1 3155 100 GLUTAMINE METABOLISM IN ADIPOCYTES: A BONA FIDE EPIGENETIC MODULATOR OF INFLAMMATION. A CHRONIC LOW-GRADE INFLAMMATION OF WHITE ADIPOSE TISSUE (WAT) IS ONE OF THE HALLMARKS OF OBESITY AND IS PROPOSED TO CONTRIBUTE TO INSULIN RESISTANCE AND TYPE 2 DIABETES. DESPITE THIS, THE CAUSAL MECHANISMS UNDERLYING WAT INFLAMMATION REMAIN UNCLEAR. BASED ON METABOLOMIC ANALYSES OF HUMAN WAT, PETRUS ET AL. SHOWED THAT THE AMINO ACID GLUTAMINE WAS THE MOST MARKEDLY REDUCED POLAR METABOLITE IN THE OBESE STATE. REDUCED GLUTAMINE LEVELS IN ADIPOCYTES INDUCE AN INCREASE OF URIDINE DIPHOSPHATE N-ACETYLGLUCOSAMINE (UDP-GLCNAC) LEVELS VIA INDUCTION OF GLYCOLYSIS AND THE HEXOSAMINE BIOSYNTHETIC PATHWAYS. THIS PROMOTES NUCLEAR O-GLCNACYLATION, A POSTTRANSLATIONAL MODIFICATION THAT ACTIVATES THE TRANSCRIPTION OF PRO-INFLAMMATORY GENES. CONVERSELY, GLUTAMINE SUPPLEMENTATION IN VITRO AND IN VIVO, REVERSED THESE EFFECTS. ALTOGETHER, DYSREGULATION OF INTRACELLULAR GLUTAMINE METABOLISM IN WAT ESTABLISHES AN EPIGENETIC LINK BETWEEN ADIPOCYTES AND INFLAMMATION. THIS COMMENTARY DISCUSSES THESE FINDINGS AND THEIR POSSIBLY THERAPEUTIC RELEVANCE IN RELATION TO INSULIN RESISTANCE AND TYPE 2 DIABETES. 2020 2 685 19 BRAIN-DERIVED NEUROTROPHIC FACTOR INVOLVED EPIGENETIC REPRESSION OF UGT2B7 IN COLORECTAL CARCINOMA: A MECHANISM TO ALTER MORPHINE GLUCURONIDATION IN TUMOR. URIDINE DIPHOSPHATE-GLUCURONOSYLTRANSFERASE (UGT) 2B7, AS ONE OF SIGNIFICANT DRUG ENZYMES, IS RESPONSIBLE ON THE GLUCURONIDATION OF ABUNDANT ENDOBIOTICS OR XENOBIOTICS. WE HERE REPORT THAT IT IS MARKEDLY REPRESSED IN THE TUMOR TISSUES OF COLORECTAL CARCINOMA (CRC) PATIENTS. ACCORDINGLY, MORPHINE IN CRC CELLS WILL STIMULATE THE EXPRESSION OF ITS MAIN METABOLIC ENZYME, UGT2B7 DURING TOLERANCE GENERATION BY ACTIVATING THE POSITIVE SIGNALS IN HISTONE 3, ESPECIALLY FOR TRIMETHYLATED LYSINE 27 (H3K4ME3) AND ACETYLATED LYSINE 4 (H3K27AC). FURTHER STUDY REVEALS THAT BRAIN-DERIVED NEUTROPHILIC FACTOR (BDNF), A SECRETORY NEUROTROPHIN, ENRICHED IN CRC CAN INTERACT AND INHIBIT UGT2B7 BY PRIMARILY BLOCKING THE POSITIVE SIGNALS OF H3K4ME3 AS WELL AS ACTIVATING H3K27AC ON THE PROMOTER REGION OF UGT2B7. MEANWHILE, BDNF REPRESSION ATTRIBUTES TO THE SENSITIZATIONS OF MAIN CORE FACTORS IN POLY-COMB REPRESSIVE COMPLEX (PRC) 1 RATHER THAN PRC2 AS THE REASON OF THE DEPRESSION OF SUZ12 IN THE LATER COMPLEX. BESIDES THAT, THE PRODUCTIONS OF TWO MAIN MORPHINE GLUCURONIDES ARE BOTH INCREASED IN THE BDNF DEFICIENT OR TSA AND BIX-01294 TREATED MORPHINE TOLERANCE-LIKE HCT-116 CELLS. ON THE SAME CONDITION, ACTIVE METABOLITE, MORPHINE-6-GLUCURONIDE (M6G) WAS ACCUMULATED MORE THAN INACTIVE M3G. OUR FINDINGS IMPLY THAT ENZYMATIC ACTIVITY ENHANCEMENT AND SUBSTRATE REGIOSELECTIVE CATALYSIS ALTERATION OF UGT2B7 MAY RELEASE MORPHINE TOLERANCE UNDER THE CURE OF TUMOR-INDUCED PAIN. 2017 3 2372 20 EPIGENETIC REGULATION OF THE IL-13-INDUCED HUMAN EOTAXIN-3 GENE BY CREB-BINDING PROTEIN-MEDIATED HISTONE 3 ACETYLATION. THE ETIOLOGY OF A VARIETY OF CHRONIC INFLAMMATORY DISORDERS HAS BEEN ATTRIBUTED TO THE INTERACTION OF GENETIC AND ENVIRONMENTAL FACTORS. HEREIN, WE IDENTIFIED A LINK BETWEEN EPIGENETIC REGULATION AND IL-13-DRIVEN EOTAXIN-3 IN THE PATHOGENESIS OF CHRONIC ALLERGIC INFLAMMATION. WE FIRST DEMONSTRATED THAT THE CAMP-RESPONSIVE ELEMENT (CRE) SITE IN THE EOTAXIN-3 PROMOTER AFFECTS IL-13-INDUCED EOTAXIN-3 PROMOTER ACTIVITY. FURTHERMORE, THE CRE-BINDING PROTEIN-BINDING PROTEIN (CBP), A HISTONE ACETYLTRANSFERASE, INDUCED BASE-LINE AND IL-13-INDUCED EOTAXIN-3 PROMOTER ACTIVITY. ADDITIONALLY, IL-13 TREATMENT PROMOTED GLOBAL HISTONE 3 ACETYLATION AS WELL AS THE FORMATION OF A COMPLEX CONTAINING CBP AND STAT6 AND THE SUBSEQUENT ACETYLATION OF HISTONE 3 AT THE EOTAXIN-3 PROMOTER. CBP GENE SILENCING DECREASED IL-13-INDUCED TRANSCRIPTION OF EOTAXIN-3. CONVERSELY, INHIBITION OF HISTONE DEACETYLATION INCREASED IL-13-INDUCED EOTAXIN-3 PRODUCTION. CLINICAL STUDIES DEMONSTRATED MARKEDLY INCREASED GLOBAL ACETYLATION OF HISTONE 3 IN THE INFLAMED TISSUE OF PATIENTS WITH ALLERGIC INFLAMMATION. COLLECTIVELY, THESE RESULTS IDENTIFY AN EPIGENETIC MECHANISM INVOLVING CBP AND CHROMATIN REMODELING IN REGULATING IL-13-INDUCED CHEMOKINE TRANSCRIPTION. 