1 3175 115 H2AX PHOSPHORYLATION REGULATED BY P38 IS INVOLVED IN BIM EXPRESSION AND APOPTOSIS IN CHRONIC MYELOGENOUS LEUKEMIA CELLS INDUCED BY IMATINIB. INCREASING EVIDENCE SUGGESTS THAT HISTONE H2AX PLAYS A CRITICAL ROLE IN REGULATION OF TUMOR CELL APOPTOSIS AND ACTS AS A NOVEL HUMAN TUMOR SUPPRESSOR PROTEIN. HOWEVER, THE ACTION OF H2AX IN CHRONIC MYELOGENOUS LEUKEMIA (CML) CELLS IS UNKNOWN. THE DETAILED MECHANISM AND EPIGENETIC REGULATION BY H2AX REMAIN ELUSIVE IN CANCER CELLS. HERE, WE REPORT THAT H2AX WAS INVOLVED IN APOPTOSIS OF CML CELLS. OVEREXPRESSION OF H2AX INCREASED APOPTOTIC SENSITIVITY OF CML CELLS (K562) INDUCED BY IMATINIB. HOWEVER, OVEREXPRESSION OF SER139-MUTATED H2AX (BLOCKING PHOSPHORYLATION) DECREASED SENSITIVITY OF K562 CELLS TO APOPTOSIS. SIMILARLY, KNOCKDOWN OF H2AX MADE K562 CELLS RESISTANT TO APOPTOTIC INDUCTION. THESE RESULTS REVEALED THAT THE FUNCTION OF H2AX INVOLVED IN APOPTOSIS IS STRICTLY RELATED TO ITS PHOSPHORYLATION (SER139). OUR DATA FURTHER INDICATED THAT IMATINIB MAY STIMULATE MITOGEN-ACTIVATED PROTEIN KINASE (MAPK) FAMILY MEMBER P38, AND H2AX PHOSPHORYLATION FOLLOWED A SIMILAR TIME COURSE, SUGGESTING A PARALLEL RESPONSE. H2AX PHOSPHORYLATION CAN BE BLOCKED BY P38 SIRNA OR ITS INHIBITOR. THESE DATA DEMONSTRATED THAT H2AX PHOSPHORYLATION WAS REGULATED BY P38 MAPK PATHWAY IN K562 CELLS. HOWEVER, THE P38 MAPK DOWNSTREAM, MITOGEN- AND STRESS-ACTIVATED PROTEIN KINASE-1 AND -2, WHICH PHOSPHORYLATED HISTONE H3, WERE NOT REQUIRED FOR H2AX PHOSPHORYLATION DURING APOPTOSIS. FINALLY, WE PROVIDED EPIGENETIC EVIDENCE THAT H2AX PHOSPHORYLATION REGULATED APOPTOSIS-RELATED GENE BIM EXPRESSION. BLOCKING OF H2AX PHOSPHORYLATION INHIBITED BIM GENE EXPRESSION. TAKEN TOGETHER, THESE DATA DEMONSTRATED THAT H2AX PHOSPHORYLATION REGULATED BY P38 IS INVOLVED IN BIM EXPRESSION AND APOPTOSIS IN CML CELLS INDUCED BY IMATINIB. 2014 2 2081 41 EPIGENETIC DOWN-REGULATION OF BIM EXPRESSION IS ASSOCIATED WITH REDUCED OPTIMAL RESPONSES TO IMATINIB TREATMENT IN CHRONIC MYELOID LEUKAEMIA. BACKGROUND: EXPRESSION OF THE PRO-APOPTOTIC BCL-2-INTERACTING MEDIATOR (BIM) HAS RECENTLY BEEN IMPLICATED IN IMATINIB-INDUCED APOPTOSIS OF BCR-ABL1(+) CELLS. HOWEVER, THE MECHANISMS INVOLVED IN THE REGULATION OF BIM IN CML AND ITS ROLE IN THE CLINICAL SETTING HAVE NOT BEEN ESTABLISHED. DESIGN AND METHODS: WE ANALYSED THE MRNA EXPRESSION OF BIM IN 100 NEWLY DIAGNOSED PATIENTS WITH CML IN CHRONIC PHASE BY Q-RT-PCR AND THE PROTEIN LEVELS BY WESTERN BLOT ANALYSIS. METHYLATION STATUS WAS ANALYSED BY BISULPHITE GENOMIC SEQUENCING AND MSP. CML CELL LINES WERE TREATED WITH IMATINIB AND 5-AZA-2'-DEOXYCYTIDINE, AND WERE TRANSFECTED WITH TWO DIFFERENT SIRNAS AGAINST BIM AND CELL PROLIFERATION AND APOPTOSIS WERE ANALYSED. RESULTS: WE DEMONSTRATED THAT DOWN-REGULATION OF BIM EXPRESSION WAS PRESENT IN 36% OF THE PATIENTS AND WAS SIGNIFICANTLY ASSOCIATED WITH A LACK OF OPTIMAL RESPONSE TO IMATINIB AS INDICATED BY THE DECREASE IN CYTOGENETIC AND MOLECULAR RESPONSES AT 6, 12 AND 18 MONTHS IN COMPARISON WITH PATIENTS WITH NORMAL BIM EXPRESSION (P<0.05). EXPRESSION OF BIM WAS MEDIATED BY PROMOTER HYPERMETHYLATION AS DEMONSTRATED BY RESTORATION OF BIM EXPRESSION AFTER TREATMENT OF CML CELLS WITH 5-AZA-2'-DEOXYCYTIDINE. USING CML CELL LINES WITH LOW AND NORMAL EXPRESSION OF BIM WE FURTHER DEMONSTRATED THAT THE EXPRESSION OF BIM IS REQUIRED FOR IMATINIB-INDUCED CML APOPTOSIS. CONCLUSION: OUR DATA INDICATE THAT DOWN-REGULATION OF BIM IS EPIGENETICALLY CONTROLLED BY METHYLATION IN A PERCENTAGE OF CML PATIENTS AND HAS AN UNFAVOURABLE PROGNOSTIC IMPACT, AND THAT THE COMBINATION OF IMATINIB WITH A DE-METHYLATING AGENT MAY RESULT IN IMPROVED RESPONSES IN PATIENTS WITH DECREASED EXPRESSION OF BIM. 2009 3 1287 28 DECITABINE-INDUCED APOPTOSIS IS DERIVED BY PUMA AND NOXA INDUCTION IN CHRONIC MYELOID LEUKEMIA CELL LINE AS WELL AS IN PBL AND IS POTENTIATED BY SAHA. RESTORATION OF CELLULAR APOPTOTIC PATHWAYS PLAYS A CRUCIAL ROLE IN CANCER THERAPY STRATEGIES. IN A BROAD SPECTRUM OF ANTICANCER DRUGS, EPIGENETIC EFFECTORS ARE IN THE CENTER OF INTEREST MOSTLY BECAUSE OF POTENTIAL REVERSIBILITY OF THEIR ACTION. METHYLATION STATUS OF THE CELLS IS INFLUENCED BY METHYLTRANSFERASE INHIBITOR 2-DEOXY-5'-AZACYTIDINE (DECITABINE, DAC), BUT HIGHER CONCENTRATIONS