1 2390 129 EPIGENETIC REPRESSION OF CCDC37 AND MAP1B LINKS CHRONIC OBSTRUCTIVE PULMONARY DISEASE TO LUNG CANCER. INTRODUCTION: LUNG CANCER AND CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) SHARE ENVIRONMENTAL RISK FACTORS. COPD ALSO INCREASES THE RISK OF LUNG CANCER; HOWEVER, THE MOLECULAR MECHANISMS ARE UNCLEAR. METHODS: AN EPIGENOME-WIDE ASSOCIATION STUDY OF LUNG TUMORS AND CANCER-FREE LUNG TISSUE (CFLT) PAIRS FROM NON-SMALL-CELL LUNG CANCER CASES WITH (N = 18) OR WITHOUT (N = 17) COPD WAS CONDUCTED USING THE HUMANMETHYLATION450 BEADCHIP (HM450K). COPD-ASSOCIATED METHYLATION OF TOP-RANKED GENES WAS CONFIRMED IN A LARGER SAMPLE SET, INDEPENDENTLY VALIDATED, AND THEIR POTENTIAL AS SPUTUM-BASED BIOMARKERS WAS INVESTIGATED. RESULTS: METHYLATION OF CCDC37 AND MAP1B WAS MORE PREVALENT IN LUNG TUMORS FROM COPD THAN NON-COPD CASES [54 OF 71 (76%) VERSUS 20 OF 46 (43%), P = 0.0013] AND [48 OF 71 (68%) VERSUS 17 OF 46 (37%), P = 0.0035], RESPECTIVELY, AFTER ADJUSTMENT FOR AGE, SEX, SMOKING STATUS, AND TUMOR HISTOLOGY. HM450K PROBES ACROSS CCDC37 AND MAP1B PROMOTERS SHOWED HIGHER METHYLATION IN TUMORS THAN CFLT WITH THE HIGHEST METHYLATION SEEN IN TUMORS FROM COPD CASES (P < 0.05). THESE RESULTS WERE INDEPENDENTLY VALIDATED USING THE CANCER GENOME ATLAS DATA. CCDC37 METHYLATION WAS MORE PREVALENT IN SPUTUM FROM COPD THAN NON-COPD SMOKERS (P < 0.005) FROM TWO COHORTS. CCDC37 AND MAP1B EXPRESSION WAS DRAMATICALLY REPRESSED IN TUMORS AND CFLT FROM COPD THAN NON-COPD CASES, P LESS THAN 0.02. CONCLUSIONS: THE REDUCED EXPRESSION OF CCDC37 AND MAP1B ASSOCIATED WITH COPD LIKELY PREDISPOSES THESE GENES TO METHYLATION THAT IN TURN, MAY CONTRIBUTE TO LUNG CANCER. 2015 2 11 44 15Q12 VARIANTS, SPUTUM GENE PROMOTER HYPERMETHYLATION, AND LUNG CANCER RISK: A GWAS IN SMOKERS. BACKGROUND: LUNG CANCER IS THE LEADING CAUSE OF CANCER-RELATED MORTALITY WORLDWIDE. DETECTION OF PROMOTER HYPERMETHYLATION OF TUMOR SUPPRESSOR GENES IN EXFOLIATED CELLS FROM THE LUNG PROVIDES AN ASSESSMENT OF FIELD CANCERIZATION THAT IN TURN PREDICTS LUNG CANCER. THE IDENTIFICATION OF GENETIC DETERMINANTS FOR THIS VALIDATED CANCER BIOMARKER SHOULD PROVIDE NOVEL INSIGHTS INTO MECHANISMS UNDERLYING EPIGENETIC REPROGRAMMING DURING LUNG CARCINOGENESIS. METHODS: A GENOME-WIDE ASSOCIATION STUDY USING GENERALIZED ESTIMATING EQUATIONS AND LOGISTIC REGRESSION MODELS WAS CONDUCTED IN TWO GEOGRAPHICALLY INDEPENDENT SMOKER COHORTS TO IDENTIFY LOCI AFFECTING THE PROPENSITY FOR CANCER-RELATED GENE METHYLATION THAT WAS ASSESSED BY A 12-GENE PANEL INTERROGATED IN SPUTUM. ALL STATISTICAL TESTS WERE TWO-SIDED. RESULTS: TWO SINGLE NUCLEOTIDE POLYMORPHISMS (SNPS) AT 15Q12 (RS73371737 AND RS7179575) THAT DROVE GENE METHYLATION WERE DISCOVERED AND REPLICATED WITH RS73371737 REACHING GENOME-WIDE SIGNIFICANCE (P = 3.3X10(-8)). A HAPLOTYPE CARRYING RISK ALLELES FROM THE TWO 15Q12 SNPS CONFERRED 57% INCREASED RISK FOR GENE METHYLATION (P = 2.5X10(-9)). RS73371737 REDUCED GABRB3 EXPRESSION IN LUNG CELLS AND INCREASED RISK FOR SMOKING-INDUCED CHRONIC MUCOUS HYPERSECRETION. FURTHERMORE, SUBJECTS WITH VARIANT HOMOZYGOTE OF RS73371737 HAD A TWO-FOLD INCREASE IN RISK FOR LUNG CANCER (P = .0043). PATHWAY ANALYSIS IDENTIFIED DNA DOUBLE-STRAND BREAK REPAIR BY HOMOLOGOUS RECOMBINATION (DSBR-HR) AS A MAJOR PATHWAY AFFECTING SUSCEPTIBILITY FOR GENE METHYLATION THAT WAS VALIDATED BY MEASURING CHROMATID BREAKS IN LYMPHOCYTES CHALLENGED BY BLEOMYCIN. CONCLUSIONS: A FUNCTIONAL 15Q12 VARIANT WAS IDENTIFIED AS A RISK FACTOR FOR GENE METHYLATION AND LUNG CANCER. THE ASSOCIATIONS COULD BE MEDIATED BY GABAERGIC SIGNALING THAT DRIVES THE SMOKING-INDUCED MUCOUS CELL METAPLASIA. OUR FINDINGS ALSO SUBSTANTIATE DSBR-HR AS A CRITICAL PATHWAY DRIVING EPIGENETIC GENE SILENCING. 