2011 4 2887 19 GADD45A TRANSCRIPTIONAL INDUCTION ELICITED BY THE AURORA KINASE INHIBITOR MK-0457 IN BCR-ABL-EXPRESSING CELLS IS DRIVEN BY OCT-1 TRANSCRIPTION FACTOR. THE ADVANTAGE OF AURORA KINASE (AK) INHIBITORS IN CHRONIC MYELOID LEUKEMIA (CML) THERAPY MOSTLY ARISES FROM "OFF-TARGET" EFFECTS ON TYROSINE KINASE (TK) ACTIVITY OF WILD TYPE (WT) OR MUTATED BCR-ABL PROTEINS WHICH DRIVE THE DISEASE RESISTANCE TO IMATINIB (IM). WE PROVED THAT THE AK INHIBITOR MK-0457 INDUCES THE GROWTH ARREST DNA DAMAGE-INDUCIBLE (GADD) 45A THROUGH RECRUITMENT OF OCTAMER-BINDING (OCT)-1 TRANSCRIPTION FACTOR AT A CRITICAL PROMOTER REGION FOR GENE TRANSCRIPTION AND COVALENT MODIFICATIONS OF HISTONE H3 (LYSINE 14 ACETYLATION, LYSINE 9 DE-METHYLATION). SUCH EPIGENETIC CHROMATIN MODIFICATIONS MAY DEPICT A GENERAL MECHANISM PROMOTING THE RE-ACTIVATION OF TUMOR SUPPRESSOR GENES SILENCED BY BCR-ABL. 2012 5 1440 27 DIFFERENTIAL REGULATION OF HUMAN 3BETA-HYDROXYSTEROID DEHYDROGENASE TYPE 2 FOR STEROID HORMONE BIOSYNTHESIS BY STARVATION AND CYCLIC AMP STIMULATION: STUDIES IN THE HUMAN ADRENAL NCI-H295R CELL MODEL. HUMAN STEROID BIOSYNTHESIS DEPENDS ON A SPECIFICALLY REGULATED CASCADE OF ENZYMES INCLUDING 3BETA-HYDROXYSTEROID DEHYDROGENASES (HSD3BS). TYPE 2 HSD3B CATALYZES THE CONVERSION OF PREGNENOLONE, 17ALPHA-HYDROXYPREGNENOLONE AND DEHYDROEPIANDROSTERONE TO PROGESTERONE, 17ALPHA-HYDROXYPROGESTERONE AND ANDROSTENEDIONE IN THE HUMAN ADRENAL CORTEX AND THE GONADS BUT THE EXACT REGULATION OF THIS ENZYME IS UNKNOWN. THEREFORE, SPECIFIC DOWNREGULATION OF HSD3B2 AT ADRENARCHE AROUND AGE 6-8 YEARS AND CHARACTERISTIC UPREGULATION OF HSD3B2 IN THE OVARIES OF WOMEN SUFFERING FROM THE POLYCYSTIC OVARY SYNDROME REMAIN UNEXPLAINED PROMPTING US TO STUDY THE REGULATION OF HSD3B2 IN ADRENAL NCI-H295R CELLS. OUR STUDIES CONFIRM THAT THE HSD3B2 PROMOTER IS REGULATED BY TRANSCRIPTION FACTORS GATA, NUR77 AND SF1/LRH1 IN CONCERT AND THAT THE NBRE/NUR77 SITE IS CRUCIAL FOR HORMONAL STIMULATION WITH CAMP. IN FACT, THESE THREE TRANSCRIPTION FACTORS TOGETHER WERE ABLE TO TRANSACTIVATE THE HSD3B2 PROMOTER IN PLACENTAL JEG3 CELLS WHICH NORMALLY DO NOT EXPRESS HSD3B2. BY CONTRAST, EPIGENETIC MECHANISMS SUCH AS METHYLATION AND ACETYLATION SEEM NOT INVOLVED IN CONTROLLING HSD3B2 EXPRESSION. CYCLIC AMP WAS FOUND TO EXERT DIFFERENTIAL EFFECTS ON HSD3B2 WHEN COMPARING SHORT (ACUTE) VERSUS LONG-TERM (CHRONIC) STIMULATION. SHORT CAMP STIMULATION INHIBITED HSD3B2 ACTIVITY DIRECTLY POSSIBLY DUE TO REGULATION AT CO-FACTOR OR SUBSTRATE LEVEL OR POSTTRANSLATIONAL MODIFICATION OF THE PROTEIN. LONG CAMP STIMULATION ATTENUATED HSD3B2 INHIBITION AND INCREASED HSD3B2 EXPRESSION THROUGH TRANSCRIPTIONAL REGULATION. ALTHOUGH PKA AND MAPK PATHWAYS ARE OBVIOUS CANDIDATES FOR POSSIBLY TRANSMITTING THE CAMP SIGNAL TO HSD3B2, OUR STUDIES USING PKA AND MEK1/2 INHIBITORS REVEALED NO SUCH DOWNSTREAM SIGNALING OF CAMP. HOWEVER, BOTH SIGNALING PATHWAYS WERE CLEARLY REGULATING HSD3B2 EXPRESSION. 2013 6 1274 23 DACH1 PROTECTS PODOCYTES FROM EXPERIMENTAL DIABETIC INJURY AND MODULATES PTIP-H3K4ME3 ACTIVITY. DACHSHUND HOMOLOG 1 (DACH1), A KEY CELL-FATE DETERMINANT, REGULATES TRANSCRIPTION BY DNA SEQUENCE-SPECIFIC BINDING. WE IDENTIFIED DIMINISHED DACH1 EXPRESSION IN A LARGE-SCALE SCREEN FOR MUTATIONS THAT CONVERT INJURY-RESISTANT PODOCYTES INTO INJURY-SUSCEPTIBLE PODOCYTES. IN DIABETIC KIDNEY DISEASE (DKD) PATIENTS, PODOCYTE DACH1 EXPRESSION LEVELS ARE DIMINISHED, A CONDITION THAT STRONGLY CORRELATES WITH POOR CLINICAL OUTCOMES. GLOBAL DACH1 KO MICE MANIFEST RENAL HYPOPLASIA AND DIE PERINATALLY. PODOCYTE-SPECIFIC DACH1 KO MICE, HOWEVER, MAINTAIN NORMAL GLOMERULAR ARCHITECTURE AT BASELINE, BUT RAPIDLY EXHIBIT PODOCYTE INJURY AFTER DIABETES ONSET. FURTHERMORE, PODOCYTE-SPECIFIC AUGMENTATION OF DACH1 EXPRESSION IN MICE PROTECTS FROM DKD. COMBINED RNA SEQUENCING AND IN SILICO PROMOTER ANALYSIS REVEAL CONVERSELY OVERLAPPING GLOMERULAR TRANSCRIPTOMIC SIGNATURES BETWEEN PODOCYTE-SPECIFIC DACH1 AND PAX TRANSACTIVATION-DOMAIN INTERACTING PROTEIN (PTIP) KO MICE, WITH UPREGULATED GENES POSSESSING HIGHER-THAN-EXPECTED NUMBERS OF PROMOTER DACH1-BINDING SITES. PTIP, AN ESSENTIAL COMPONENT OF THE ACTIVATING HISTONE H3 LYSINE 4 TRIMETHYLATION (H3K4ME3) COMPLEX, INTERACTS WITH DACH1 AND IS RECRUITED BY DACH1 TO ITS PROMOTER-BINDING SITES. DACH1-PTIP RECRUITMENT REPRESSES TRANSCRIPTION AND REDUCES PROMOTER H3K4ME3 LEVELS. DACH1 KNOCKDOWN IN PODOCYTES COMBINED WITH HYPERGLYCEMIA TRIGGERS TARGET GENE UPREGULATION AND INCREASES PROMOTER H3K4ME3. THESE FINDINGS REVEAL THAT IN DKD, DIMINISHED DACH1 EXPRESSION ENHANCES PODOCYTE INJURY VULNERABILITY VIA EPIGENETIC DEREPRESSION OF ITS TARGET GENES. 