OF THIS AGENT CAUSE A DNA-DAMAGE. IN OUR STUDY, TUMOR SUPRESSOR P53-APOPTOTIC PATHWAY WAS ACTIVATED IN DECITABINE-INDUCED CELL DEATH. EXPRESSION OF P53-INDUCIBLE BH3-ONLY APOPTOTIC PROTEINS PUMA AND NOXA WAS ELEVATED AND LARGE ACTIVATION OF EXECUTIVE CASPASES WAS OBSERVED. THE EXTENT OF ACETYLATION IN THE CELL IS AFFECTED BY HISTONEDEACETYLASE INHIBITOR SUBEROYLANILIDE HYDROXAMIC ACID (SAHA). COMBINATION OF SAHA WITH DECITABINE BROUGHT SYNERGISTIC EFFECT ON APOPTOSIS TRIGGERING IN CML-T1 CELL LINE, BUT APOPTOSIS AS WELL AS NECROSIS OCCURRED ALSO IN NORMAL PERIPHERAL BLOOD LYMPHOCYTES. THEREFORE, PROMISING POTENTIAL OF SUCH COMBINED THERAPY CALLS FOR MORE DETAILED INVESTIGATION OF UNWANTED EFFECTS IN NORMAL CELLS. 2011 4 5849 29 SUBEROYLANILIDE HYDROXAMIC ACID (SAHA) AND CLADRIBINE SYNERGISTICALLY INDUCE APOPTOSIS IN NK-LGL LEUKAEMIA. NATURAL KILLER (NK) LARGE GRANULAR LYMPHOCYTE (LGL) LEUKAEMIA FEATURES A CLONAL PROLIFERATION OF CD3(-) NK CELLS THAT CAN BE CLASSIFIED INTO EITHER AGGRESSIVE OR CHRONIC CATEGORIES. THE NKL CELL LINE, DERIVED FROM AN AGGRESSIVE ASIAN NK CELL LEUKAEMIA, AND PATIENT SAMPLES FROM CHRONIC NK-LGL LEUKAEMIA WERE USED IN OUR STUDY TO PROBE FOR SYNERGISTIC EFFICACY OF THE EPIGENETIC DRUGS VORINOSTAT (SAHA) AND CLADRIBINE IN THIS DISEASE. WE DEMONSTRATE THAT HISTONE DEACETYLASES (HDACS) ARE OVER-EXPRESSED IN BOTH AGGRESSIVE AND CHRONIC NK LEUKAEMIA. ADMINISTRATION OF THE HDAC INHIBITOR SAHA REDUCES CLASS I AND II HDAC EXPRESSION AND ENHANCES HISTONE ACETYLATION IN LEUKAEMIC NK CELLS. IN VITRO COMBINATION TREATMENT WITH SAHA AND CLADRIBINE DOSE-DEPENDENTLY EXERTS SYNERGISTIC CYTOTOXIC AND APOPTOTIC EFFECTS ON LEUKAEMIC NK CELLS. EXPRESSION PROFILING OF APOPTOTIC REGULATORY GENES SUGGESTS THAT BOTH COMPOUNDS LED TO CASPASE-DEPENDENT APOPTOSIS THROUGH ACTIVATION OF INTRINSIC MITOCHONDRIAL AND EXTRINSIC DEATH RECEPTOR PATHWAYS. COLLECTIVELY, THESE DATA SHOW THAT COMBINED EPIGENETIC THERAPY, USING HDAC AND DNA METHYLTRANSFERASE INHIBITORS, MAY BE A PROMISING THERAPEUTIC APPROACH FOR NK-LGL LEUKAEMIA. 2015 5 439 26 ANTILEUKEMIC ACTIVITY OF VALPROIC ACID IN CHRONIC LYMPHOCYTIC LEUKEMIA B CELLS DEFINED BY MICROARRAY ANALYSIS. EPIGENETIC CODE MODIFICATIONS BY HISTONE DEACETYLASE INHIBITORS HAVE RECENTLY BEEN PROPOSED AS POTENTIAL NEW THERAPIES FOR HEMATOLOGICAL MALIGNANCIES. CHRONIC LYMPHOCYTIC LEUKEMIA (CLL) REMAINS INCURABLE DESPITE THE INTRODUCTION OF NEW TREATMENTS. CLL B CELLS ARE CHARACTERIZED BY AN APOPTOSIS DEFECT RATHER THAN EXCESSIVE PROLIFERATION, BUT PROLIFERATION CENTERS HAVE BEEN FOUND IN ORGANS SUCH AS THE BONE MARROW AND LYMPH NODES. IN THIS STUDY, WE ANALYZED GENE EXPRESSION MODIFICATIONS IN CLL B CELLS AFTER TREATMENT WITH VALPROIC ACID (VPA), A WELL-TOLERATED ANTI-EPILEPTIC DRUG WITH HDAC INHIBITORY ACTIVITY. CLL B CELLS OBTAINED FROM 14 PATIENTS WERE TREATED IN VITRO WITH A CONCENTRATION OF 1 MM VPA FOR 4 H. VPA EFFECTS ON GENE EXPRESSION WERE THEREAFTER STUDIED USING AFFYMETRIX TECHNOLOGY, AND SOME IDENTIFIED GENES WERE VALIDATED BY REAL-TIME PCR AND WESTERN BLOT. WE OBSERVED THAT VPA INDUCED APOPTOSIS BY DOWNREGULATING SEVERAL ANTI-APOPTOTIC GENES AND BY UPREGULATING PRO-APOPTOTIC GENES. FURTHERMORE, VPA SIGNIFICANTLY INCREASED CHEMOSENSITIVITY TO FLUDARABINE, FLAVOPIRIDOL, BORTEZOMIB, THALIDOMIDE AND LENALIDOMIDE. VPA INHIBITED THE PROLIFERATION OF CPG/IL2-STIMULATED CLL B CELLS AND MODULATED MANY CELL CYCLE MESSENGER RNAS. IN CONCLUSION, EXPOSURE OF CLL B CELLS TO VPA INDUCED APOPTOSIS, POTENTIATED CHEMOTHERAPEUTIC AGENT EFFECTS AND INHIBITED PROLIFERATION. THESE DATA STRONGLY SUGGEST THE USE OF VPA IN CLL TREATMENT, PARTICULARLY IN COMBINATION WITH ANTILEUKEMIA AGENTS. 