2015 3 2626 36 EPIGENOME-WIDE ASSOCIATION STUDY IDENTIFIES DNA METHYLATION MARKERS FOR ASTHMA REMISSION IN WHOLE BLOOD AND NASAL EPITHELIUM. BACKGROUND: ASTHMA IS A CHRONIC RESPIRATORY DISEASE WHICH IS NOT CURABLE, YET SOME PATIENTS EXPERIENCE SPONTANEOUS REMISSION. WE HYPOTHESIZED THAT EPIGENETIC MECHANISMS MAY BE INVOLVED IN ASTHMA REMISSION. METHODS: CLINICAL REMISSION (CLINR) WAS DEFINED AS THE ABSENCE OF ASTHMA SYMPTOMS AND MEDICATION FOR AT LEAST 12 MONTHS, AND COMPLETE REMISSION (COMR) WAS DEFINED AS CLINR WITH NORMAL LUNG FUNCTION AND ABSENCE OF AIRWAY HYPERRESPONSIVENESS. WE ANALYZED DIFFERENTIAL DNA METHYLATION OF CLINR AND COMR COMPARING TO PERSISTENT ASTHMA (PERSA) IN WHOLE BLOOD SAMPLES (N = 72) AND NASAL BRUSHING SAMPLES (N = 97) IN A LONGITUDINAL COHORT OF WELL CHARACTERIZED ASTHMA PATIENTS. SIGNIFICANT FINDINGS OF WHOLE BLOOD DNA METHYLATION WERE TESTED FOR REPLICATION IN TWO INDEPENDENT COHORTS, LIFELINES AND EPIDEMIOLOGICAL STUDY ON THE GENETICS AND ENVIRONMENT OF ASTHMA (EGEA). RESULTS: WE IDENTIFIED DIFFERENTIALLY METHYLATED CPG SITES ASSOCIATED WITH CLINR (7 CPG SITES) AND COMR (129 CPG SITES) IN WHOLE BLOOD. ONE CPG (CG13378519, CHR1) ASSOCIATED WITH CLINR WAS REPLICATED AND ANNOTATED TO PEX11 (PEROXISOMAL BIOGENESIS FACTOR 11 BETA). THE WHOLE BLOOD DNA METHYLATION LEVELS OF THIS CPG WERE ALSO DIFFERENT BETWEEN CLINR AND HEALTHY SUBJECTS. ONE COMR-ASSOCIATED CPG (CG24788483, CHR10) THAT ANNOTATED TO TCF7L2 (TRANSCRIPTION FACTOR 7 LIKE 2) WAS REPLICATED AND ASSOCIATED WITH EXPRESSION OF TCF7L2 GENE. ONE OUT OF SEVEN CLINR-ASSOCIATED CPG SITES AND 8 OUT OF 129 COMR-ASSOCIATED CPG SITES IDENTIFIED FROM WHOLE BLOOD SAMPLES SHOWED NOMINAL SIGNIFICANCE (P < 0.05) AND THE SAME DIRECTION OF EFFECT IN NASAL BRUSHES. CONCLUSION: WE IDENTIFIED DNA METHYLATION MARKERS POSSIBLY ASSOCIATED WITH CLINICAL AND COMPLETE ASTHMA REMISSION IN NASAL BRUSHES AND WHOLE BLOOD, AND TWO CPG SITES IDENTIFIED FROM WHOLE BLOOD CAN BE REPLICATED IN INDEPENDENT COHORTS AND MAY PLAY A ROLE IN PEROXISOME PROLIFERATION AND WNT SIGNALING PATHWAY. 2020 4 1187 35 COPD GWAS VARIANT AT 19Q13.2 IN RELATION WITH DNA METHYLATION AND GENE EXPRESSION. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) IS AMONG THE MAJOR HEALTH BURDENS IN ADULTS. WHILE CIGARETTE SMOKING IS THE LEADING RISK FACTOR, A GROWING NUMBER OF GENETIC VARIATIONS HAVE BEEN DISCOVERED TO INFLUENCE DISEASE SUSCEPTIBILITY. EPIGENETIC MODIFICATIONS MAY MEDIATE THE RESPONSE OF THE GENOME TO SMOKING AND REGULATE GENE EXPRESSION. CHROMOSOME 19Q13.2 REGION IS ASSOCIATED WITH BOTH SMOKING AND COPD, YET ITS FUNCTIONAL ROLE IS UNCLEAR. OUR STUDY AIMED TO DETERMINE WHETHER RS7937 (RAB4B, EGLN2), A TOP GENETIC VARIANT IN 19Q13.2 REGION IDENTIFIED IN GENOME-WIDE ASSOCIATION STUDIES OF COPD, IS ASSOCIATED WITH DIFFERENTIAL DNA METHYLATION IN BLOOD (N = 1490) AND GENE EXPRESSION IN BLOOD (N = 721) AND LUNGS (N = 1087). WE COMBINED GENETIC AND EPIGENETIC DATA FROM THE ROTTERDAM STUDY (RS) TO PERFORM THE EPIGENOME-WIDE ASSOCIATION ANALYSIS OF RS7937. FURTHER, WE USED GENETIC AND TRANSCRIPTOMIC DATA FROM BLOOD (RS) AND FROM LUNG TISSUE (LUNG EXPRESSION QUANTITATIVE TRAIT LOCI MAPPING STUDY), TO PERFORM THE TRANSCRIPTOME-WIDE ASSOCIATION STUDY OF RS7937. RS7937 WAS SIGNIFICANTLY (FDR < 0.05) AND CONSISTENTLY ASSOCIATED WITH DIFFERENTIAL DNA METHYLATION IN BLOOD AT 4 CPG SITES IN CIS, INDEPENDENT OF SMOKING. ONE METHYLATION SITE (CG11298343-EGLN2) WAS ALSO ASSOCIATED WITH COPD (P = 0.001). ADDITIONALLY, RS7937 WAS ASSOCIATED WITH GENE EXPRESSION LEVELS IN BLOOD IN CIS (EGLN2), 42% MEDIATED THROUGH CG11298343, AND IN LUNG TISSUE, IN CIS AND TRANS (NUMBL, EGLN2, DNMT3A, LOC101929709 AND PAK2). OUR RESULTS SUGGEST THAT CHANGES OF DNA METHYLATION AND GENE EXPRESSION MAY BE INTERMEDIATE STEPS BETWEEN GENETIC VARIANTS AND COPD, BUT FURTHER CAUSAL STUDIES IN LUNG TISSUE SHOULD CONFIRM THIS HYPOTHESIS. 2018 5 3050 27 GENOME-WIDE ASSOCIATION ANALYSES FOR LUNG FUNCTION AND CHRONIC OBSTRUCTIVE PULMONARY DISEASE IDENTIFY NEW LOCI AND POTENTIAL DRUGGABLE TARGETS. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) IS CHARACTERIZED BY REDUCED LUNG FUNCTION AND IS THE THIRD LEADING CAUSE OF DEATH GLOBALLY. THROUGH GENOME-WIDE ASSOCIATION DISCOVERY IN 48,943 INDIVIDUALS, SELECTED FROM EXTREMES OF THE LUNG FUNCTION DISTRIBUTION IN UK BIOBANK, AND FOLLOW-UP IN 95,375 INDIVIDUALS, WE INCREASED THE YIELD OF INDEPENDENT SIGNALS FOR LUNG FUNCTION FROM 54 TO 97. A GENETIC RISK SCORE WAS ASSOCIATED WITH COPD SUSCEPTIBILITY (ODDS RATIO PER 1 S.D. OF THE RISK SCORE ( APPROXIMATELY 6 ALLELES) (95% CONFIDENCE INTERVAL) = 1.24 (1.20-1.27), P = 5.05 X 10(-49)), AND WE OBSERVED A 3.7-FOLD DIFFERENCE IN COPD RISK BETWEEN INDIVIDUALS IN THE HIGHEST AND LOWEST GENETIC RISK SCORE DECILES IN UK BIOBANK. THE 97 SIGNALS SHOW ENRICHMENT IN GENES FOR DEVELOPMENT, ELASTIC FIBERS AND EPIGENETIC REGULATION PATHWAYS. WE HIGHLIGHT TARGETS FOR DRUGS AND COMPOUNDS IN DEVELOPMENT FOR COPD AND ASTHMA (GENES IN THE INOSITOL PHOSPHATE METABOLISM PATHWAY AND CHRM3) AND DESCRIBE TARGETS FOR POTENTIAL DRUG REPOSITIONING FROM OTHER CLINICAL INDICATIONS. 