2021 7 3153 33 GLUCOSE-INDUCED EXPRESSION OF THE HOMEOTIC TRANSCRIPTION FACTOR PREP1 IS ASSOCIATED WITH HISTONE POST-TRANSLATIONAL MODIFICATIONS IN SKELETAL MUSCLE. AIMS/HYPOTHESIS: CHRONIC HYPERGLYCAEMIA WORSENS INSULIN RESISTANCE IN INDIVIDUALS WITH TYPE 2 DIABETES. WHETHER THIS EFFECT IS CONTRIBUTED BY EPIGENETIC DYSREGULATION AND WHICH GENES ARE INVOLVED REMAIN UNCLEAR. PREP1 (ALSO KNOWN AS PKNOX1) IS A GENE EXERTING MAJOR EFFECTS ON THE SENSITIVITY OF THE GLUCOSE TRANSPORT MACHINERY TO INSULIN. HERE, WE SHOW THAT DYSREGULATION OF PREP1 EXPRESSION BY HIGH GLUCOSE LEVELS IS ASSOCIATED WITH HISTONE MODIFICATIONS AT ITS 5' REGULATORY REGION. METHODS: WE USED MOUSE AND CELL MODELS TO INVESTIGATE PREP1 TRANSCRIPTIONAL REGULATION BY GLUCOSE. RESULTS: DIFFERENTIATED L6 SKELETAL MUSCLE CELLS WERE GROWN IN THE PRESENCE OF EITHER 5.5 OR 25 MMOL/L GLUCOSE (NORMAL [NG] AND HIGH GLUCOSE [HG], RESPECTIVELY). THE HG EXPOSURE INCREASED NUCLEAR FACTOR KAPPA LIGHT CHAIN ENHANCER OF ACTIVATED B CELLS (NF-KAPPAB) P65 BINDING AND RECRUITMENT OF THE SU(VAR)3-9, ENHANCER-OF-ZESTE, TRITHORAX DOMAIN-CONTAINING LYSINE METHYLTRANSFERASE 7 (SET7) HISTONE METHYLTRANSFERASE AND P300 ACETYLTRANSFERASE TO THE 5' REGION OF PREP1, LEADING TO ENHANCED TRANSCRIPTION. IN ADDITION, CHROMATIN IMMUNOPRECIPITATION ASSAYS REVEALED CONCOMITANTLY INCREASED HISTONE H3 MONO- AND DIMETHYLATION AND ACETYLATION AT LYS4 AND LYS9/14, RESPECTIVELY. SKELETAL MUSCLE TISSUE FROM STREPTOZOTOCIN-TREATED DIABETIC MICE ALSO SHOWED PREP1 OVEREXPRESSION ACCOMPANIED BY SIMILARLY INCREASED RECRUITMENT OF NF-KAPPAB P65 AND HISTONE MODIFICATIONS AT THE 5' REGION OF PREP1. IN THESE SAME MICE, AS WELL AS IN PREP1-OVEREXPRESSING L6 CELLS, PREP1-INDUCED RECRUITMENT OF THE REPRESSOR COMPLEX MYOCYTE ENHANCER FACTOR 2 (MEF2)/HISTONE DEACETYLASE 5 (HDAC5) AT THE GLUT4 PROMOTER WAS ALSO INCREASED, LEADING TO REDUCED GLUT4 EXPRESSION. CONCLUSIONS/INTERPRETATION: THESE STUDIES INDICATE THAT HG EXPOSURE INDUCES NF-KAPPAB RECRUITMENT AND HISTONE MODIFICATION AT THE PREP1 5' REGION, THEREBY ENHANCING THE TRANSCRIPTION OF PREP1 AND REPRESSING THAT OF GLUT4. HISTONE CHANGES AT THE PREP1 GENE MAY CONTRIBUTE TO INSULIN RESISTANCE IN INDIVIDUALS WITH TYPE 2 DIABETES. 2016 8 3353 25 HISTONE DEMETHYLASES REGULATE ADIPOCYTE THERMOGENESIS. ADIPOCYTES PLAY A PIVOTAL ROLE IN THE REGULATION OF ENERGY METABOLISM. WHILE WHITE ADIPOCYTE STORES ENERGY, BROWN ADIPOCYTE DISSIPATES ENERGY BY PRODUCING HEAT. IN ADDITION, ANOTHER TYPE OF HEAT-PRODUCING ADIPOCYTE, BEIGE ADIPOCYTE, EMERGES IN WHITE ADIPOSE TISSUE IN RESPONSE TO CHRONIC COLDNESS. THIS PHENOTYPIC ADAPTATION TO THE COLD ENVIRONMENT IS CONSIDERED TO BE ATTRIBUTED TO THE EPIGENETIC MODIFICATIONS. HISTONE METHYLATION IS A CHEMICALLY STABLE EPIGENETIC MODIFICATION AND THUS A PROPER MECHANISM FOR LONG-LASTING CELLULAR MEMORY. SEVERAL HISTONE METHYL-MODIFYING ENZYMES SUCH AS EHMT1, JMJD1A, JMJD3, AND LSD1 ARE REPORTED TO BE INVOLVED IN THE BEIGE ADIPOSE CELL FATE DETERMINATION. AMONG THESE, A HISTONE DEMETHYLASE JMJD1A SENSES COLD ENVIRONMENT BY BEING PHOSPHORYLATED AT S265 IN RESPONSE TO BETA-ADRENERGIC RECEPTOR STIMULATION. PHOSPHORYLATED JMJD1A REGULATES BOTH ACUTE AND COLD THERMOGENESIS. UNDER ACUTE COLDNESS, PHOSPHORYLATED JMJD1A FORMS A COMPLEX WITH CHROMATIN REMODELER SWI/SNF AND DNA-BOUND PPARGAMMA, WHICH RECRUITS JMJD1A TO THE TARGET GENOMIC REGIONS IN BROWN ADIPOCYTE. THIS COMPLEX FORMATION, IN TURN, INDUCES THE EXPRESSION OF TARGET GENES BY BRINGING THE ENHANCER AND THE PROMOTER INTO CLOSE