2009 6 2326 36 EPIGENETIC REGULATION OF HOTAIR IN ADVANCED CHRONIC MYELOID LEUKEMIA. PURPOSE: CHRONIC MYELOID LEUKEMIA (CML) ACCOUNTS FOR ~10% OF LEUKEMIA CASES, AND ITS PROGRESSION INVOLVES EPIGENETIC GENE REGULATION. THIS STUDY INVESTIGATED EPIGENETIC REGULATION OF HOTAIR AND ITS TARGET MICRORNA, MIR-143, IN ADVANCED CML. PATIENTS AND METHODS: WE FIRST ISOLATED BONE MARROW MONONUCLEAR CELLS FROM 70 PATIENTS WITH DIFFERENT PHASES OF CML AND FROM HEALTHY DONORS AS NORMAL CONTROL; WE ALSO CULTURED K562 AND KCL22 CELLS, TREATED WITH DEMETHYLATION DRUG; MTT ASSAY, FLOW CYTOMETRY, QUANTITATIVE REAL-TIME POLYMERASE CHAIN REACTION (QPCR), METHYLATION-SPECIFIC POLYMERASE CHAIN REACTION (MSP), WESTERN BLOT, LUCIFERASE ASSAY, RNA PULL-DOWN ASSAY AND RNA-BINDING PROTEIN IMMUNOPRECIPITATION (RIP) ASSAY WERE PERFORMED. RESULT: AS MEASURED BY QPCR, HOTAIR EXPRESSION IN K562 CELLS, KCL22 CELLS, AND SAMPLES FROM CASES OF ADVANCED-STAGE CML INCREASED WITH LEVELS OF SEVERAL DNA METHYLTRANSFERASES AND HISTONE DEACETYLATES, INCLUDING DNMT1, DNMT3A, HDAC1, EZH2, AND LSD1, AND MIR-143 LEVELS WERE DECREASED AND HOTAIR LEVELS WERE INCREASED. TREATMENT WITH 5-AZACYTIDINE, A DNA METHYLATION INHIBITOR, DECREASED DNMT1, DNMT3A, HDAC1, EZH2, LSD1 MRNA, PROTEIN LEVELS, AND HOTAIR MRNA LEVELS BUT INCREASED MIR-143 LEVELS. HOTAIR KNOCKDOWN AND MIR-143 OVEREXPRESSION BOTH INHIBITED PROLIFERATION AND PROMOTED APOPTOSIS IN KCL22 AND K562 CELLS THROUGH THE PI3K/AKT PATHWAY. RNA PULL-DOWN, MASS SPECTROMETRY, AND RIP ASSAYS SHOWED THAT HOTAIR INTERACTED WITH EZH2 AND LSD1. A DUAL-LUCIFERASE ASSAY DEMONSTRATED THAT HOTAIR INTERACTED WITH MIR-143. CONCLUSION: OUR FINDINGS DEMONSTRATE THE KEY EPIGENETIC INTERACTIONS OF HOTAIR RELATED TO CML PROGRESSION AND SUGGEST HOTAIR AS A POTENTIAL THERAPEUTIC TARGET FOR ADVANCED CML. FURTHERMORE, OUR RESULTS SUPPORT THE USE OF DEMETHYLATION DRUGS AS A CML TREATMENT STRATEGY. 2018 7 6688 31 VALPROATE SYNERGIZES WITH PURINE NUCLEOSIDE ANALOGUES TO INDUCE APOPTOSIS OF B-CHRONIC LYMPHOCYTIC LEUKAEMIA CELLS. RESISTANCE TO CHEMOTHERAPY AND DRUG TOXICITY ARE TWO MAJOR CONCERNS OF CHRONIC LYMPHOCYTIC LEUKAEMIA (B-CLL) TREATMENT BY PURINE NUCLEOSIDE ANALOGUES (PNA, I.E. FLUDARABINE AND CLADRIBINE). WE HYPOTHESIZED THAT TARGETING EPIGENETIC CHANGES MIGHT ADDRESS THESE ISSUES AND EVALUATED THE EFFECT OF THE HISTONE DEACETYLASE INHIBITOR VALPROATE (VPA) AT A CLINICALLY RELEVANT CONCENTRATION. VPA ACTED IN A HIGHLY SYNERGISTIC/ADDITIVE MANNER WITH FLUDARABINE AND CLADRIBINE TO INDUCE APOPTOSIS OF B-CLL CELLS. IMPORTANTLY, VPA ALSO RESTORED SENSITIVITY TO FLUDARABINE IN B CELLS FROM POOR PROGNOSIS CLL PATIENTS WHO BECAME RESISTANT TO CHEMOTHERAPY. MECHANISM OF APOPTOSIS INDUCED BY VPA ALONE OR COMBINED WITH FLUDARABINE OR TO CLADRIBINE WAS CASPASE-DEPENDENT AND INVOLVED THE EXTRINSIC PATHWAY. VPA, BUT NEITHER FLUDARABINE NOR CLADRIBINE, ENHANCED THE PRODUCTION OF REACTIVE OXYGEN SPECIES (ROS) AND INHIBITION OF ROS WITH N-ACETYLCYSTEINE DECREASES APOPTOSIS OF CLL CELLS. VPA STIMULATES HYPERPHOSPHORYLATION OF P42/P44 ERK, CYTOCHROME C RELEASE AND OVEREXPRESSION OF BAX AND FAS. TOGETHER, OUR DATA INDICATE THAT VPA MAY AMELIORATE THE OUTCOME OF PNA-BASED THERAPEUTIC PROTOCOLS AND PROVIDE A POTENTIAL ALTERNATIVE TREATMENT IN BOTH THE RELAPSED AND FRONT-LINE RESISTANT PATIENTS AND IN PATIENTS WITH HIGH RISK FEATURES. 2009 8 6402 27 THE ROLES OF EPIGENETIC MODIFICATIONS OF PROAPOPTOTIC BID AND BIM GENES IN IMATINIB-RESISTANT CHRONIC MYELOID LEUKEMIA CELLS. IN CHRONIC MYELOID LEUKEMIA (CML), EPIGENETIC MODIFICATIONS SUCH AS PROMOTER HYPERMETHYLATION AND INACTIVE HISTONE MODIFICATION ARE KNOWN MECHANISMS OF DRUG RESISTANCE. IN OUR STUDY, WE INVESTIGATED THE ROLES OF PROMOTER HYPERMETHYLATION OF BIM AND BID GENES AND H3K27ME3 HISTONE MODIFICATION ON IMATINIB RESISTANCE. WE DETECTED HIGHER EXPRESSION LEVELS OF BIM AND BID GENES AND LOWER EXPRESSION LEVELS OF EZH2, EED2, SIRT1, AND SUZ12 GENES IN IMATINIB-RESISTANT K562/IMA-3 CELLS COMPARED TO IMATINIB-NON-RESISTANT K562 CELLS. WHILE WE DETERMINED THE EZH2 AND DNMT ENZYMES AS BOUNDED TO THE PROMOTER OF THE BIM GENE, WE DID NOT DETECT HYPERMETHYLATION OF THIS PROMOTER. WE ALSO FOUND THE H3K27ME3 HISTONE MODIFICATION PROMOTER OF BIM AND BID GENES IN BOTH CELL LINES. IN CONCLUSION, OUR RESULTS SUPPORT THE NOTION THAT DNA PROMOTER METHYLATION MAY BE FORMED INDEPENDENTLY FROM EZH2-H3K27ME3 AND PRO-APOPTOTIC BIM AND BID GENES ARE NOT METHYLLATED IN THE IMATINIB RESISTANCE OF CML CELLS. 