2017 6 5621 29 SCREENING METHYLATION OF DNA REPAIR GENES IN THE ORAL MUCOSA OF CHRONIC SMOKERS. OBJECTIVE: THE AIM OF THIS STUDY WAS TO EVALUATE THE EPIGENETIC CHANGES IN THE PROCESS OF ORAL CARCINOGENESIS BY SCREENING THE METHYLATION OF REPAIR GENES IN CHRONIC SMOKERS. DESIGN: TWO GROUPS WERE FORMED: GROUP 1: 16 SMOKERS WITH CONSUMPTION OF 20 CIGARETTES/DAY FOR AT LEAST 10 YEARS; AND GROUP 2: 10 NON-SMOKING. EXFOLIATIVE CYTOLOGY OF THE TONGUE WAS PERFORMED, AND THE EXTRACTED DNA WAS TREATED BY ENZYMES. THE PCR ARRAY SYSTEM PERFORMED METHYLATION SCREENING TO EVALUATE 22 DNA REPAIR GENES, AND THE RESULTS WERE VALIDATED BY RT-QPCR FOR EACH GENE WITH METHYLATION LEVELS >/=10%. RESULTS: HIGHEST PERCENTAGES OF METHYLATION WERE OBSERVED FOR MLH3 AND XRCC1 GENES (11-20% METHYLATION) AND IN ONE CASE FOR MRE11A AND PMS2 (>50% METHYLATION). STATISTICAL ANALYSIS SHOWED SIGNIFICANT DIFFERENCES IN THE EXPRESSION OF THE GENES MRE11A (P = 0.0002), PMS2(P = 0.0068), XRCC1 (P = 0.0080) AND MLH3 (0.0057) BETWEEN THE TWO GROUPS. CONCLUSION: THE EFFECTS OF CHRONIC SMOKING ON ORAL MUCOSA LED TO THE METHYLATION OF GENES MRE11A PMS2, XRCC1 AND MLH3, BUT RESULTED IN A REDUCTION OF GENE EXPRESSION OF MRE11A AND PMS2, WHICH SHOWED >/=50% METHYLATION. THESE RESULTS PROVIDE EVIDENCE THAT SMOKING CAUSE METHYLATION AND REDUCED EXPRESSION OF REPAIR GENES. 2018 7 1990 32 EPIGENETIC ANALYSIS OF PAGET'S DISEASE OF BONE IDENTIFIES DIFFERENTIALLY METHYLATED LOCI THAT PREDICT DISEASE STATUS. PAGET'S DISEASE OF BONE (PDB) IS CHARACTERIZED BY FOCAL INCREASES IN DISORGANIZED BONE REMODELING. THIS STUDY AIMS TO CHARACTERIZE PDB-ASSOCIATED CHANGES IN DNA METHYLATION PROFILES IN PATIENTS' BLOOD. META-ANALYSIS OF DATA FROM THE DISCOVERY AND CROSS-VALIDATION SET, EACH COMPRISING 116 PDB CASES AND 130 CONTROLS, REVEALED SIGNIFICANT DIFFERENCES IN DNA METHYLATION AT 14 CPG SITES, 4 CPG ISLANDS, AND 6 GENE-BODY REGIONS. THESE LOCI, INCLUDING TWO CHARACTERIZED AS FUNCTIONAL THROUGH EXPRESSION QUANTITATIVE TRAIT-METHYLATION ANALYSIS, WERE ASSOCIATED WITH FUNCTIONS RELATED TO OSTEOCLAST DIFFERENTIATION, MECHANICAL LOADING, IMMUNE FUNCTION, AND VIRAL INFECTION. A MULTIVARIATE CLASSIFIER BASED ON DISCOVERY SAMPLES WAS FOUND TO DISCRIMINATE PDB CASES AND CONTROLS FROM THE CROSS-VALIDATION WITH A SENSITIVITY OF 0.84, SPECIFICITY OF 0.81, AND AN AREA UNDER CURVE OF 92.8%. IN CONCLUSION, THIS STUDY HAS SHOWN FOR THE FIRST TIME THAT EPIGENETIC FACTORS CONTRIBUTE TO THE PATHOGENESIS OF PDB AND MAY OFFER DIAGNOSTIC MARKERS FOR PREDICTION OF THE DISEASE. 2021 8 3638 32 INCREASED EXPRESSION OF BETA-DEFENSIN 1 (DEFB1) IN CHRONIC OBSTRUCTIVE PULMONARY DISEASE. ON-GOING AIRWAY INFLAMMATION IS CHARACTERISTIC FOR THE PATHOPHYSIOLOGY OF CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD). HOWEVER, THE KEY FACTORS DETERMINING THE DECREASE IN LUNG FUNCTION, AN IMPORTANT CLINICAL PARAMETER OF COPD, ARE NOT CLEAR. GENOME-WIDE LINKAGE ANALYSES PROVIDE EVIDENCE FOR SIGNIFICANT LINKAGE TO AIRWAY OBSTRUCTION SUSCEPTIBILITY LOCI ON CHROMOSOME 8P23, THE LOCATION OF THE HUMAN DEFENSIN GENE CLUSTER. MOREOVER, A GENETIC VARIATION IN THE DEFENSIN BETA 1 (DEFB1) GENE WAS FOUND TO BE ASSOCIATED WITH COPD. THEREFORE, WE HYPOTHESIZED THAT DEFB1 IS DIFFERENTLY REGULATED AND EXPRESSED IN HUMAN LUNGS DURING COPD PROGRESSION. GENE EXPRESSION OF DEFB1 WAS ASSESSED IN BRONCHIAL EPITHELIUM AND BAL FLUID CELLS OF HEALTHY CONTROLS AND PATIENTS WITH COPD AND USING BISULFITE SEQUENCING AND CHIP ANALYSIS, THE EPIGENETIC CONTROL OF DEFB1 MRNA EXPRESSION WAS INVESTIGATED. WE CAN DEMONSTRATE THAT DEFB1 MRNA EXPRESSION WAS SIGNIFICANTLY INCREASED IN BRONCHOPULMONARY SPECIMEN OF PATIENTS WITH COPD (N = 34) VS. HEALTHY CONTROLS (N = 10) (P<0.0001). FURTHERMORE, A SIGNIFICANT CORRELATION COULD BE DETECTED BETWEEN DEFB1 AND FUNCTIONAL PARAMETERS SUCH AS FEV(1) (P = 0.0024) AND THE FEV(1)/VC RATIO (P = 