PROXIMITY. DURING CHRONIC COLDNESS, PHOSPHORYLATED JMJD1A REGULATES BEIGE ADIPOGENESIS THROUGH A TWO-STEP MECHANISM. IN THE FIRST STEP, PHOSPHORYLATED JMJD1A IS RECRUITED TO THE REGULATORY REGIONS OF TARGET GENES BY FORMING A COMPLEX WITH PRDM16, PGC1ALPHA, AND DNA-BOUND PPARGAMMA. IN THE SECOND STEP, JMJD1A DEMETHYLATES HISTONE H3K9ME2 AND INDUCES STABLE EXPRESSION OF BEIGE-SELECTIVE GENES. THE PHENOTYPIC ANALYSES OF JMJD1A-NULL MICE AND NON-PHOSPHORYLATED MUTANT S265A JMJD1A KNOCK-IN MICE INDICATE THAT JMJD1A IS A POTENTIAL THERAPEUTIC TARGET FOR THE TREATMENT OF OBESITY-RELATED DISEASES INCLUDING METABOLIC SYNDROME AND TYPE 2 DIABETES. 2018 9 5332 21 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 10 1777 26 EDIBLE BLUE-GREEN ALGAE REDUCE THE PRODUCTION OF PRO-INFLAMMATORY CYTOKINES BY INHIBITING NF-KAPPAB PATHWAY IN MACROPHAGES AND SPLENOCYTES. BACKGROUND: CHRONIC INFLAMMATION CONTRIBUTES TO THE DEVELOPMENT OF PATHOLOGICAL DISORDERS INCLUDING INSULIN RESISTANCE AND ATHEROSCLEROSIS. IDENTIFICATION OF ANTI-INFLAMMATORY NATURAL PRODUCTS CAN PREVENT THE INFLAMMATORY DISEASES. METHODS: ANTI-INFLAMMATORY EFFECTS OF BLUE-GREEN ALGAE (BGA), I.E., NOSTOC COMMUNE VAR. SPHAEROIDES KUTZING (NO) AND SPIRULINA PLATENSIS (SP), WERE COMPARED IN RAW 264.7 AND MOUSE BONE MARROW-DERIVED MACROPHAGES (BMM) AS WELL AS SPLENOCYTES FROM APOLIPOPROTEIN E KNOCKOUT (APOE(-/-)) MICE FED BGA. RESULTS: WHEN MACROPHAGES PRETREATED WITH 100MUG/ML NO LIPID EXTRACT (NOE) OR SP LIPID EXTRACT (SPE) WERE ACTIVATED BY LIPOPOLYSACCHARIDE (LPS), EXPRESSION AND SECRETION OF PRO-INFLAMMATORY CYTOKINES, SUCH AS TUMOR NECROSIS FACTOR ALPHA (TNFALPHA), INTERLEUKIN 1BETA (IL-1BETA), AND IL-6, WERE SIGNIFICANTLY REPRESSED. NOE AND SPE ALSO SIGNIFICANTLY REPRESSED THE EXPRESSION OF TNFALPHA AND IL-1BETA IN BMM. LPS-INDUCED SECRETION OF IL-6 WAS LOWER IN SPLENOCYTES FROM APOE(-/-) FED AN ATHEROGENIC DIET CONTAINING 5% NO OR SP FOR 12WEEKS. IN RAW 264.7 MACROPHAGES, NOE AND SPE MARKEDLY DECREASED NUCLEAR TRANSLOCATION OF NF-KAPPAB. THE DEGREE OF REPRESSION OF PRO-INFLAMMATORY GENE EXPRESSION BY ALGAL EXTRACTS WAS MUCH STRONGER THAN THAT OF SN50, AN INHIBITOR OF NF-KAPPAB NUCLEAR TRANSLOCATION. TRICHOSTATIN A, A PAN HISTONE DEACETYLASE INHIBITOR, INCREASED BASAL EXPRESSION OF IL-1BETA AND ATTENUATED THE REPRESSION OF THE GENE EXPRESSION BY SPE. SPE SIGNIFICANTLY DOWN-REGULATED MRNA ABUNDANCE OF 11 HDAC ISOFORMS, CONSEQUENTLY INCREASING ACETYLATED HISTONE 3 LEVELS. CONCLUSION: NOE AND SPE REPRESS PRO-INFLAMMATORY CYTOKINE EXPRESSION AND SECRETION IN MACROPHAGES AND SPLENOCYTES VIA INHIBITION OF NF-KAPPAB PATHWAY. HISTONE ACETYLATION STATE IS LIKELY INVOLVED IN THE INHIBITION. GENERAL SIGNIFICANCE: THIS STUDY UNDERSCORES NATURAL PRODUCTS CAN EXERT ANTI-INFLAMMATORY EFFECTS BY EPIGENETIC MODIFICATIONS SUCH AS HISTONE ACETYLATION. 2013 11 240 42 ADIPOCYTE EXPRESSION OF SLC19A1 LINKS DNA HYPERMETHYLATION TO ADIPOSE TISSUE INFLAMMATION AND INSULIN RESISTANCE. CONTEXT: INSULIN RESISTANCE (IR) IS PROMOTED BY A CHRONIC LOW-GRADE INFLAMMATION IN WHITE ADIPOSE TISSUE (WAT). THE LATTER MIGHT BE REGULATED THROUGH EPIGENETIC MECHANISMS SUCH AS DNA METHYLATION. THE ONE CARBON CYCLE (1CC) IS A CENTRAL METABOLIC PROCESS GOVERNING DNA METHYLATION. OBJECTIVE: TO IDENTIFY ADIPOCYTE-EXPRESSED 1CC GENES LINKED TO WAT INFLAMMATION, IR, AND THEIR CAUSAL ROLE. DESIGN: COHORT STUDY. SETTING: OUTPATIENT ACADEMIC CLINIC. PARTICIPANTS: OBESE AND NONOBESE SUBJECTS. METHODS: GENE EXPRESSION AND DNA METHYLATION ARRAYS WERE PERFORMED IN SUBCUTANEOUS WAT AND ISOLATED ADIPOCYTES. IN IN VITRO DIFFERENTIATED HUMAN ADIPOCYTES, GENE KNOCKDOWN WAS ACHIEVED BY SMALL INTERFERING RNA, AND ANALYSES INCLUDED MICROARRAY, QUANTITATIVE POLYMERASE CHAIN REACTION, DNA METHYLATION BY ENZYME-LINKED IMMUNOSORBENT ASSAY AND PYROSEQUENCING, PROTEIN SECRETION BY ENZYME-LINKED IMMUNOSORBENT ASSAY, TARGETED METABOLOMICS, AND LUCIFERASE REPORTER AND THERMAL SHIFT ASSAYS. MAIN OUTCOME MEASURES: EFFECTS ON ADIPOCYTE INFLAMMATION. RESULTS: IN ADIPOCYTES FROM OBESE INDIVIDUALS, GLOBAL DNA HYPERMETHYLATION WAS ASSOCIATED POSITIVELY WITH GENE EXPRESSION OF