2013 9 1211 35 CPG ISLAND METHYLATION AND EXPRESSION OF THE SECRETED FRIZZLED-RELATED PROTEIN GENE FAMILY IN CHRONIC LYMPHOCYTIC LEUKEMIA. B-CELL CHRONIC LYMPHOCYTIC LEUKEMIA (CLL) IS CHARACTERIZED BY A CLONAL ACCUMULATION OF MATURE NEOPLASTIC B CELLS INDICATING DISRUPTION OF APOPTOSIS. RESTRICTION LANDMARK GENOME SCANNING WAS DONE TO IDENTIFY NOVEL TARGET GENES SILENCED BY CPG ISLAND METHYLATION IN CLL. SECRETED FRIZZLED-RELATED PROTEIN 4 (SFRP4), A NEGATIVE REGULATOR OF THE WNT SIGNALING PATHWAY, WAS FOUND TO BE FREQUENTLY METHYLATED IN CLL SAMPLES. WNT SIGNALING HAS BEEN SHOWN TO CONTROL NORMAL APOPTOTIC BEHAVIOR AND IS REQUIRED FOR NORMAL B-CELL DEVELOPMENT WHEREAS ABERRANT ACTIVATION OF THIS PATHWAY HAS BEEN OBSERVED IN CLL. WE SHOW ABERRANT DNA METHYLATION AND SILENCING OF SFRP4, AS WELL AS OF ADDITIONAL SFRP FAMILY MEMBERS, IN PRIMARY CLL SAMPLES. INDUCTION OF THEIR EXPRESSION IN A DOSE-DEPENDENT MANNER FOLLOWING TREATMENT WITH A DEMETHYLATING AGENT, 5-AZA-2'-DEOXYCYTIDINE, WAS SHOWN. OF THE FIVE SFRP FAMILY MEMBERS STUDIED IN DETAIL, SFRP1 WAS HYPERMETHYLATED AND DOWN-REGULATED IN ALL CLL PATIENT SAMPLES STUDIED, SUGGESTING THAT THIS EPIGENETIC EVENT IS A CRITICAL STEP DURING LEUKEMOGENESIS. OUR RESULTS SUGGEST THAT SILENCING OF SFRPS BY CPG ISLAND METHYLATION IS ONE POSSIBLE MECHANISM CONTRIBUTING TO ABERRANT ACTIVATION OF WNT SIGNALING PATHWAY IN CLL. 2006 10 1272 28 CYTOTOXIC ACTIVITY OF VALPROIC ACID ON PRIMARY CHRONIC LYMPHOCYTIC LEUKEMIA CELLS. BACKGROUND: CHRONIC LYMPHOCYTIC LEUKEMIA (CLL) IS THE MOST COMMON ADULT LEUKEMIA IN WESTERN CIVILIZATION. THE ACCUMULATION OF CD5+CD19+ B LYMPHOCYTES IN PERIPHERAL BLOOD IS DUE TO A DEFECT IN THE APOPTOTIC PATHWAY RATHER THAN EXCESSIVE PROLIFERATION IN THE BONE MARROW AND LYMPH NODES. DESPITE A NUMBER OF TREATMENTS, CLL REMAINS AN INCURABLE DISEASE. VALPROIC ACID (VPA) ACTIVITY, AS A HISTONE DEACETYLASE INHIBITOR, COULD RESTORE THE EPIGENETIC CHANGES UNDERLYING THE PATHOGENESIS OF CLL AND THUS INDUCE CELL DEATH. OBJECTIVES: IN THE PRESENT STUDY WE HYPOTHESIZED THAT VPA COULD INDUCE CLL PRIMARY CELLS DEATH THROUGH ACTIVATION OF APOPTOSIS. MATERIAL AND METHODS: PERIPHERAL BLOOD SAMPLES WERE OBTAINED FROM 53 CLL PATIENTS. PERIPHERAL BLOOD MONONUCLEAR CELLS WERE ISOLATED THROUGH DENSITY GRADIENT CENTRIFUGATION AND WERE THE SUBJECT OF A 24-HOUR CELL CULTURE WITH 10 MM OF VPA. THE CYTOTOXIC EFFECT OF VPA WAS EVALUATED WITH AN XTT TEST AND THEREAFTER CONFIRMED USING ANNEXIN V-FITC/PI STAINING AND FLOW CYTOMETRY TECHNIQUES. RESULTS: IN THIS STUDY, A MEDIAN VPA CYTOTOXICITY OF 13.88% WITH A RANGE OF 0-54.65% WAS OBSERVED. ANNEXIN V/PI STAINING CONFIRMED THAT THE DEMONSTRATED CYTOTOXICITY WAS CAUSED BY INCREASED APOPTOSIS IN THE VPA TREATED CELLS AS COMPARED TO CONTROL CELLS. STATISTICAL ANALYSIS SHOWED THAT VPA'S EFFECT ON CLL CELLS DEPENDS ON LACTATE DEHYDROGENASE SERUM LEVELS, BUT IS INDEPENDENT OF ALL OTHER PROGNOSTIC MARKERS. CONCLUSIONS: THE RESULTS OF THE PRESENT EXPERIMENTS FOUND THAT VPA AT A CLINICALLY APPLICABLE CONCENTRATION SIGNIFICANTLY INDUCES APOPTOSIS INDEPENDENTLY OF THE DISEASE STAGE AND MIGHT BE A VALUABLE THERAPEUTIC AGENT FOR ALL CLL PATIENTS. 2015 11 4548 33 MUTATION ANALYSIS OF THE FAS AND TNFR APOPTOTIC CASCADE GENES IN HEMATOLOGICAL MALIGNANCIES. OBJECTIVE: THE EXISTENCE OF PROPERLY FUNCTIONING APOPTOTIC PATHWAYS IS OF UTMOST IMPORTANCE IN THE MAINTENANCE OF A NORMAL CELL COUNT. SEVERAL GROUPS HAVE SEARCHED FOR MUTATIONS IN THE FAS RECEPTOR, A WELL-CHARACTERIZED APOPTOTIC PROTEIN CARRYING A DEATH DOMAIN, AND REPORTED THE EXISTENCE OF RARE MUTATIONS IN MULTIPLE MYELOMA, T-ACUTE LYMPHOBLASTIC LEUKEMIA (T-ALL), AND ADULT T-CELL LEUKEMIA. OUR AIM WAS TO EXPAND THESE SEARCHES BY LOOKING FOR MUTATIONS IN THE DEATH DOMAINS OF FAS, FADD, TNFR, TRADD, AND RIP, IN THE PROMOTER REGION OF FAS, AND IN THE PROTEASE DOMAIN OF CASPASE 10, IN A LARGER VARIETY OF HEMATOLOGICAL MALIGNANCIES, SOME OF WHICH EXPRESS AN APOPTOSIS-RESISTANT PHENOTYPE. METHODS: WE EXTRACTED RNA AND DNA SAMPLES FROM 92 HEMATOLOGICAL MALIGNANCIES: CHRONIC LYMPHOCYTIC LEUKEMIA (CLL; 31 CASES), CHRONIC MYELOGENOUS LEUKEMIA (CML; 28 CASES), ESSENTIAL THROMBOCYTHEMIA (ET; 8 CASES), ACUTE LYMPHOCYTIC LEUKEMIA (ALL; 6 CASES), ACUTE MYELOBLASTIC LEUKEMIA (AML; 6 CASES), HAIRY-CELL LEUKEMIA (HCL; 3 CASES), BURKITT'S LYMPHOMA (3 CASES), POLYCYTHEMIA VERA (PV; 3 CASES), MYELOFIBROSIS (2 CASES), AND CHRONIC MYELOMONOCYTIC LEUKEMIA (CMML; 2 CASES) AND PERFORMED PCR-SSCP AND SEQUENCE ANALYSIS ON THESE SAMPLES. RESULTS: FIVE POLYMORPHIC PATTERNS WERE FOUND: THREE IN THE DEATH DOMAIN OF THE FAS GENE IN CML PATIENTS, ONE IN THE PROMOTER OF THIS GENE IN A CLL PATIENT, AND