0.0005). UPREGULATION OF DEFB1 MRNA WAS PARALLELED BY CHANGES IN HDAC1-3, HDAC5 AND HDAC8 MRNA EXPRESSION. WHEREAS BISULFITE SEQUENCING REVEALED NO DIFFERENCES IN THE METHYLATION STATE OF DEFB1 PROMOTER BETWEEN PATIENTS WITH COPD AND CONTROLS, CHIP ANALYSIS SHOWED THAT ENHANCED DEFB1 MRNA EXPRESSION WAS ASSOCIATED WITH THE ESTABLISHMENT OF AN ACTIVE HISTONE CODE. THUS, EXPRESSION OF HUMAN DEFB1 IS UPREGULATED AND RELATED TO THE DECREASE IN PULMONARY FUNCTION IN PATIENTS WITH COPD. 2011 9 4270 38 MICROBIAL DYSBIOSIS AND THE HOST AIRWAY EPITHELIAL RESPONSE: INSIGHTS INTO HIV-ASSOCIATED COPD USING MULTI'OMICS PROFILING. BACKGROUND: PEOPLE LIVING WITH HIV (PLWH) ARE AT INCREASED RISK OF DEVELOPING CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) INDEPENDENT OF CIGARETTE SMOKING. WE HYPOTHESIZED THAT DYSBIOSIS IN PLWH IS ASSOCIATED WITH EPIGENETIC AND TRANSCRIPTOMIC DISRUPTIONS IN THE AIRWAY EPITHELIUM. METHODS: AIRWAY EPITHELIAL BRUSHINGS WERE COLLECTED FROM 18 COPD + HIV + , 16 COPD - HIV + , 22 COPD + HIV - AND 20 COPD - HIV - SUBJECTS. THE MICROBIOME, METHYLOME, AND TRANSCRIPTOME WERE PROFILED USING 16S SEQUENCING, ILLUMINA INFINIUM METHYLATION EPIC CHIP, AND RNA SEQUENCING, RESPECTIVELY. MULTI 'OMIC INTEGRATION WAS PERFORMED USING DATA INTEGRATION ANALYSIS FOR BIOMARKER DISCOVERY USING LATENT COMPONENTS. A CORRELATION > 0.7 WAS USED TO IDENTIFY KEY INTERACTIONS BETWEEN THE 'OMES. RESULTS: THE COPD + HIV -, COPD -HIV + , AND COPD + HIV + GROUPS HAD REDUCED SHANNON DIVERSITY (P = 0.004, P = 0.023, AND P = 5.5E-06, RESPECTIVELY) COMPARED TO INDIVIDUALS WITH NEITHER COPD NOR HIV, WITH THE COPD + HIV + GROUP DEMONSTRATING THE MOST REDUCED DIVERSITY. MICROBIAL COMMUNITIES WERE SIGNIFICANTLY DIFFERENT BETWEEN THE FOUR GROUPS (P = 0.001). MULTI 'OMIC INTEGRATION IDENTIFIED CORRELATIONS BETWEEN BACTEROIDETES PREVOTELLA, GENES FUZ, FASTKD3, AND ACVR1B, AND EPIGENETIC FEATURES CPG-FUZ AND CPG-PHLDB3. CONCLUSION: PLWH WITH COPD MANIFEST DECREASED DIVERSITY AND ALTERED MICROBIAL COMMUNITIES IN THEIR AIRWAY EPITHELIAL MICROBIOME. THE REDUCTION IN PREVOTELLA IN THIS GROUP WAS LINKED WITH EPIGENETIC AND TRANSCRIPTOMIC DISRUPTIONS IN HOST GENES INCLUDING FUZ, FASTKD3, AND ACVR1B. 2023 10 6632 37 UNDERSTANDING THE ROLE OF THE CHROMOSOME 15Q25.1 IN COPD THROUGH EPIGENETICS AND TRANSCRIPTOMICS. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) IS A MAJOR HEALTH BURDEN IN ADULTS AND CIGARETTE SMOKING IS CONSIDERED THE MOST IMPORTANT ENVIRONMENTAL RISK FACTOR OF COPD. CHROMOSOME 15Q25.1 LOCUS IS ASSOCIATED WITH BOTH COPD AND SMOKING. OUR STUDY AIMS AT UNDERSTANDING THE MECHANISM UNDERLYING THE ASSOCIATION OF CHROMOSOME 15Q25.1 WITH COPD THROUGH EPIGENETIC AND TRANSCRIPTIONAL VARIATION IN A POPULATION-BASED SETTING. TO ASSESS IF COPD-ASSOCIATED VARIANTS IN 15Q25.1 ARE METHYLATION QUANTITATIVE TRAIT LOCI, EPIGENOME-WIDE ASSOCIATION ANALYSIS OF FOUR GENETIC VARIANTS, PREVIOUSLY ASSOCIATED WITH COPD (P < 5 X 10(-8)) IN THE 15Q25.1 LOCUS (RS12914385:C>T-CHRNA3, RS8034191:T>C-HYKK, RS13180:C>T-IREB2 AND RS8042238:C>T-IREB2), WAS PERFORMED IN THE ROTTERDAM STUDY (N = 1489). ALL FOUR VARIANTS WERE SIGNIFICANTLY ASSOCIATED (P < 1.4 X 10(-6)) WITH BLOOD DNA METHYLATION OF IREB2, CHRNA3 AND PSMA4, OF WHICH TWO, INCLUDING IREB2 AND PSMA4, WERE ALSO DIFFERENTIALLY METHYLATED IN COPD CASES AND CONTROLS (P < 0.04). FURTHER ADDITIVE AND MULTIPLICATIVE EFFECTS OF SMOKING WERE EVALUATED AND NO SIGNIFICANT EFFECT WAS OBSERVED. TO EVALUATE IF THESE FOUR GENETIC VARIANTS ARE EXPRESSION QUANTITATIVE TRAIT LOCI, TRANSCRIPTOME-WIDE ASSOCIATION ANALYSIS WAS PERFORMED IN 1087 LUNG SAMPLES. ALL FOUR VARIANTS WERE ALSO SIGNIFICANTLY ASSOCIATED WITH DIFFERENTIAL EXPRESSION OF THE IREB2 3'UTR IN LUNG TISSUES (P < 5.4 X 10(-95)). WE CONCLUDE THAT REGULATORY MECHANISMS AFFECTING THE EXPRESSION OF IREB2 GENE, SUCH AS DNA METHYLATION, MAY EXPLAIN THE ASSOCIATION BETWEEN GENETIC VARIANTS IN CHROMOSOME 15Q25.1 AND COPD, LARGELY INDEPENDENT OF SMOKING. 