVER, AFTER THE PHX (4 H OR 48 H POST-SURGERY), DIFFERENCES IN GENE EXPRESSION BETWEEN CT-O AND HF-O WERE SUPPRESSED, AS WELL AS IN MICRORNA EXPRESSION IN THE LIVER. FURTHERMORE, BOTH CT-O AND HF-O PRESENTED A SIMILAR REGENERATIVE CAPACITY OF THE LIVER WITHIN 48 H AFTER PHX. OUR RESULTS SUGGEST THAT SURVIVAL AND REGENERATIVE MECHANISMS INDUCED BY THE PARTIAL HEPATECTOMY MAY OVERCOME THE EPIGENETIC CHANGES IN THE LIVER OF OFFSPRING PROGRAMMED BY MATERNAL OBESITY. 2022 20 3330 37 HISTONE DEACETYLASE INHIBITOR GIVINOSTAT ALLEVIATES LIVER FIBROSIS BY REGULATING HEPATIC STELLATE CELL ACTIVATION. HEPATIC FIBROSIS, A COMMON PATHOLOGICAL MANIFESTATION OF CHRONIC LIVER INJURY, IS GENERALLY CONSIDERED TO BE THE END RESULT OF AN INCREASE IN EXTRACELLULAR MATRIX PRODUCED BY ACTIVATED HEPATIC STELLATE CELLS (HSCS). THE AIM OF THE PRESENT STUDY WAS TO TARGET THE MECHANISMS UNDERLYING HSC ACTIVATION IN ORDER TO PROVIDE A POWERFUL THERAPEUTIC STRATEGY FOR THE PREVENTION AND TREATMENT OF LIVER FIBROSIS. IN THE PRESENT STUDY, A HIGH?THROUGHPUT SCREENING ASSAY WAS ESTABLISHED, AND THE HISTONE DEACETYLASE INHIBITOR GIVINOSTAT WAS IDENTIFIED AS A POTENT INHIBITOR OF HSC ACTIVATION IN VITRO. GIVINOSTAT SIGNIFICANTLY INHIBITED HSC ACTIVATION IN VIVO, AMELIORATED CARBON TETRACHLORIDE?INDUCED MOUSE LIVER FIBROSIS AND LOWERED PLASMA AMINOTRANSFERASES. TRANSCRIPTOMIC ANALYSIS REVEALED THE MOST SIGNIFICANTLY REGULATED GENES IN THE GIVINOSTAT TREATMENT GROUP IN COMPARISON WITH THOSE IN THE SOLVENT GROUP, AMONG WHICH, DERMOKINE (DMKN), MESOTHELIN (MSLN) AND UROPLAKIN?3B (UPK3B) WERE IDENTIFIED AS POTENTIAL REGULATORS OF HSC ACTIVATION. GIVINOSTAT SIGNIFICANTLY REDUCED THE MRNA EXPRESSION OF DMKN, MSLN AND UPK3B IN BOTH A MOUSE LIVER FIBROSIS MODEL AND IN HSC?LX2 CELLS. KNOCKDOWN OF ANY OF THE AFOREMENTIONED GENES INHIBITED THE TGF?BETA1?INDUCED EXPRESSION OF ALPHA?SMOOTH MUSCLE ACTIN AND COLLAGEN TYPE I, INDICATING THAT THEY ARE CRUCIAL FOR HSC ACTIVATION. IN SUMMARY, USING A NOVEL STRATEGY TARGETING HSC ACTIVATION, THE PRESENT STUDY IDENTIFIED A POTENTIAL EPIGENETIC DRUG FOR THE TREATMENT OF HEPATIC FIBROSIS AND REVEALED NOVEL REGULATORS OF HSC ACTIVATION. 2021