THE FIFTH IN THE DEATH DOMAIN OF THE TRADD GENE IN A CML PATIENT. NO MUTATIONS, ALTERING AMINO ACIDS, WERE FOUND IN THESE GENES IN ANY OF THE AFOREMENTIONED MALIGNANCIES. CONCLUSIONS: THESE OBSERVATIONS IMPLY THAT MUTATIONS IN THE DEATH DOMAINS OF FAS, FADD, TNFR, TRADD, AND RIP AND IN THE PROTEASE DOMAIN OF CASPASE 10 ARE NOT A MAJOR CAUSE FOR FAILURE OF APOPTOSIS IN HEMATOLOGICAL MALIGNANCIES, MAINLY CML AND CLL. REGULATORY AND EPIGENETIC ABNORMALITIES IN THESE APOPTOTIC CASCADE MEMBERS AND ABERRATIONS IN OTHER COMPONENTS OF ALL DEATH MACHINERY SHOULD BE LOOKED FOR. 2001 12 6455 36 THYMOQUINONE ENHANCES APOPTOSIS OF K562 CHRONIC MYELOID LEUKEMIA CELLS THROUGH HYPOMETHYLATION OF SHP-1 AND INHIBITION OF JAK/STAT SIGNALING PATHWAY. THE EPIGENETIC SILENCING OF TUMOR SUPPRESSOR GENES (TSGS) IS CRITICAL IN THE DEVELOPMENT OF CHRONIC MYELOID LEUKEMIA (CML). SHP-1 FUNCTIONS AS A TSG AND NEGATIVELY REGULATES JAK/STAT SIGNALING. ENHANCEMENT OF SHP-1 EXPRESSION BY DEMETHYLATION PROVIDES MOLECULAR TARGETS FOR THE TREATMENT OF VARIOUS CANCERS. THYMOQUINONE (TQ), A CONSTITUENT OF NIGELLA SATIVA SEEDS, HAS SHOWN ANTI-CANCER ACTIVITIES IN VARIOUS CANCERS. HOWEVER, TQS EFFECT ON METHYLATION IS NOT FULLY CLEAR. THEREFORE, THE AIM OF THIS STUDY IS TO ASSESS TQS ABILITY TO ENHANCE THE EXPRESSION OF SHP-1 THROUGH MODIFYING DNA METHYLATION IN K562 CML CELLS. THE ACTIVITIES OF TQ ON CELL CYCLE PROGRESSION AND APOPTOSIS WERE EVALUATED USING A FLUOROMETRIC-RED CELL CYCLE ASSAY AND ANNEXIN V-FITC/PI, RESPECTIVELY. THE METHYLATION STATUS OF SHP-1 WAS STUDIED BY PYROSEQUENCING ANALYSIS. THE EXPRESSION OF SHP-1, TET2, WT1, DNMT1, DNMT3A, AND DNMT3B WAS DETERMINED USING RT-QPCR. THE PROTEIN PHOSPHORYLATION OF STAT3, STAT5, AND JAK2 WAS ASSESSED USING JESS WESTERN ANALYSIS. TQ SIGNIFICANTLY DOWNREGULATED THE DNMT1 GENE, DNMT3A GENE, AND DNMT3B GENE AND UPREGULATED THE WT1 GENE AND TET2 GENE. THIS LED TO HYPOMETHYLATION AND RESTORATION OF SHP-1 EXPRESSION, RESULTING IN INHIBITION OF JAK/STAT SIGNALING, INDUCTION OF APOPTOSIS, AND CELL CYCLE ARREST. THE OBSERVED FINDINGS IMPLY THAT TQ PROMOTES APOPTOSIS AND CELL CYCLE ARREST IN CML CELLS BY INHIBITING JAK/STAT SIGNALING VIA RESTORATION OF THE EXPRESSION OF JAK/STAT-NEGATIVE REGULATOR GENES. 2023 13 1213 30 CPG ISLAND METHYLATION PATTERNS IN CHRONIC LYMPHOCYTIC LEUKEMIA. CHRONIC LYMPHOCYTIC LEUKEMIA (CLL) IS THE MOST COMMON LEUKEMIA IN WESTERN COUNTRIES. IN CLL, A LARGE NUMBER OF GENES AFFECTING CANCER-RELATED PATHWAYS MAY BE DYSREGULATED BY EPIGENETIC SILENCING. WE ANALYSED BY METHYLATION-SPECIFIC POLYMERASE CHAIN REACTION THE CPG ISLAND METHYLATION STATUS OF 15 WELL-CHARACTERISED CANCER-RELATED GENES IN 32 PATIENTS WITH CLL. ABERRANT METHYLATION IN THE SAMPLE OF PATIENTS WITH CLL WAS SHOWN FOR SECRETED FRIZZLED-RELATED PROTEIN 1 (68.8%), SECRETED FRIZZLED-RELATED PROTEIN 2 (65.6%), DEATH-ASSOCIATED PROTEIN KINASE 1 (50.0%), E-CADHERIN (21.9%), SECRETED FRIZZLED-RELATED PROTEIN 4 (15.6%), P15 (9.4%), P16 (6.3%), RETINOIC ACID RECEPTOR BETA2 (3.1%), SECRETED FRIZZLED-RELATED PROTEIN 5 (3.1%) AND TISSUE INHIBITOR OF MATRIX METALLOPROTEINASES 3 (3.1%). FOR HUMAN MUT-L HOMOLOG 1, O(6)-METHYLGUANINE DNA METHYLTRANSFERASE, P73, SUPPRESSOR OF CYTOKINE SIGNALLING 1 AND TISSUE INHIBITOR OF MATRIX METALLOPROTEINASES 2 NO HYPERMETHYLATION WAS DETECTED. HYPERMETHYLATION OF AT LEAST ONE GENE WAS OBSERVED IN 87.5% OF THE SAMPLES. OUR RESULTS SHOW THAT ABERRANT CPG ISLAND METHYLATION AFFECTING CANCER-RELATED PATHWAYS SUCH AS WNT SIGNALLING, REGULATION OF APOPTOSIS, CELL CYCLE CONTROL AND TISSUE INVASION IS A COMMON PHENOMENON IN CLL. EPIGENETIC DISTURBANCES MAY BE INVOLVED IN THE PATHOGENESIS OF CLL AND THUS MAY PROVIDE A MOLECULAR RATIONALE FOR THERAPEUTIC APPROACHES. 