2018 11 3956 33 LONG NON-CODING RNA GENES POLYMORPHISMS H19 (RS2251375) AND MALAT1 (RS3200401) ASSOCIATION WITH RHEUMATOID ARTHRITIS AND THEIR CORRELATION WITH DISEASE ACTIVITY IN A COHORT OF EGYPTIAN PATIENTS: A PILOT STUDY. RHEUMATOID ARTHRITIS (RA) IS A CHRONIC, PROGRESSIVE, INFLAMMATORY, AUTOIMMUNE DISEASE THAT COULD BE DISABLING THROUGHOUT ITS COURSE. IT AFFECTS PEOPLE IN THEIR MOST REPRODUCTIVE YEARS WITH RELATIVELY HIGH MORBIDITY AND MORTALITY. LONG NON-CODING RNAS BECAME ONE OF THE EPIGENETIC MECHANISMS TO PROVE A LINK TO RA PATHOGENESIS AND DEVELOPMENT, INCLUDING H19 AND MALAT1 GENES. THESE TWO GENES' EXPRESSIONS HAD PROVED TO INCREASE IN MULTIPLE DISEASES, ATTRACTING ATTENTION TO THEIR POLYMORPHISMS AND THEIR POSSIBLE RISK ROLE. ASSESS THE ASSOCIATION BETWEEN H19 SNP (RS2251375) AND MALAT1 SNP (RS3200401) AND THE SUSCEPTIBILITY OF RA AND ITS DISEASE ACTIVITY. IN THIS PILOT STUDY, 200 HUNDRED SUBJECTS (100 RA PATIENTS AND 100 HEALTHY CONTROLS) WERE INVESTIGATED FOR A POSSIBLE LINK BETWEEN THE POLYMORPHISMS H19 SNP (RS2251375) AND MALAT1 SNP (3200401) AND RA SUSCEPTIBILITY AND DISEASE ACTIVITY. RA-RELATED INVESTIGATIONS AND CLINICAL ASSESSMENT WERE DONE. REAL-TIME PCR GENOTYPING OF BOTH SNPS WAS DONE USING TAQMAN(R) MGB PROBES. THERE WAS NO ASSOCIATION BETWEEN THE SNPS AND RISK OF DEVELOPING RA. HOWEVER, BOTH SNPS HAD A SIGNIFICANT ASSOCIATION WITH HIGH DISEASE ACTIVITY. H19 SNP (RS2251375) HETEROZYGOUS GENOTYPE CA HAD AN ASSOCIATION WITH ELEVATED LEVELS OF ESR (P = 0.04) AND HIGHER DAS28-ESR SCORE (P = 0.03). MALAT1 (RS3200401) C ALLELE HAD AN ASSOCIATION WITH ELEVATED ESR (P = 0.001), DAS28-ESR (P = 0.03), AND DAS28-CRP (P = 0.007), WHILE CC GENOTYPE HAD AN ASSOCIATION WITH DAS28-CRP (P = 0.015). LINKAGE DISEQUILIBRIUM AND HAPLOTYPING OF THE ALLELES OF BOTH SNPS WERE ANALYZED AS BOTH GENES ARE PRESENT ON CHROMOSOME 11, BUT NO SIGNIFICANT ASSOCIATION WAS FOUND BETWEEN ANY OF THE COMBINATIONS OF THE ALLELES (P > 0.05), DENOTING THAT (RS2251375) AND (RS3200401) ARE NOT IN LINKAGE DISEQUILIBRIUM. THERE IS NO ASSOCIATION BETWEEN H19 SNP (RS2251375) AND MALAT1 SNP (RS3200401) AND THE SUSCEPTIBILITY OF RA. HOWEVER, THERE IS AN ASSOCIATION BETWEEN H19 SNP (RS2251375) GENOTYPE CA AND MALAT1 SNP (RS3200401) GENOTYPE CC WITH RA HIGH DISEASE ACTIVITY. 2023 12 6835 21 [INFLUENCE OF AGE OF PATIENTS WITH BRONCHOPULMONARY PATHOLOGY ON LOW-MOLECULAR DNA CONCENTRATION IN BLOOD PLASMA.]. THE AIM OF THE WORK WAS TO DETERMINE THE CONCENTRATION OF LOW-MOLECULAR-WEIGHT PLASMA DNA (LMDNA) IN PATIENTS WITH COPD AND CHRONIC NON-OBSTRUCTIVE BRONCHITIS (CNONB) OF TWO AGE GROUPS - 34-59 AND 60-80 YEARS. THE LEVELS OF LMDNA IN HEALTHY DONORS, PATIENTS WITH CNONB, HEALTHY RELATIVES OF PATIENTS WITH COPD DID NOT DIFFER, WHILE THE CONCENTRATION OF LMDNA IN PATIENTS WITH COPD WAS SIGNIFICANTLY LOWER. IN COPD PATIENTS AGED 34-59 YEARS, THE LEVEL OF LMDNA WAS REDUCED BY MORE THAN 7 TIMES, AND IN COPD PATIENTS WHO SURVIVED TO 60-80 YEARS, IT WAS 3 TIMES LOWER COMPARED TO THE VALUE OF THIS BIOCHEMICAL INDICATOR IN HEALTHY DONORS OF THE SAME AGE. THE REDUCTION OF LMDNA REFLECTED A REDUCED SYSTEMIC APOPTOTIC ACTIVITY IN THE BODY OF PATIENTS WITH COPD. A SIGNIFICANT DIFFERENCE IN THE CONCENTRATION OF LMDNA IN PATIENTS WITH COPD AND CNONB IN REMISSION CAN BE USED FOR DIFFERENTIAL DIAGNOSIS OF THE DEVELOPMENT OF THESE PATHOLOGICAL PROCESSES. AN INCREASE IN THE LOW LEVEL OF LMDNA IN COPD PATIENTS DURING AGING MAY INDICATE THE INVOLVEMENT OF EPIGENETIC MECHANISMS IN LIFE EXTENSION. 2022 13 3125 26 GHSR DNA HYPERMETHYLATION IS A COMMON EPIGENETIC ALTERATION OF HIGH DIAGNOSTIC VALUE IN A BROAD SPECTRUM OF CANCERS. IDENTIFICATION OF A SINGLE MOLECULAR TRAIT THAT IS DETERMINANT OF COMMON MALIGNANCIES MAY SERVE AS A POWERFUL DIAGNOSTIC SUPPLEMENT TO CANCER TYPE-SPECIFIC MARKERS. HERE, WE REPORT A DNA METHYLATION MARK THAT IS CHARACTERISTIC OF SEVEN STUDIED MALIGNANCIES, NAMELY CANCERS OF LUNG, BREAST, PROSTATE, PANCREAS, COLORECTUM, GLIOBLASTOMA AND B CELL CHRONIC LYMPHOCYTIC LEUKAEMIA (CLL) (N = 137). THIS MARK WAS DEFINED BY SUBSTANTIAL HYPERMETHYLATION AT THE PROMOTER AND FIRST EXON OF GROWTH HORMONE SECRETAGOUGE RECEPTOR (GHSR) THROUGH BISULFITE PYROSEQUENCING. THE DEGREE OF ABERRANT METHYLATION WAS CAPABLE OF ACCURATE DISCRIMINATION BETWEEN CANCER AND CONTROL SAMPLES. THE HIGHEST SENSITIVITY AND SPECIFICITY OF CANCER DETECTION WAS ACHIEVED FOR CANCERS OF PANCREAS, LUNG, BREAST AND CLL YIELDING THE AREA UNDER THE CURVE (AUC) VALUES OF 1.0000, 0.9952, 0.9800 AND 0.9400, RESPECTIVELY. NARROWING TO A SINGLE CPG SITE WITHIN THE GENE'S PROMOTER OR FOUR CONSECUTIVE CPG UNITS OF THE HIGHEST METHYLATION LEVELS WITHIN THE FIRST EXON IMPROVED THE DETECTION POWER. GHSR HYPERMETHYLATION WAS DETECTED ALREADY AT THE EARLY STAGE TUMORS. THE ACCURATE PERFORMANCE OF THIS MARKER WAS FURTHER REPLICATED IN AN INDEPENDENT SET OF PANCREATIC CANCER AND CONTROL SAMPLES (N = 78). THESE FINDINGS SUPPORT THE CANDIDATURE OF GHSR METHYLATION AS A HIGHLY ACCURATE PAN-CANCER MARKER. 