PROINFLAMMATORY PATHWAYS. AMONG THE 1CC GENES, IR IN VIVO AND PROINFLAMMATORY GENE EXPRESSION IN WAT WERE MOST STRONGLY AND INVERSELY ASSOCIATED WITH SLC19A1, A GENE ENCODING A MEMBRANE FOLATE CARRIER. SLC19A1 KNOCKDOWN IN HUMAN ADIPOCYTES PERTURBED INTRACELLULAR 1CC METABOLISM, INDUCED GLOBAL DNA HYPERMETHYLATION, AND INCREASED EXPRESSION OF PROINFLAMMATORY GENES. SEVERAL CPG LOCI LINKED SLC19A1 TO INFLAMMATION; VALIDATION STUDIES WERE FOCUSED ON THE CHEMOKINE C-C MOTIF CHEMOKINE LIGAND 2 (CCL2) IN WHICH METHYLATION IN THE PROMOTER (CG12698626) REGULATED CCL2 EXPRESSION AND CCL2 SECRETION THROUGH ALTERED TRANSCRIPTIONAL ACTIVITY. CONCLUSIONS: REDUCED SLC19A1 EXPRESSION IN HUMAN ADIPOCYTES INDUCES DNA HYPERMETHYLATION, RESULTING IN INCREASED EXPRESSION OF SPECIFIC PROINFLAMMATORY GENES, INCLUDING CCL2. THIS CONSTITUTES AN EPIGENETIC MECHANISM THAT MIGHT LINK DYSFUNCTIONAL ADIPOCYTES TO WAT INFLAMMATION AND IR. 2018 12 1944 18 EPIGALLOCATECHIN-3-GALLATE AND BIX-01294 HAVE DIFFERENT IMPACT ON EPIGENETICS AND SENESCENCE MODULATION IN ACUTE AND CHRONIC MYELOID LEUKEMIA CELLS. MYELOID LEUKEMIA TREATMENT IS QUITE SUCCESSFUL NOWADAYS; NEVERTHELESS THE DEVELOPMENT OF NEW THERAPIES IS STILL NECESSARY. IN THE PRESENT STUDY, WE INVESTIGATED THE POTENTIAL OF EPIGENETIC MODULATORS EGCG (EPIGALLOCATECHIN-3-GALLATE) AND BIX-01294 (N-(1-BENZYLPIPERIDIN-4-YL)-6,7-DIMETHOXY-2-(4-METHYL-1,4-DIAZEPAN-1-YL)QUINAZOLIN-4-AMINE) TO ALTER EPIGENETIC STATE AND CAUSE CELLULAR SENESCENCE IN ACUTE AND CHRONIC MYELOID LEUKEMIA NB4 AND K562 CELLS. WE HAVE SHOWN THAT AFTER LEUKEMIA CELL TREATMENT WITH EGCG AND BIX-01294 THE PROLIFERATION AND SURVIVAL WERE INHIBITED OF BOTH CELL LINES; HOWEVER, ONLY NB4 CELLS UNDERWENT APOPTOSIS. BOTH EPIGENETIC MODULATORS CAUSED CELL CYCLE ARREST IN G0/G1 PHASE AS ASSESSED BY RT-QPCR (P53, P21, RB) AND FLOW CYTOMETRY ANALYSIS. INCREASED LEVELS OF ATM, HMGA2, PHOSPHORYLATED ATM, AND SA-BETA-GALACTOSIDASE STAINING INDICATED THAT EGCG CAUSED CELLULAR SENESCENCE, WHEREAS BIX-01294 DID NOT. IMMUNOBLOT ANALYSIS OF EPIGENETIC PLAYERS DNMT1, HP1ALPHA, H3K9ME3, EZH2, AND SUZ12 DEMONSTRATED BENEFICIAL EPIGENETIC MODULATION BY BOTH AGENTS WITH EXCEPTION OF MAINLY NO EPIGENETIC CHANGES CAUSED IN K562 CELLS BY EGCG. THEREFORE, WE SUGGEST EGCG AS A PROMISING EPIGENETIC MODULATOR FOR ACUTE PROMYELOCYTIC LEUKEMIA THERAPY AND AS A POTENTIAL CELLULAR SENESCENCE INDUCER IN BOTH ACUTE AND CHRONIC MYELOID LEUKEMIA TREATMENT, WHEREAS BIX-01294 COULD BE BENEFICIAL AS AN EPIGENETIC MODIFIER FOR BOTH MYELOID LEUKEMIAS TREATMENT. 2018 13 5298 22 PROTEIN ARGININE METHYLTRANSFERASE 5 SUPPRESSES THE TRANSCRIPTION OF THE RB FAMILY OF TUMOR SUPPRESSORS IN LEUKEMIA AND LYMPHOMA CELLS. THE PROPER EPIGENETIC MODIFICATION OF CHROMATIN BY PROTEIN ARGININE METHYLTRANSFERASES (PRMTS) IS CRUCIAL FOR NORMAL CELL GROWTH AND HEALTH. THE HUMAN SWI/SNF-ASSOCIATED PRMT5 IS INVOLVED IN THE TRANSCRIPTIONAL REPRESSION OF TARGET GENES BY DIRECTLY METHYLATING H3R8 AND H4R3. TO FURTHER UNDERSTAND THE IMPACT OF PRMT5-MEDIATED HISTONE METHYLATION ON CANCER, WE ANALYZED ITS EXPRESSION IN NORMAL AND TRANSFORMED HUMAN B LYMPHOCYTES. OUR FINDINGS REVEAL THAT PRMT5 PROTEIN LEVELS ARE ENHANCED IN VARIOUS HUMAN LYMPHOID CANCER CELLS, INCLUDING TRANSFORMED CHRONIC LYMPHOCYTIC LEUKEMIA (B-CLL) CELL LINES. PRMT5 OVEREXPRESSION IS CAUSED BY THE ALTERED EXPRESSION OF THE PRMT5-SPECIFIC MICRORNAS 19A, 25, 32, 92, 92B, AND 96 AND RESULTS IN THE INCREASED GLOBAL SYMMETRIC METHYLATION OF H3R8 AND H4R3. AN EVALUATION OF BOTH EPIGENETIC MARKS AT PRMT5 TARGET GENES SUCH AS RB1 (P105), RBL1 (P107), AND RBL2 (P130) SHOWED THAT PROMOTERS H3R8 AND H4R3 ARE HYPERMETHYLATED, WHICH IN TURN TRIGGERS POCKET PROTEIN TRANSCRIPTIONAL REPRESSION. FURTHERMORE, REDUCING PRMT5 EXPRESSION IN WAC3CD5 B-CLL CELLS ABOLISHES H3R8 AND H4R3 HYPERMETHYLATION, RESTORES RBL2 EXPRESSION, AND INHIBITS CANCER CELL PROLIFERATION. THESE RESULTS INDICATE THAT PRMT5 OVEREXPRESSION EPIGENETICALLY ALTERS THE TRANSCRIPTION OF KEY TUMOR SUPPRESSOR GENES AND SUGGEST A CAUSAL ROLE OF THE ELEVATED SYMMETRIC METHYLATION OF H3R8 AND H4R3 AT THE RBL2 PROMOTER IN TRANSFORMED B-LYMPHOCYTE PATHOLOGY. 