2009 14 479 36 ARSENIC TRIOXIDE INHIBITS DNA METHYLTRANSFERASE AND RESTORES TMS1 GENE EXPRESSION IN K562 CELLS. BACKGROUND: GENE SILENCING ASSOCIATED WITH ABERRANT METHYLATION OF PROMOTER REGION CPG ISLANDS IS AN ACQUIRED EPIGENETIC ALTERATION THAT SERVES AS AN ALTERNATIVE TO GENETIC DEFECTS IN THE INACTIVATION OF TUMOR SUPPRESSOR GENES IN HUMAN CANCERS. THE DEMETHYLATING, DOSE-DEPENDENT EFFECT OF ARSENIC TRIOXIDE (AS2O3) ON SEVERAL TUMOR-RELATED GENES HAS ALREADY BEEN POSTULATED. HOWEVER, WHETHER SUCH A DEMETHYLATING EFFECT ALSO APPLIES TO THE TMS1 GENE IN CHRONIC MYELOID LEUKEMIA CELL LINE K562 CELLS HAS NOT BEEN STUDIED SO FAR. THE AIM OF THE PRESENT STUDY WAS TO DETECT THE METHYLATION STATUS OF THE TMS1 GENE IN K562 CELLS AND THE DEMETHYLATION EFFECT OF AS2O3 ON TMS1 AS WELL AS TMS1 APOPTOSIS-ASSOCIATED PROTEIN BCL-2/BAX AND DNA METHYLTRANSFERASE (DNMT) EXPRESSION. METHODS: TMS1 MRNA EXPRESSION IN K562 CELLS AND NORMAL BONE MARROW WAS DETERMINED BY REVERSE TRANSCRIPTION (RT) POLYMERASE CHAIN REACTION (PCR), AND THE DNA METHYLATION STATUS OF THE TMS1 PROMOTER IN K562 CELLS TREATED WITH DIFFERENT CONCENTRATIONS OF AS2O3 FOR 48 H WAS DETERMINED BY METHYLATION-SPECIFIC PCR. RT-PCR AND WESTERN BLOT WERE USED TO DETECT TMS1 AND DNMT EXPRESSION. WE ALSO ASSESSED TMS1-ASSOCIATED APOPTOSIS PROTEIN BCL-2/BAX EXPRESSION BY WESTERN BLOT AND APOPTOSIS RATES BY FLOW CYTOMETRY USING ANNEXIN V/PROPIDIUM IODIDE DOUBLE STAINING. RESULTS: IN K562 CELLS, TMS1 WAS COMPLETELY METHYLATED AND BOTH TMS1 MRNA AND PROTEIN SHOWED A LOW EXPRESSION, BUT 2 MUMOL/L AS2O3 COULD SIGNIFICANTLY RESTORE THE EXPRESSION OF THE TMS1 GENE BOTH AT MRNA AND PROTEIN LEVEL (P < 0.01) BY FULLY REVERSING DNA METHYLATION. AS2O3 DECREASED MRNA AND PROTEIN EXPRESSION OF DNMT1 (P < 0.05) IN A DOSE-DEPENDENT MANNER. FLOW CYTOMETRY SHOWED THAT IN THE EXPERIMENTAL GROUP (2 MUMOL/L AS2O3), CELL APOPTOSIS WAS SIGNIFICANTLY INCREASED COMPARED WITH THE CONTROL GROUP (NO AS2O3; P < 0.05). IN THE EXPERIMENTAL GROUP, WESTERN BLOT SHOWED THAT THE EXPRESSION OF THE ANTI-APOPTOTIC PROTEIN BCL-2 WAS SIGNIFICANTLY DECREASED; HOWEVER, THE PROAPOPTOTIC PROTEIN BAX WAS MARKEDLY INCREASED AND THE BCL-2/BAX RATIO WAS MARKEDLY REDUCED (P < 0.01). CONCLUSIONS: AS2O3 COULD RESTORE THE EXPRESSION OF TMS1 BY INHIBITING DNMT TO REVERSE THE HYPERMETHYLATION AND INDUCED APOPTOSIS OF K562 CELLS BY DOWNREGULATION OF BCL-2/BAX EXPRESSION. 2015 15 5458 34 RESEARCH ON EPIGENETIC MECHANISM OF SFRP2 IN ADVANCED CHRONIC MYELOID LEUKEMIA. SECRETED FRIZZLED-RELATED PROTEIN 2 (SFRP2) HAS BEEN REPORTED TO ACT AS A TUMOR SUPPRESSORS. THIS STUDY AIMS TO DETECT THE BIOLOGICAL ROLE OF SFRP2 IN ADVANCED CHRONIC MYELOID LEUKEMIA (CML). IN THIS STUDY WE EXAMINED BONE MARROW SAMPLES FROM 45 CML PATIENTS AND 10 HEALTHY DONORS. K562 AND KCL22 CELLS WERE CULTURED AND TREATED WITH DEMETHYLATION DRUG AND HISTONE DEACETYLASE INHIBITOR (HDACI). KCL22 AND K562 CELLS WERE TRANSFECTED WITH LENTIVIRAL VECTOR (LV)-SFRP2, LV-CONTROL. THE CELLS WERE THEN SUBJECTED TO PROLIFERATION AND APOPTOSIS ASSAYS, REAL TIME POLYMERASE CHAIN REACTION (PCR), METHYLATION-SPECIFIC PCR (MSP), WESTERN BLOTTING, CO-IMMUNOPRECIPITATION (COIP) AND CHROMATIN IMMUNOPRECIPITATION (CHIP), WE FOUND THAT SFRP2 WAS DOWN-REGULATED IN THE ACCELERATED AND BLAST PHASE OF CML, WHEREAS, THE LEVELS OF WNT1, WNT3 AND WNT5A WERE UP-REGULATED IN THE ACCELERATED AND BLAST PHASE OF CML. OVEREXPRESSION SFRP2 INHIBITED PROLIFERATION, PROMOTED APOPTOSIS AND ACTIVATED THE WNT PATHWAY. COIP-MS RESULTS SHOWED THAT SFRP2 INTERACTED WITH WNT1 AND WNT5A. CHIP-SEQ RESULT INDICATED THAT THE PROMOTER OF H3K4ME3 AND H3K27ME3 WERE ABLE TO INTERACT WITH SFRP2. IN CONCLUSION, OUR FINDINGS DEMONSTRATED THE SFRP2 ACT AS A POTENTIAL THERAPEUTIC TARGET FOR ADVANCED CML. FURTHERMORE, OUR RESULTS SUPPORT THE USE OF DEMETHYLATION DRUGS AND HDACI AS A POTENTIAL CML TREATMENT STRATEGY. 2018 16 1495 26 DNA HYPERMETHYLATION OF CELL CYCLE (P15 AND P16) AND APOPTOTIC (P14, P53, DAPK AND TMS1) GENES IN PERIPHERAL BLOOD OF LEUKEMIA PATIENTS. ABERRANT DNA METHYLATION OF TUMOR SUPPRESSOR GENES HAS BEEN REPORTED IN ALL MAJOR TYPES OF LEUKEMIA WITH POTENTIAL INVOLVEMENT IN THE INACTIVATION OF REGULATORY CELL CYCLE AND APOPTOSIS GENES. HOWEVER, MOST OF THE PREVIOUS REPORTS DID NOT SHOW THE EXTENT OF CONCURRENT METHYLATION OF MULTIPLE GENES IN THE FOUR LEUKEMIA TYPES. HERE, WE ANALYZED SIX KEY GENES (P14, P15, P16, P53, DAPK AND TMS1) FOR DNA METHYLATION USING METHYLATION SPECIFIC PCR TO ANALYZE PERIPHERAL BLOOD OF 78 LEUKEMIA PATIENTS (24 CML, 25 CLL, 12 AML, AND 17 ALL) AND 24 HEALTHY VOLUNTEERS. IN CML, METHYLATION WAS DETECTED FOR P15 (11%), P16 (9%), P53 (23%) AND DAPK (23%), IN CLL, P14 (25%), P15 (19%), P16 (12%), P53 (17%) AND DAPK (36%), IN AML, P14 (8%), P15 (45%), P53 (9%) AND DAPK (17%) AND IN ALL, P15 (14%), P16 (8%), AND P53 (8%). THIS STUDY HIGHLIGHTED AN ESSENTIAL ROLE OF DAPK METHYLATION IN CHRONIC LEUKEMIA IN CONTRAST TO P15 METHYLATION IN THE ACUTE CASES, WHEREAS TMS1 HYPERMETHYLATION WAS ABSENT IN ALL CASES. FURTHERMORE, HYPERMETHYLATION OF MULTIPLE GENES PER PATIENT WAS OBSERVED, WITH OBVIOUS SELECTIVENESS IN THE 9P21 CHROMOSOMAL REGION GENES (P14, P15 AND P16). INTERESTINGLY, METHYLATION OF P15 INCREASED THE RISK OF METHYLATION IN P53, AND VICE VERSA, BY FIVE FOLDS (P=0.03) INDICATING POSSIBLE SYNERGISTIC EPIGENETIC DISRUPTION OF DIFFERENT PHASES OF THE CELL CYCLE OR BETWEEN THE CELL CYCLE AND APOPTOSIS. THE INVESTIGATION OF MULTIPLE RELATIONSHIPS BETWEEN METHYLATED GENES MIGHT SHED LIGHT ON TUMOR SPECIFIC INACTIVATION OF THE CELL CYCLE AND APOPTOTIC PATHWAYS. 2014 17 3877 40 KDM6A PROMOTES IMATINIB RESISTANCE THROUGH YY1-MEDIATED TRANSCRIPTIONAL UPREGULATION OF TRKA INDEPENDENTLY OF ITS DEMETHYLASE ACTIVITY IN CHRONIC MYELOGENOUS LEUKEMIA. RATIONALE: DESPITE LANDMARK THERAPY OF CHRONIC MYELOGENOUS LEUKEMIA (CML) WITH TYROSINE KINASE INHIBITORS (TKIS), DRUG RESISTANCE REMAINS PROBLEMATIC. CANCER PATHOGENESIS INVOLVES EPIGENETIC DYSREGULATION AND IN PARTICULAR, HISTONE LYSINE DEMETHYLASES (KDMS) HAVE BEEN IMPLICATED IN TKI RESISTANCE. WE SOUGHT TO IDENTIFY KDMS WITH ALTERED EXPRESSION IN CML AND DEFINE THEIR CONTRIBUTION TO IMATINIB RESISTANCE. METHODS: BIOINFORMATICS SCREENING COMPARED KDM EXPRESSION IN CML VERSUS NORMAL BONE MARROW WITH SHRNA KNOCKDOWN AND FLOW CYTOMETRY USED TO MEASURE EFFECTS ON IMATINIB-INDUCED APOPTOSIS IN K562 CELLS. TRANSCRIPTOMIC ANALYSES WERE PERFORMED AGAINST KDM6A CRISPR KNOCKOUT/SHRNA KNOCKDOWN K562 CELLS ALONG WITH GENE RESCUE EXPERIMENTS USING WILDTYPE AND MUTANT DEMETHYLASE-DEAD KDM6A CONSTRUCTS. CO-IMMUNOPRECIPITATION, LUCIFERASE REPORTER AND CHIP WERE EMPLOYED TO ELUCIDATE MECHANISMS OF KDM6A-DEPENDENT RESISTANCE. RESULTS: AMONGST FIVE KDMS UPREGULATED IN CML, ONLY KDM6A DEPLETION SENSITIZED CML CELLS TO IMATINIB-INDUCED APOPTOSIS. RE-INTRODUCTION OF DEMETHYLASE-DEAD KDM6A AS WELL AS WILD-TYPE KDM6A RESTORED IMATINIB RESISTANCE. RNA-SEQ IDENTIFIED NTRK1 GENE DOWNREGULATION AFTER DEPLETION OF KDM6A. MOREOVER, NTRK1 EXPRESSION POSITIVELY CORRELATED WITH KDM6A IN A SUBSET OF CLINICAL CML SAMPLES AND KDM6A KNOCKDOWN IN FRESH CML ISOLATES DECREASED NTRK1 ENCODED PROTEIN (TRKA) EXPRESSION. MECHANISTICALLY, KDM6A WAS RECRUITED TO THE NTRK1 PROMOTER BY THE TRANSCRIPTION FACTOR YY1 WITH SUBSEQUENT TRKA UPREGULATION ACTIVATING DOWN-STREAM SURVIVAL PATHWAYS TO INVOKE IMATINIB RESISTANCE. CONCLUSION: CONTRARY TO ITS REPORTED ROLE AS A TUMOR SUPPRESSOR AND INDEPENDENT OF ITS DEMETHYLASE FUNCTION, KDM6A PROMOTES IMATINIB-RESISTANCE IN CML CELLS. THE IDENTIFICATION OF THE KDM6A/YY1/TRKA AXIS AS A NOVEL IMATINIB-RESISTANCE MECHANISM REPRESENTS AN UNEXPLORED AVENUE TO OVERCOME TKI RESISTANCE IN CML. 2021 18 6238 33 THE MALIGNANCY SUPPRESSION ROLE OF MIR-23A BY TARGETING THE BCR/ABL ONCOGENE IN CHROMIC MYELOID LEUKEMIA. THE AIM OF THIS STUDY WAS TO INVESTIGATE THE ROLE AND MECHANISM OF MIR-23A IN THE REGULATION OF BCR/ABL AND TO PROVIDE A NEW PROGNOSTIC BIOMARKER FOR CHRONIC MYELOID LEUKEMIA (CML). THE EXPRESSION LEVELS OF MIR-23A AND BCR/ABL WERE ASSESSED IN 42 NEWLY DIAGNOSED CML PATIENTS, 37 CML PATIENTS IN FIRST COMPLETE REMISSION AND 25 HEALTHY CONTROLS. QUANTITATIVE REAL-TIME PCR, WESTERN BLOT ANALYSIS AND COLONY FORMATION ASSAY WERE USED TO EVALUATE CHANGES INDUCED BY OVEREXPRESSION OR INHIBITION OF MIR-23A OR BCR/ABL. MIR-23A MIMIC OR NEGATIVE CONTROL MIMIC WAS TRANSFECTED INTO A CML CELL LINE (K562) AND TWO LUNG CANCER CELL LINES (H157 AND SKMES1) USING LIPOFECTAMINE 2000, AND THE CELLS WERE USED FOR REAL-TIME REVERSE TRANSCRIPTION-PCR (RT-PCR) AND WESTERN BLOT ANALYSIS. WE FOUND THAT THE DOWNREGULATION OF MIR-23A EXPRESSION WAS A FREQUENT EVENT IN BOTH LEUKEMIA CELL LINES AND PRIMARY LEUKEMIC CELLS FROM PATIENTS WITH DE NOVO CML. THE MICROARRAY RESULTS SHOWED THAT MOST OF THE CML PATIENTS EXPRESSED HIGH LEVELS OF BCR/ABL AND LOW LEVELS OF MIR-23A. REAL-TIME RT-PCR AND WESTERN BLOT ANALYSIS SHOWED THAT THE BCR/ABL LEVELS IN MIR-23A-TRANSFECTED CELLS WERE LOWER THAN THOSE IN THE CONTROL GROUPS. ECTOPIC EXPRESSION OF MIR-23A IN K562 CELLS LED TO CELLULAR SENESCENCE. MOREOVER, WHEN K562 CELLS WERE TREATED WITH 5-AZA-2'-DEOXYCYTIDINE, A DNA METHYLATION INHIBITOR, BCR/ABL EXPRESSION WAS UPREGULATED, WHICH INDICATES EPIGENETIC SILENCING OF MIR-23A IN LEUKEMIC CELLS. BCR/ABL AND MIR-23A EXPRESSIONS WERE INVERSELY RELATED TO CML, AND BCR/ABL EXPRESSION WAS REGULATED BY MIR-23A IN LEUKEMIC CELLS. THE EPIGENETIC SILENCING OF MIR-23A LED TO DEREPRESSION OF BCR/ABL EXPRESSION, AND CONSEQUENTLY CONTRIBUTES TO CML DEVELOPMENT AND PROGRESSION. 