2015 14 6190 37 THE IMPACT OF METHYLATION QUANTITATIVE TRAIT LOCI (MQTLS) ON ACTIVE SMOKING-RELATED DNA METHYLATION CHANGES. BACKGROUND: METHYLATION QUANTITATIVE TRAIT LOCI (MQTLS) ARE THE GENETIC VARIANTS THAT MAY AFFECT THE DNA METHYLATION PATTERNS OF CPG SITES. HOWEVER, THEIR ROLES IN INFLUENCING THE DISTURBANCES OF SMOKING-RELATED EPIGENETIC CHANGES HAVE NOT BEEN WELL ESTABLISHED. THIS STUDY WAS CONDUCTED TO ADDRESS WHETHER MQTLS EXIST IN THE VICINITY OF SMOKING-RELATED CPG SITES (+/- 50 KB) AND TO EXAMINE THEIR ASSOCIATIONS WITH SMOKING EXPOSURE AND ALL-CAUSE MORTALITY IN OLDER ADULTS. RESULTS: WE OBTAINED DNA METHYLATION PROFILES IN WHOLE BLOOD SAMPLES BY ILLUMINA INFINIUM HUMAN METHYLATION 450 BEADCHIP ARRAY OF TWO INDEPENDENT SUBSAMPLES OF THE ESTHER STUDY (DISCOVERY SET, N = 581; VALIDATION SET, N = 368) AND THEIR CORRESPONDING GENOTYPING DATA USING THE ILLUMINA INFINIUM ONCOARRAY BEADCHIP. AFTER CORRECTION FOR MULTIPLE TESTING (FDR), WE SUCCESSFULLY IDENTIFIED THAT 70 OUT OF 151 PREVIOUSLY REPORTED SMOKING-RELATED CPG SITES WERE SIGNIFICANTLY ASSOCIATED WITH 192 SNPS WITHIN THE 50 KB SEARCH WINDOW OF EACH LOCUS. THE 192 MQTLS SIGNIFICANTLY INFLUENCED THE ACTIVE SMOKING-RELATED DNA METHYLATION CHANGES, WITH PERCENTAGE CHANGES RANGING FROM 0.01 TO 18.96%, ESPECIALLY FOR THE WEAKLY/MODERATELY SMOKING-RELATED CPG SITES. HOWEVER, THESE IDENTIFIED MQTLS WERE NOT DIRECTLY ASSOCIATED WITH ACTIVE SMOKING EXPOSURE OR ALL-CAUSE MORTALITY. CONCLUSIONS: OUR FINDINGS CLEARLY DEMONSTRATED THAT IF NOT DEALT WITH PROPERLY, THE MQTLS MIGHT IMPAIR THE POWER OF EPIGENETIC-BASED MODELS OF SMOKING EXPOSURE TO A CERTAIN EXTENT. IN ADDITION, SUCH GENETIC VARIANTS COULD BE THE KEY FACTOR TO DISTINGUISH BETWEEN THE HERITABLE AND SMOKING-INDUCED IMPACT ON EPIGENOME DISPARITIES. THESE MQTLS ARE OF SPECIAL IMPORTANCE WHEN DNA METHYLATION MARKERS MEASURED BY ILLUMINA INFINIUM ASSAY ARE USED FOR ANY COMPARATIVE POPULATION STUDIES RELATED TO SMOKING-RELATED CANCERS AND CHRONIC DISEASES. 2017 15 5883 32 SYSTEMIC AND AIRWAY EPIGENETIC DISRUPTIONS ARE ASSOCIATED WITH HEALTH STATUS IN COPD. EPIGENETIC MODIFICATIONS ARE COMMON IN CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD); HOWEVER, THEIR CLINICAL RELEVANCE IS LARGELY UNKNOWN. WE HYPOTHESIZED THAT EPIGENETIC DISRUPTIONS ARE ASSOCIATED WITH SYMPTOMS AND HEALTH STATUS IN COPD. WE PROFILED THE BLOOD (N = 57) AND AIRWAYS (N = 62) OF COPD PATIENTS FOR DNA METHYLATION (N = 55 PAIRED). THE PATIENTS' HEALTH STATUS WAS ASSESSED USING THE ST. GEORGE'S RESPIRATORY QUESTIONNAIRE (SGRQ). WE CONDUCTED DIFFERENTIAL METHYLATION ANALYSES AND IDENTIFIED PATHWAYS CHARACTERIZED BY EPIGENETIC DISRUPTIONS ASSOCIATED WITH SGRQ SCORES AND ITS INDIVIDUAL DOMAINS. 29,211 AND 5044 DIFFERENTIALLY METHYLATED POSITIONS (DMPS) WERE ASSOCIATED WITH TOTAL SGRQ SCORES IN BLOOD AND AIRWAY SAMPLES, RESPECTIVELY. THE ACTIVITY, IMPACT, AND SYMPTOM DOMAINS WERE ASSOCIATED WITH 9161, 25,689 AND 17,293 DMPS IN BLOOD, RESPECTIVELY; AND 4674, 3730 AND 5063 DMPS IN AIRWAYS, RESPECTIVELY. THERE WAS A SUBSTANTIAL OVERLAP OF DMPS BETWEEN AIRWAY AND BLOOD. DMPS WERE ENRICHED FOR PATHWAYS RELATED TO COMMON CO-MORBIDITIES OF COPD (E.G., AGEING, CANCER AND NEUROLOGICAL) IN BOTH TISSUES. HEALTH STATUS IN COPD IS ASSOCIATED WITH AIRWAY AND SYSTEMIC EPIGENETIC CHANGES ESPECIALLY IN PATHWAYS RELATED TO CO-MORBIDITIES OF COPD. THERE ARE MORE BLOOD DMPS THAN IN THE AIRWAYS SUGGESTING THAT BLOOD EPIGENOME IS A PROMISING SOURCE TO DISCOVER BIOMARKERS FOR CLINICAL OUTCOMES IN COPD. 2023 16 2048 36 EPIGENETIC CLUSTERING OF LUNG ADENOCARCINOMAS BASED ON DNA METHYLATION PROFILES IN ADJACENT LUNG TISSUE: ITS CORRELATION WITH SMOKING HISTORY AND CHRONIC OBSTRUCTIVE PULMONARY DISEASE. THE AIM OF THIS STUDY WAS TO CLARIFY THE SIGNIFICANCE