2008 14 4696 22 NF-KAPPAB REPRESSES RETINOIC ACID RECEPTOR-MEDIATED GPRC5A TRANSACTIVATION IN LUNG EPITHELIAL CELLS TO PROMOTE NEOPLASIA. CHRONIC INFLAMMATION IS ASSOCIATED WITH LUNG TUMORIGENESIS, IN WHICH NF-KAPPAB-MEDIATED EPIGENETIC REGULATION PLAYS A CRITICAL ROLE. LUNG TUMOR SUPPRESSOR G PROTEIN-COUPLED RECEPTOR, FAMILY C, MEMBER 5A (GPRC5A), IS REPRESSED IN MOST NON-SMALL CELL LUNG CANCER (NSCLC); HOWEVER, THE MECHANISMS REMAIN UNCLEAR. HERE, WE SHOW THAT NF-KAPPAB ACTS AS A TRANSCRIPTIONAL REPRESSOR IN SUPPRESSION OF GPRC5A. NF-KAPPAB INDUCED GPRC5A REPRESSION BOTH IN VITRO AND IN VIVO. INTRIGUINGLY, TRANSACTIVATION OF NF-KAPPAB DOWNSTREAM TARGETS WAS NOT REQUIRED, BUT THE TRANSACTIVATION DOMAIN OF RELA/P65 WAS REQUIRED FOR GPRC5A REPRESSION. NF-KAPPAB DID NOT BIND TO ANY POTENTIAL CIS-ELEMENT IN THE GPRC5A PROMOTER. INSTEAD, P65 WAS COMPLEXED WITH RETINOIC ACID RECEPTOR ALPHA/BETA (RARALPHA/BETA) AND RECRUITED TO THE RA RESPONSE ELEMENT SITE AT THE GPRC5A PROMOTER, RESULTING IN DISRUPTED RNA POLYMERASE II COMPLEXING AND SUPPRESSED TRANSCRIPTION. NOTABLY, PHOSPHORYLATION ON SERINE 276 OF P65 WAS REQUIRED FOR INTERACTION WITH RARALPHA/BETA AND REPRESSION OF GPRC5A. MOREOVER, NF-KAPPAB-MEDIATED EPIGENETIC REPRESSION WAS THROUGH SUPPRESSION OF ACETYLATED HISTONE H3K9 (H3K9AC), BUT NOT DNA METHYLATION OF THE CPG ISLANDS, AT THE GPRC5A PROMOTER. CONSISTENTLY, A HISTONE DEACETYLASE INHIBITOR, BUT NOT DNA METHYLATION INHIBITOR, RESTORED GPRC5A EXPRESSION IN NSCLC CELLS. THUS, NF-KAPPAB INDUCES TRANSCRIPTIONAL REPRESSION OF GPRC5A VIA A COMPLEX WITH RARALPHA/BETA AND MEDIATES EPIGENETIC REPRESSION VIA SUPPRESSION OF H3K9AC. 2023 15 3526 21 IL-6 AND SIL-6R INDUCES STAT3-DEPENDENT DIFFERENTIATION OF HUMAN VSMCS INTO OSTEOBLAST-LIKE CELLS THROUGH JMJD2B-MEDIATED HISTONE DEMETHYLATION OF RUNX2. INFLAMMATION AND VASCULAR CALCIFICATION ARE INDEPENDENT RISK FACTORS OF CARDIOVASCULAR EVENTS. VASCULAR SMOOTH MUSCLE CELLS (VSMCS) EXHIBIT OSTEOBLAST-LIKE CHARACTERISTICS IN RESPONSE TO VARIOUS STIMULI SUCH AS OXIDIZED CHOLESTEROL AND INFLAMMATION. HOWEVER THE PRECISE MECHANISM OF TRANSCRIPTIONAL REGULATION OF VSMCS BY INFLAMMATORY STIMULI REMAINS UNCLEAR. WE INVESTIGATED THE PROCESS AND MECHANISMS OF INFLAMMATORY CYTOKINE-INDUCED TRANSFORMATION OF HUMAN VSMCS (HVSMCS) INTO OSTEOBLAST-LIKE CELLS, WITH A SPECIAL FOCUS ON EPIGENETIC CHANGES. OUR RESULTS DEMONSTRATED: (1) INTERLEUKIN-6 (IL-6)/SOLUBLE INTERLEUKIN-6 RECEPTOR (SIL-6R) INDUCED TRANSFORMATION OF HVSMCS INTO AN OSTEOBLAST PHENOTYPE, WITH SUBSEQUENT VASCULAR CALCIFICATION, BASED ON THE RESULTS OF ALIZARIN RED S STAINING AND O-CRESOLPHTHALEIN COMPLEXONE METHOD; (2) IL-6/SIL-6R ACCELERATED THE EXPRESSION OF RUNT-RELATED TRANSCRIPTION FACTOR 2 (RUNX2) BASED ON THE RESULTS OF QUANTITATIVE REAL-TIME POLYMERASE CHAIN REACTION; (3) KNOCKDOWN OF SIGNAL TRANSDUCER AND ACTIVATOR OF TRANSCRIPTION (STAT) 3 REDUCED IL-6/SIL-6R-INDUCED RUNX2 MRNA EXPRESSION AND OSTEOBLAST TRANSDIFFERENTIATION OF HVSMCS; (4) CHROMATIN IMMUNOPRECIPITATION (CHIP) COUPLED WITH PCR (CHIP-PCR) IDENTIFIED A STAT-BINDING SITE IN RUNX2 PROMOTER REGION CONTAINING TRIMETHYLATED HISTONE 3 LYSINE 9 (H3K9ME3), A TRANSCRIPTIONAL REPRESSOR, AND H3K4ME3, A TRANSCRIPTIONAL ENHANCER. STIMULATION WITH IL-6/SIL-6R SUPPRESSED H3K9ME3 BUT NOT H3K4ME3 THROUGH THE RECRUITMENT OF JUMONJI DOMAIN-CONTAINING PROTEIN (JMJD) 2B, A HISTONE LYSINE DEMETHYLASE, AT THE STAT-BINDING SITE IN RUNX2 PROMOTER REGION; (5) IL-6/SIL-6R-INDUCED RUNX2 GENE EXPRESSION WAS INHIBITED IN HVSMCS PRETREATED WITH JIB04, JMJD2 INHIBITOR, AND THE INHIBITORY EFFECT WAS JIB04 DOSE-DEPENDENT. OUR RESULTS INDICATE THAT THE IL-6/STAT3/JMJD2B PATHWAY REGULATES HVSMCS DIFFERENTIATION INTO OSTEOBLAST-LIKE CELLS, WHICH SUGGEST ITS PATHOGENIC ROLE IN VASCULAR CALCIFICATION ASSOCIATED WITH CHRONIC INFLAMMATION. 