2014 19 4908 42 P53 ACTIVATION BY NI(II) IS A HIF-1ALPHA INDEPENDENT RESPONSE CAUSING CASPASES 9/3-MEDIATED APOPTOSIS IN HUMAN LUNG CELLS. HYPOXIA MIMIC NICKEL(II) IS A HUMAN RESPIRATORY CARCINOGEN WITH A SUSPECTED EPIGENETIC MODE OF ACTION. WE EXAMINED WHETHER NI(II) ELICITS A TOXICOLOGICALLY SIGNIFICANT ACTIVATION OF THE TUMOR SUPPRESSOR P53, WHICH IS TYPICALLY ASSOCIATED WITH GENOTOXIC RESPONSES. WE FOUND THAT TREATMENTS OF H460 HUMAN LUNG EPITHELIAL CELLS WITH NICL2 CAUSED ACTIVATING PHOSPHORYLATION AT P53-SER15, ACCUMULATION OF P53 PROTEIN AND DEPLETION OF ITS INHIBITOR MDM4 (HDMX). CONFIRMING THE ACTIVATION OF P53, ITS KNOCKDOWN SUPPRESSED THE ABILITY OF NI(II) TO UPREGULATE MDM2 AND P21 (CDKN1A). UNLIKE DNA DAMAGE, INDUCTION OF GADD45A BY NI(II) WAS P53-INDEPENDENT. NI(II) ALSO INCREASED P53-SER15 PHOSPHORYLATION AND P21 EXPRESSION IN NORMAL HUMAN LUNG FIBROBLASTS. ALTHOUGH NI(II)-INDUCED STABILIZATION OF HIF-1ALPHA OCCURRED EARLIER, IT HAD NO EFFECT ON P53 ACCUMULATION AND SER15 PHOSPHORYLATION. NI(II)-TREATED H460 CELLS SHOWED NO EVIDENCE OF NECROSIS AND THEIR APOPTOSIS AND CLONOGENIC DEATH WERE SUPPRESSED BY P53 KNOCKDOWN. THE APOPTOTIC ROLE OF P53 INVOLVED A TRANSCRIPTION-DEPENDENT PROGRAM TRIGGERING THE INITIATOR CASPASE 9 AND ITS DOWNSTREAM EXECUTIONER CASPASE 3. TWO MOST PROMINENTLY UPREGULATED PROAPOPTOTIC GENES BY NI(II) WERE PUMA AND NOXA BUT ONLY PUMA INDUCTION REQUIRED P53. KNOCKDOWN OF P53 ALSO LED TO DEREPRESSION OF ANTIAPOPTOTIC MCL1 IN NI(II)-TREATED CELLS. OVERALL, OUR RESULTS INDICATE THAT P53 PLAYS A MAJOR ROLE IN APOPTOTIC DEATH OF HUMAN LUNG CELLS BY NI(II). CHRONIC EXPOSURE TO NI(II) MAY PROMOTE SELECTION OF RESISTANT CELLS WITH INACTIVATED P53, PROVIDING AN EXPLANATION FOR THE ORIGIN OF P53 MUTATIONS BY THIS EPIGENETIC CARCINOGEN. 2013 20 3828 32 INVOLVEMENT OF B-CELL CLL/LYMPHOMA 2 PROMOTER METHYLATION IN CIGARETTE SMOKE EXTRACT-INDUCED EMPHYSEMA. ABNORMAL APOPTOTIC EVENTS PLAY AN IMPORTANT ROLE IN THE PATHOGENESIS OF EMPHYSEMA. THE B-CELL CLL/LYMPHOMA 2 (BCL-2) FAMILY PROTEINS ARE ESSENTIAL AND CRITICAL REGULATORS OF APOPTOSIS. WE DETERMINED WHETHER THE ANTI-APOPTOTIC BCL-2 PLAY A ROLE IN THE CIGARETTE SMOKE EXTRACT (CSE)-INDUCED EMPHYSEMA. FURTHERMORE, GIVEN THE INVOLVEMENT OF EPIGENETICS IN CHRONIC OBSTRUCTIVE PULMONARY DISEASE, WE HYPOTHESIZED THAT THE DEREGULATION OF BCL-2 MIGHT BE CAUSED BY GENE METHYLATION. THE EMPHYSEMA IN BALB/C MICE WAS ESTABLISHED BY INTRAPERITONEALLY INJECTION OF CSE. 5-AZA-2'-DEOXYCYTIDINE (AZA; A DEMETHYLATION REAGENT) AND PHOSPHATE-BUFFERED SALINE WERE ALSO ADMINISTERED INTRAPERITONEALLY AS CSE. TUNEL ASSAY WAS USED TO ASSESS APOPTOTIC INDEX OF PULMONARY CELLS. THE METHYLATION STATUS OF CPG DINUCLEOTIDES WITHIN THE BCL-2 PROMOTER WAS OBSERVED IN ALL GROUPS BY BISULFITE SEQUENCING PCR. PULMONARY EXPRESSION OF BCL-2, BAX, AND CYTOCHROME C WERE MEASURED AFTER FOUR WEEKS OF TREATMENT. THE APOPTOTIC INDEX OF PULMONARY CELLS IN CSE INJECTION GROUP WAS MUCH HIGHER THAN CONTROL ((25.88 +/- 7.55)% VS (6.28 +/- 2.96)%). COMPARED TO CONTROL MICE, DECREASED EXPRESSION OF BCL-2 AND HIGH METHYLATION OF BCL-2 PROMOTER WAS OBSERVED IN CSE INJECTED MICE (0.88 +/- 0.08 VS 0.49 +/- 0.11, (3.82 +/- 1.34)% VS (35.68 +/- 5.99)%, P < 0.01).CSE TREATMENT INDUCED LUNG CELL APOPTOSIS AND DECREASED LUNG FUNCTION. AZA TREATMENT INCREASED BCL-2 EXPRESSION WITH BCL-2 PROMOTER DEMETHYLATION. AZA ALSO ALLEVIATED THE LUNG CELL APOPTOSIS AND FUNCTION FAILURE CAUSED BY CSE TREATMENT. THE DECREASED EXPRESSION OF ANTI-APOPTOTIC BCL-2 MIGHT ACCOUNT FOR THE INCREASED APOPTOSIS IN CSE INDUCED-EMPHYSEMA. APPARENTLY, EPIGENETIC ALTERNATION PLAYED A ROLE IN THIS DEREGULATION OF BCL-2 EXPRESSION, AND IT MIGHT SUPPORT THE INVOLVEMENT OF EPIGENETIC EVENTS IN THE PATHOGENESIS OF EMPHYSEMA. 2016