OF DNA METHYLATION ALTERATIONS DURING LUNG CARCINOGENESIS. INFINIUM ASSAY WAS PERFORMED USING 139 PAIRED SAMPLES OF NON-CANCEROUS LUNG TISSUE (N) AND TUMOROUS TISSUE (T) FROM A LEARNING COHORT OF PATIENTS WITH LUNG ADENOCARCINOMAS (LADCS). FIFTY PAIRED N AND T SAMPLES FROM A VALIDATION COHORT WERE ALSO ANALYZED. DNA METHYLATION ALTERATIONS ON 1,928 PROBES OCCURRED IN N SAMPLES RELATIVE TO NORMAL LUNG TISSUE FROM PATIENTS WITHOUT PRIMARY LUNG TUMORS, AND WERE INHERITED BY, OR STRENGTHENED IN, T SAMPLES. UNSUPERVISED HIERARCHICAL CLUSTERING USING DNA METHYLATION LEVELS IN N SAMPLES ON ALL 26,447 PROBES SUBCLUSTERED PATIENTS INTO CLUSTER I (N = 32), CLUSTER II (N = 35) AND CLUSTER III (N = 72). LADCS IN CLUSTER I DEVELOPED FROM THE INFLAMMATORY BACKGROUND IN CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) IN HEAVY SMOKERS AND WERE LOCALLY INVASIVE. MOST PATIENTS IN CLUSTER II WERE NON-SMOKERS AND HAD A FAVORABLE OUTCOME. LADCS IN CLUSTER III DEVELOPED IN LIGHT SMOKERS WERE MOST AGGRESSIVE (FREQUENTLY SHOWING LYMPHATIC AND BLOOD VESSEL INVASION, LYMPH NODE METASTASIS AND AN ADVANCED PATHOLOGICAL STAGE), AND HAD A POOR OUTCOME. DNA METHYLATION LEVELS OF HALLMARK GENES FOR EACH CLUSTER, SUCH AS IRX2, HOXD8, SPARCL1, RGS5 AND EI24, WERE AGAIN CORRELATED WITH CLINICOPATHOLOGICAL CHARACTERISTICS IN THE VALIDATION COHORT. DNA METHYLATION PROFILES REFLECTING CARCINOGENETIC FACTORS SUCH AS SMOKING AND COPD APPEAR TO BE ESTABLISHED IN NON-CANCEROUS LUNG TISSUE FROM PATIENTS WITH LADCS AND MAY DETERMINE THE AGGRESSIVENESS OF TUMORS DEVELOPING IN INDIVIDUAL PATIENTS, AND THUS PATIENT OUTCOME. 2014 17 3142 30 GLOBAL METHYLATION PROFILES IN BUCCAL CELLS OF LONG-TERM SMOKERS AND MOIST SNUFF CONSUMERS. PURPOSE: ALTERNATIONS IN GENE METHYLATION AND OTHER EPIGENETIC CHANGES REGULATE NORMAL DEVELOPMENT AS WELL AS DRIVE DISEASE PROGRESSION. THE AIM OF THIS STUDY IS TO INVESTIGATE GLOBAL METHYLATION CHANGES IN THE BUCCAL CELLS OF SMOKERS AND SMOKELESS TOBACCO USERS. MATERIALS AND METHODS: GENERALLY HEALTHY ADULT MALE SUBJECTS WERE RECRUITED INTO SMOKER (SMK), MOIST SNUFF CONSUMER (MSC) AND NON-TOBACCO CONSUMER (NTC) COHORTS (40 SUBJECTS/COHORT) (CLINICALTRIALS.GOV IDENTIFIER: NCT01923402). GLOBAL METHYLATION PROFILING WAS PERFORMED ON ILLUMINA 450 K METHYLATION ARRAYS USING BUCCAL CELL DNAS. RESULTS: THE SMK COHORT EXHIBITED LARGER QUALITATIVE AND QUANTITATIVE CHANGES RELATIVE TO MSC. APPROXIMATELY HALF OF THE DIFFERENTIALLY METHYLATED 1252 GENE LOCI WERE GROUPED AS COMBUSTIBLE TOBACCO-RELATED (CTR) SIGNATURES AND A THIRD OF THE CHANGES, TOBACCO-RELATED (TR) SIGNATURES, WERE ASSOCIATED WITH SMOKING. VERY FEW (41) DIFFERENTIALLY METHYLATED GENE LOCI WERE EXCLUSIVELY ASSOCIATED WITH MOIST SNUFF USE AND WERE DESIGNATED AS MOIST SNUFF-RELATED (MSR) SIGNATURE. PATHWAY ENRICHMENT ANALYSES REVEALED THAT DEVELOPMENTAL AND IMMUNE RESPONSE PATHWAYS, AMONG OTHERS, WERE IMPACTED DUE TO TOBACCO USE. CONCLUSIONS: CHRONIC CIGARETTE SMOKING CAUSES HYPER- AND HYPO-METHYLATION OF GENES THAT COULD CONTRIBUTE TO SMOKING-RELATED DISEASES. THESE RESULTS HELP PLACE COMBUSTIBLE AND NON-COMBUSTIBLE TOBACCO PRODUCTS ALONG A RISK CONTINUUM AND PROVIDE ADDITIONAL INSIGHTS INTO THE EFFECTS OF TOBACCO CONSUMPTION. 2018 18 1529 38 DNA METHYLATION CHANGES IN WHOLE BLOOD AND CD16+ NEUTROPHILS IN RESPONSE TO CHRONIC FOLIC ACID SUPPLEMENTATION IN WOMEN OF CHILDBEARING AGE. FOLATE, A WATER-SOLUBLE VITAMIN, IS A KEY SOURCE OF ONE-CARBON GROUPS FOR DNA METHYLATION, BUT STUDIES OF THE DNA METHYLATION RESPONSE TO SUPPLEMENTAL FOLIC ACID YIELD INCONSISTENT RESULTS. THESE STUDIES ARE COMMONLY CONDUCTED USING WHOLE BLOOD, WHICH CONTAINS A MIXED POPULATION OF WHITE BLOOD CELLS THAT HAVE BEEN SHOWN TO CONFOUND RESULTS. THE OBJECTIVE OF THIS STUDY WAS TO DETERMINE IF CD16+ NEUTROPHILS MAY PROVIDE MORE SPECIFIC DATA THAN WHOLE BLOOD FOR IDENTIFYING DNA METHYLATION RESPONSE TO CHRONIC FOLIC ACID SUPPLEMENTATION. THE STUDY WAS PERFORMED IN NORMAL WEIGHT (BMI 18.5 - 24.9 KG/M2) WOMEN (18 - 35 Y; N = 12), WITH BLOOD SAMPLES TAKEN BEFORE AND AFTER 8 WEEKS OF FOLIC ACID SUPPLEMENTATION AT 800 MUG/DAY. DNA METHYLATION PATTERNS FROM WHOLE BLOOD AND ISOLATED CD16+ NEUTROPHILS WERE MEASURED ACROSS >485,000 CPG SITES THROUGHOUT THE GENOME USING