2019 16 5601 21 RORALPHA IS CRUCIAL FOR ATTENUATED INFLAMMATORY RESPONSE TO MAINTAIN INTESTINAL HOMEOSTASIS. RETINOIC ACID-RELATED ORPHAN RECEPTOR ALPHA (RORALPHA) FUNCTIONS AS A TRANSCRIPTION FACTOR FOR VARIOUS BIOLOGICAL PROCESSES, INCLUDING CIRCADIAN RHYTHM, CANCER, AND METABOLISM. HERE, WE GENERATE INTESTINAL EPITHELIAL CELL (IEC)-SPECIFIC RORALPHA-DEFICIENT (RORALPHA(DELTAIEC)) MICE AND FIND THAT RORALPHA IS CRUCIAL FOR MAINTAINING INTESTINAL HOMEOSTASIS BY ATTENUATING NUCLEAR FACTOR KAPPAB (NF-KAPPAB) TRANSCRIPTIONAL ACTIVITY. RORALPHA(DELTAIEC) MICE EXHIBIT EXCESSIVE INTESTINAL INFLAMMATION AND HIGHLY ACTIVATED INFLAMMATORY RESPONSES IN THE DEXTRAN SULFATE SODIUM (DSS) MOUSE COLITIS MODEL. TRANSCRIPTOME ANALYSIS REVEALS THAT DELETION OF RORALPHA LEADS TO UP-REGULATION OF NF-KAPPAB TARGET GENES IN IECS. CHROMATIN IMMUNOPRECIPITATION ANALYSIS REVEALS CORECRUITMENT OF RORALPHA AND HISTONE DEACETYLASE 3 (HDAC3) ON NF-KAPPAB TARGET PROMOTERS AND SUBSEQUENT DISMISSAL OF CREB BINDING PROTEIN (CBP) AND BROMODOMAIN-CONTAINING PROTEIN 4 (BRD4) FOR TRANSCRIPTIONAL REPRESSION. TOGETHER, WE DEMONSTRATE THAT RORALPHA/HDAC3-MEDIATED ATTENUATION OF NF-KAPPAB SIGNALING CONTROLS THE BALANCE OF INFLAMMATORY RESPONSES, AND THERAPEUTIC STRATEGIES TARGETING THIS EPIGENETIC REGULATION COULD BE BENEFICIAL TO THE TREATMENT OF CHRONIC INFLAMMATORY DISEASES, INCLUDING INFLAMMATORY BOWEL DISEASE (IBD). 2019 17 1298 20 DECREASED NUCLEAR RECEPTOR ACTIVITY AND EPIGENETIC MODULATION ASSOCIATES WITH DOWN-REGULATION OF HEPATIC DRUG-METABOLIZING ENZYMES IN CHRONIC KIDNEY DISEASE. PATIENTS WITH CHRONIC KIDNEY DISEASE (CKD) REQUIRE MANY MEDICATIONS. CYP2C AND CYP3A DRUG-METABOLIZING ENZYMES PLAY A CRITICAL ROLE IN DETERMINING THE PHARMACOKINETICS OF THE MAJORITY OF PRESCRIBED MEDICATIONS. THESE ENZYMES ARE TRANSCRIPTIONALLY REGULATED BY THE NUCLEAR RECEPTORS PREGNANE X RECEPTOR (PXR) AND HEPATIC NUCLEAR FACTOR 4ALPHA (HNF-4ALPHA). EXPRESSION OF CYP2C AND CYP3A IS DECREASED IN CKD; HOWEVER, THE MECHANISMS BY WHICH THIS OCCURS IS UNKNOWN. WE INDUCED CKD IN RATS BY 5/6 NEPHRECTOMY AND USED CHROMATIN IMMUNOPRECIPITATION (CHIP) TO DETERMINE NUCLEAR RECEPTOR- AND EPIGENETIC ALTERATION-MEDIATED DIFFERENCES IN THE PROMOTER REGION OF THE CYP2C AND CYP3A GENES. RNA POLYMERASE II AND HNF-4ALPHA BINDING WAS DECREASED 76 AND 57% IN THE CYP2C11 PROMOTOR AND 71 AND 77% IN THE CYP3A2 PROMOTER, RESPECTIVELY (P<0.05). CHIP ALSO REVEALED A 57% DECREASE IN PXR BINDING TO THE CYP3A2 PROMOTER IN CKD RATS (P<0.05). THE DECREASE IN PXR AND HNF-4ALPHA BINDING WAS ACCOMPANIED BY DIMINISHED HISTONE 4 ACETYLATION IN THE CYP3A2 PROMOTER (48%) AND HISTONE 3 ACETYLATION IN THE CYP2C11 (77%) AND CYP3A2 (77%) PROMOTER LOCI FOR NUCLEAR RECEPTOR ACTIVATION (P<0.05). THIS STUDY SUGGESTS THAT DECREASED NUCLEAR RECEPTOR BINDING AND HISTONE ACETYLATION MAY CONTRIBUTE TO THE MECHANISM OF DRUG-METABOLIZING ENZYME DOWN-REGULATION AND ALTERED PHARMACOKINETICS IN CKD. 2014 18 6118 27 THE EPIGENETIC EFFECTS OF ASPIRIN: THE MODIFICATION OF HISTONE H3 LYSINE 27 ACETYLATION IN THE PREVENTION OF COLON CARCINOGENESIS IN AZOXYMETHANE- AND DEXTRAN SULFATE SODIUM-TREATED CF-1 MICE. COLORECTAL CANCER (CRC) IS THE THIRD MOST COMMON CANCER WORLDWIDE. CHRONIC INFLAMMATION APPEARS TO ENHANCE THE RISK OF CRC. EMERGING EVIDENCE HAS SUGGESTED THAT EPIGENETIC MECHANISMS PLAY AN IMPORTANT ROLE IN CRC. ASPIRIN [ACETYLSALICYLIC ACID (ASA)] HAS BEEN SHOWN TO PREVENT CRC; HOWEVER, THE EPIGENETIC MECHANISMS OF ITS ACTION REMAIN UNKNOWN. THIS STUDY INVESTIGATED THE PROTECTIVE ROLE OF ASA IN AZOXYMETHANE (AOM)-INITIATED AND DEXTRAN SULFATE SODIUM (DSS)-PROMOTED COLITIS-ASSOCIATED COLON CANCER (CAC) AND EXAMINED THE EPIGENETIC EFFECTS, PARTICULARLY ON HISTONE 3 LYSINE 27 ACETYLATION (H3K27AC), UNDERLYING THE PREVENTIVE EFFECT OF ASA. CF-1 MICE WERE FED WITH AIN-93M DIET WITH OR WITHOUT 0.02% ASA FROM 1 WEEK PRIOR TO AOM INITIATION UNTIL THE MICE WERE KILLED 20 WEEKS AFTER AOM INJECTION. OUR RESULTS SHOWED THAT AOM/DSS + ASA SIGNIFICANTLY SUPPRESSED INFLAMMATORY COLITIS SYMPTOMS AND TUMOR MULTIPLICITY. AOM/DSS + ASA REDUCED AOM/DSS-INDUCED PROTEIN EXPRESSION AND THE ACTIVITY OF HISTONE DEACETYLASES (HDACS) AND GLOBALLY RESTORED H3K27AC. FURTHERMORE, AOM/DSS + ASA INHIBITED AOM/DSS-INDUCED ENRICHMENT OF H3K27AC IN THE PROMOTERS OF INDUCIBLE NITRIC OXIDE SYNTHASE (INOS), TUMOR NECROSIS FACTOR ALPHA (TNF-ALPHA) AND INTERLEUKIN 6 (IL-6) THAT CORRESPONDED TO THE DRAMATIC SUPPRESSION OF THE MESSENGER RNA (MRNA) AND PROTEIN LEVELS. SURPRISINGLY, NO SIGNIFICANT CHANGES IN THE H3K27AC ABUNDANCE IN THE PROSTAGLANDIN-ENDOPEROXIDE SYNTHASE 2 (COX-2) PROMOTERS OR IN THE COX-2 MRNA AND PROTEIN EXPRESSION WERE OBSERVED. COLLECTIVELY, OUR RESULTS SUGGEST THAT A POTENTIAL NOVEL EPIGENETIC MECHANISM UNDERLIES THE CHEMOPREVENTIVE EFFECTS OF ASA, AND THIS MECHANISM ATTENUATES CAC IN AOM/DSS-INDUCED CF-1 MICE VIA THE INHIBITION OF HDACS AND THE MODIFICATION OF H3K27AC MARKS THAT SUPPRESS INOS, TNF-ALPHA AND IL-6. 2016 19 3279 20 HERITABLE ALTERATION IN DNA METHYLATION INDUCED BY NITROGEN-DEFICIENCY STRESS ACCOMPANIES ENHANCED TOLERANCE BY PROGENIES TO THE STRESS IN RICE (ORYZA SATIVA L.). CYTOSINE METHYLATION IS RESPONSIVE TO VARIOUS BIOTIC- AND ABIOTIC-STRESSES, WHICH MAY PRODUCE HERITABLE EPIALLELES. NITROGEN (N)-DEFICIENCY IS AN ABIOTIC STRESS BEING REPEATEDLY EXPERIENCED BY PLANTS. TO ADDRESS POSSIBLE EPIGENETIC CONSEQUENCES OF N-DEFICIENCY-STRESS, WE INVESTIGATED THE STABILITY OF CYTOSINE METHYLATION IN RICE (ORYZA SATIVA L.) SUBSEQUENT TO A CHRONIC (A WHOLE-GENERATION) N-DEFICIENCY AT TWO LEVELS, MODERATE (20MG/L) AND SEVERE (10MG/L), UNDER HYDROPONIC CULTURE. MSAP ANALYSIS REVEALED THAT LOCUS-SPECIFIC METHYLATION ALTERATION OCCURRED IN LEAF-TISSUE OF THE STRESSED PLANTS (S(0)) EXPERIENCING EITHER LEVEL OF N-DEFICIENCY, WHICH WAS VALIDATED BY GEL-BLOTTING. ANALYSIS ON THREE NON-STRESSED SELF-FED PROGENIES (S(1), S(2) AND S(3)) BY GEL-BLOTTING INDICATED THAT CA. 50% OF THE ALTERED METHYLATION PATTERNS IN SOMATIC CELLS (LEAF) OF THE STRESSED S(0) PLANTS WERE RECAPTURED IN S(1), WHICH WERE THEN STABLY INHERITED TO S(2) AND S(3). BISULFITE SEQUENCING OF TWO VARIANT MSAP LOCI WITH HOMOLOGY TO LOW-COPY RETROTRANSPOSONS ON ONE STRESSED PLANT (S(0)) AND ITS NON-STRESSED PROGENIES (S(1) AND S(2)) SHOWED THAT WHEREAS ONE LOCUS EXHIBITED LIMITED AND NON-HERITABLE CHH METHYLATION ALTERATION, THE OTHER LOCUS MANIFESTED DRAMATIC HERITABLE HYPERMETHYLATION AT NEARLY ALL CYTOSINE SITES WITHIN THE ASSAYED REGION. INTRIGUINGLY, WHEN TWO GROUPS OF S(2) PLANTS DESCENDED FROM THE SAME N-DEFICIENCY-STRESSED S(0) PLANT WERE RE-SUBJECTED TO THE STRESS, THE GROUP INHERITING THE MODIFIED METHYLATION PATTERNS SHOWED ENHANCED TOLERANCE TO THE N-DEFICIENCY-STRESS COMPARED WITH THE GROUP BEARING THE ORIGINAL PATTERNS. OUR RESULTS THUS DEMONSTRATE HERITABILITY OF AN ACQUIRED ADAPTIVE TRAIT IN RICE, WHICH WAS ACCOMPANIED BY EPIGENETIC INHERITANCE OF MODIFIED CYTOSINE METHYLATION PATTERNS, IMPLICATING AN EPIGENETIC BASIS UNDERLYING THE INHERITANCE OF AN ACQUIRED TRAIT IN PLANTS. 2011 20 3875 22 KDM2A DEFICIENCY IN MACROPHAGES ENHANCES THERMOGENESIS TO PROTECT MICE AGAINST HFD-INDUCED OBESITY BY ENHANCING H3K36ME2 AT THE PPARG LOCUS. KDM2A CATALYZES H3K36ME2 DEMETHYLATION TO PLAY AN INTRIGUING EPIGENETIC REGULATORY ROLE IN CELL PROLIFERATION, DIFFERENTIATION, AND APOPTOSIS. HEREIN WE FOUND THAT MYELOID-SPECIFIC KNOCKOUT OF KDM2A (LYSM-CRE-KDM2A(F/F), KDM2A(-/-)) PROMOTED MACROPHAGE M2 PROGRAM BY REPROGRAMING METABOLIC HOMEOSTASIS THROUGH ENHANCING FATTY ACID UPTAKE AND LIPOLYSIS. KDM2A(-/-) INCREASED H3K36ME2 LEVELS AT THE PPARG LOCUS ALONG WITH AUGMENTED CHROMATIN ACCESSIBILITY AND STAT6 RECRUITMENT, WHICH RENDERED MACROPHAGES WITH PREFERENTIAL M2 POLARIZATION. THEREFORE, THE KDM2A(-/-) MICE WERE HIGHLY PROTECTED FROM HIGH-FAT DIET (HFD)-INDUCED OBESITY, INSULIN RESISTANCE, AND HEPATIC STEATOSIS, AND FEATURED BY THE REDUCED ACCUMULATION OF ADIPOSE TISSUE MACROPHAGES AND REPRESSED CHRONIC INFLAMMATION FOLLOWING HFD CHALLENGE. PARTICULARLY, KDM2A(-/-) MACROPHAGES PROVIDED A MICROENVIRONMENT IN FAVOR OF THERMOGENESIS. UPON HFD OR COLD CHALLENGE, THE KDM2A(-/-) MICE MANIFESTED HIGHER CAPACITY FOR INDUCING ADIPOSE BROWNING AND BEIGING TO PROMOTE ENERGY EXPENDITURE. COLLECTIVELY, OUR FINDINGS DEMONSTRATE THE IMPORTANCE OF KDM2A-MEDIATED H3K36 DEMETHYLATION IN ORCHESTRATING MACROPHAGE POLARIZATION, PROVIDING NOVEL INSIGHT THAT TARGETING KDM2A IN MACROPHAGES COULD BE A VIABLE THERAPEUTIC APPROACH AGAINST OBESITY AND INSULIN RESISTANCE. 2021