THE INFINIUM HUMANMETHYLATION450 BEADCHIP. OVER THE COURSE OF THE 8-WEEK SUPPLEMENTATION, 6746 AND 7513 CPG SITES CHANGED (P < 0.05) IN WHOLE BLOOD AND CD16+ NEUTROPHILS, RESPECTIVELY. DNA METHYLATION DECREASED IN 68.4% (WHOLE BLOOD) AND 71.8% (CD16+ NEUTROPHILS) OF THESE SITES. THERE WERE ONLY 182 CPG SITES THAT CHANGED IN BOTH THE WHOLE BLOOD AND CD16+ NEUTROPHILS, 139 OF WHICH CHANGED IN THE SAME DIRECTION. THESE RESULTS SUGGEST THAT THE GENOME-WIDE DNA METHYLATION RESPONSE TO CHRONIC FOLIC ACID SUPPLEMENTATION IS DIFFERENT BETWEEN WHOLE BLOOD AND CD16+ NEUTROPHILS AND THAT A SINGLE WHITE BLOOD CELL TYPE MAY FUNCTION AS A MORE SPECIFIC EPIGENETIC REPORTER OF FOLATE STATUS THAN WHOLE BLOOD. 2017 19 2037 30 EPIGENETIC CHANGES OF TIMP-3, GSTP-1 AND 14-3-3 SIGMA GENES AS INDICATION OF STATUS OF CHRONIC INFLAMMATION AND CANCER. OBJECTIVES: THIS STUDY AIMED TO COMPARE THE EPIGENETIC CHANGES VIA HYPERMETHYLATION STATUS OF TIMP-3, GSTP-1 AND 14-3-3SIGMA GENES, BETWEEN HEALTHY SUBJECTS AND PATIENTS WITH REVERSIBLE CHRONIC INFLAMMATORY DISEASE, AND BETWEEN HEALTHY SUBJECTS AND PATIENTS WITH IRREVERSIBLE MALIGNANT DISEASE, TO HIGHLIGHT THE GENETIC CHANGES THAT OCCUR IN THE PROGRESSION FROM AN INFLAMMATORY CONDITION TO IRREVERSIBLE GENETIC CHANGES COMMONLY OBSERVED IN CANCER PATIENTS. METHODS: DNA WAS EXTRACTED FROM THE BLOOD OF 680 HEALTHY SUBJECTS, AND TISSUES AND BLOOD OF 110 PATIENTS WITH CHRONIC INFLAMMATION DISEASE OF THE GUMS, AS WELL AS NEOPLASTIC TISSUES OF 108 BREAST CANCER PATIENTS. METHYLATION-SPECIFIC POLYMERASE CHAIN REACTION (PCR) FOR TIMP-3, GSTP-1 AND 14-3-3SIGMA WAS PERFORMED, AND HYPERMETHYLATION STATUS WAS ANALYZED AND COMPARED BETWEEN THE 3 GROUPS. RESULTS: THE HYPERMETHYLATION FREQUENCIES OF TIMP-3 AND GSTP-1 OF REVERSIBLE CHRONIC INFLAMMATORY GUM DISEASE AND THE CONTROL GROUP WERE SIMILAR, BUT BOTH WERE SIGNIFICANTLY LOWER THAN THOSE FOR MALIGNANT DISEASE PATIENTS (P<0.0001). THE METHYLATION FREQUENCY OF 14-3-3SIGMA IN CHRONIC INFLAMMATORY GUM DISEASE WAS HIGHER THAN IN THE CANCER AND CONTROL GROUPS (P<0.0001). THE METHYLATION OF CPG ISLANDS IN TIMP-3 AND GSTP-1 IN CHRONIC INFLAMMATION PATIENTS OCCURRED AS FREQUENTLY AS IN THE CONTROL GROUP, BUT LESS FREQUENTLY THAN IN BREAST CANCER PATIENTS. HOWEVER, THE EPIGENETIC SILENCING OF 14-3-3SIGMA OCCURRED MORE FREQUENTLY IN THE CHRONIC INFLAMMATION GROUP THAN IN CANCER PATIENTS AND HEALTHY CONTROLS. CONCLUSIONS: THE EPIGENETIC SILENCING OF 14-3-3SIGMA MIGHT BE ESSENTIAL FOR CHRONIC INFLAMMATORY GUM DISEASE. THE EPIGENETIC CHANGES PRESENTED IN CHRONIC INFLAMMATION PATIENTS MIGHT DEMONSTRATE AN IRREVERSIBLE DESTRUCTION IN THE TISSUES OR ORGANS SIMILAR TO CANCER. 2014 20 1590 29 DNA METHYLATION PROFILING IN HUMAN LUNG TISSUE IDENTIFIES GENES ASSOCIATED WITH COPD. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) IS A SMOKING-RELATED DISEASE CHARACTERIZED BY GENETIC AND PHENOTYPIC HETEROGENEITY. ALTHOUGH ASSOCIATION STUDIES HAVE IDENTIFIED MULTIPLE GENOMIC REGIONS WITH REPLICATED ASSOCIATIONS TO COPD, GENETIC VARIATION ONLY PARTIALLY EXPLAINS THE SUSCEPTIBILITY TO LUNG DISEASE, AND SUGGESTS THE RELEVANCE OF EPIGENETIC INVESTIGATIONS. WE PERFORMED GENOME-WIDE DNA METHYLATION PROFILING IN HOMOGENIZED LUNG TISSUE SAMPLES FROM 46 CONTROL SUBJECTS WITH NORMAL LUNG FUNCTION AND 114 SUBJECTS WITH COPD, ALL FORMER SMOKERS. THE DIFFERENTIALLY METHYLATED LOCI WERE INTEGRATED WITH PREVIOUS GENOME-WIDE ASSOCIATION STUDY RESULTS. THE TOP 535 DIFFERENTIALLY METHYLATED SITES, FILTERED FOR A MINIMUM MEAN METHYLATION DIFFERENCE OF 5% BETWEEN CASES AND CONTROLS, WERE ENRICHED FOR CPG SHELVES AND SHORES. PATHWAY ANALYSIS REVEALED ENRICHMENT FOR TRANSCRIPTION FACTORS. THE TOP DIFFERENTIALLY METHYLATED SITES FROM THE INTERSECTION WITH PREVIOUS GWAS WERE IN CHRM1, GLT1D1, AND C10ORF11; SORTED BY GWAS P-VALUE, THE TOP SITES INCLUDED FRMD4A, THSD4, AND C10ORF11. EPIGENETIC ASSOCIATION STUDIES COMPLEMENT GENETIC ASSOCIATION STUDIES TO IDENTIFY GENES POTENTIALLY INVOLVED IN COPD PATHOGENESIS. ENRICHMENT FOR GENES IMPLICATED IN ASTHMA AND LUNG FUNCTION AND FOR TRANSCRIPTION FACTORS SUGGESTS THE POTENTIAL PATHOGENIC RELEVANCE OF GENES IDENTIFIED THROUGH DIFFERENTIAL METHYLATION AND THE INTERSECTION WITH A BROADER RANGE OF GWAS ASSOCIATIONS. 2016