1 5723 113 SJOGREN'S SYNDROME X-CHROMOSOME DOSE EFFECT: AN EPIGENETIC PERSPECTIVE. SJOGREN'S SYNDROME (SS) IS A CHRONIC AUTOIMMUNE DISEASE AFFECTING EXOCRINE GLANDS LEADING TO MOUTH AND EYES DRYNESS. THE EXTENT TO WHICH EPIGENETIC DNA METHYLATION CHANGES ARE RESPONSIBLE FOR AN X-CHROMOSOME DOSE EFFECT HAS YET TO BE DETERMINED. OUR OBJECTIVES WERE TO (I) DESCRIBE HOW EPIGENETIC DNA METHYLATION CHANGES COULD EXPLAIN AN X-CHROMOSOME DOSE EFFECT IN SS FOR WOMEN WITH NORMAL 46,XX GENOTYPE AND (II) DETERMINE THE RELEVANT RELATIONSHIPS TO THIS DOSE EFFECT, BETWEEN X-LINKED GENES, GENES CONTROLLING X-CHROMOSOME INACTIVATION (XCI) AND GENES ENCODING ASSOCIATED TRANSCRIPTION FACTORS, ALL OF WHICH ARE DIFFERENTIALLY EXPRESSED AND/OR DIFFERENTIALLY METHYLATED IN THE SALIVARY GLANDS OF PATIENTS WITH SS. WE IDENTIFIED 58 UPREGULATED X-CHROMOSOME GENES, INCLUDING 22 GENES PREVIOUSLY SHOWN TO ESCAPE XCI, BASED ON THE ANALYSIS OF SS PATIENT SALIVARY GLAND GEO2R GENE EXPRESSION DATASETS. MOREOVER, WE FOUND XIST AND ITS CIS REGULATORS RLIM, FTX, AND CHIC1, AND POLYCOMB REPRESSOR GENES OF THE PRC1/2 COMPLEXES TO BE UPREGULATED. MANY OF THE X-CHROMOSOME GENES IMPLICATED IN SS PATHOGENESIS CAN BE REGULATED BY TRANSCRIPTION FACTORS WHICH WE FOUND TO BE OVEREXPRESSED AND/OR DIFFERENTIALLY METHYLATED IN PATIENTS WITH SS. DETERMINATION OF THE MECHANISMS UNDERLYING METHYLATION-DEPENDENT GENE EXPRESSION AND IMPAIRED XCI IS NEEDED TO FURTHER ELUCIDATE THE ETIOPATHOGENESIS OF SS. 2019 2 1603 37 DNA METHYLATION STUDIES IN SALIVA OF PATIENTS WITH SJOGREN'S SYNDROME. SJOGREN'S SYNDROME (SS) IS A RELATIVELY COMMON SYSTEMIC AUTOIMMUNE DISEASE OF UNKNOWN AETIOLOGY, ALTHOUGH GENETIC, HORMONAL, IMMUNOLOGIC, AND ENVIRONMENTAL FACTORS ARE THOUGHT TO BE INVOLVED IN DISEASE PATHOGENESIS. IT IS ALSO TERMED "AUTOIMMUNE EPITHELITIS", AND AFFLICTS MAINLY THE EPITHELIAL STRUCTURES OF SALIVARY AND LACHRYMAL GLANDS, THROUGH PERIEPITHELIAL LYMPHOCYTIC INFILTRATION RESPONSIBLE FOR THE OCCURRENCE OF DRYNESS SYMPTOMS. SJOGREN'S SYNDROME (SS) IS ALSO CHARACTERISED BY B CELL HYPERACTIVITY AS REFLECTED BY THE PRESENCE OF HYPERGAMMAGLOBULINEMIA AND THE PRODUCTION OF AUTOANTIBODIES, WHICH SEEMS TO BE ASSOCIATED WITH THE PRESENCE OF ECTOPIC GERMINAL CENTRES WITHIN THE INFLAMED MINOR SALIVARY GLANDS. CHRONIC ANTIGENIC STIMULATION MAY LEAD TO EXPANSION OF B CELL AUTOREACTIVE CLONES WITH RHEUMATOID FACTOR ACTIVITY, AND ADDITIONAL MOLECULAR EVENTS MEDIATE MALIGNANT TRANSFORMATION INTO NON-HODGKIN'S LYMPHOMAS OF B CELL ORIGIN. THEREFORE, THE INTERACTION BETWEEN THE IMMUNE CELLS OF THE INFLAMMATORY INFILTRATE AND THE SALIVARY EPITHELIUM SEEMS TO HAVE AN IMPORTANT CONTRIBUTION IN DISEASE PROCESS. RECENT HISTOPATHOLOGIC AND MOLECULAR STUDIES HAVE SHOWN THAT DNA METHYLATION LEVELS OF SS PATIENTS COMPARED TO HEALTHY INDIVIDUALS DIFFER IN EPITHELIAL CELLS OF SALIVARY GLANDS AND PERIPHERAL BLOOD MONONUCLEAR CELLS. IN THE PRESENT STUDY, WE INTEND TO ANALYSE THE EPIGENETIC MODIFICATIONS OF DNA IN THE SALIVA OF SS PATIENTS COMPARED TO HEALTHY CONTROLS. MORE SPECIFICALLY, SALIVARY DNA METHYLATION LEVELS OF SELECTED GENETIC LOCI PREVIOUSLY FOUND TO DIFFER IN OTHER TISSUES, WILL BE COMPARED BETWEEN SS PATIENTS AND HEALTHY CONTROLS. THE STUDY INCLUDES SALIVA COLLECTION FROM SS PATIENTS AND HEALTHY INDIVIDUALS, EXTRACTION OF GENOMIC DNA AND METHYLATION ASSESSMENT. THE EPIGENETIC PROFILE OF EACH GENETIC LOCUS WILL BE CORRELATED WITH SS PATIENTS' CLINICAL CHARACTERISTICS AND THE POSSIBILITY OF GENETIC LOCI WITH DIFFERENTIAL DIFFERENCES IN METHYLATION TO BE USED AS POTENTIAL DIAGNOSTIC BIOMARKERS WILL BE EXPLORED. THE CURRENT STUDY IS ANTICIPATED TO REVEAL POTENTIAL BIOMARKERS FOR DIAGNOSTIC AND THERAPEUTIC PURPOSES, OFFERING THE ADVANTAGE TO UTILISE THE EASILY COLLECTED AND HANDLED SALIVA AS THE MAIN BIOLOGIC MATERIAL. 2021 3 6050 33 THE CONTRIBUTION OF EPIGENETICS IN SJOGREN'S SYNDROME. SJOGREN'S SYNDROME (SS) IS A CHRONIC AUTOIMMUNE EPITHELITIS THAT COMBINES EXOCRINE GLAND DYSFUNCTIONS AND LYMPHOCYTIC INFILTRATIONS. WHILE THE PATHOGENESIS OF SS REMAINS UNCLEAR, ITS ETIOLOGY IS MULTIFUNCTIONAL AND INCLUDES A COMBINATION OF GENETIC PREDISPOSITIONS, ENVIRONMENTAL FACTORS, AND EPIGENETIC FACTORS. RECENTLY, INTEREST HAS GROWN IN THE INVOLVEMENT OF EPIGENETICS IN AUTOIMMUNE DISEASES. EPIGENETICS IS DEFINED AS CHANGES IN GENE EXPRESSION, THAT ARE INHERITABLE AND THAT DO NOT ENTAIL CHANGES IN THE DNA SEQUENCE. IN SS, SEVERAL EPIGENETIC MECHANISMS ARE DEFECTIVE INCLUDING DNA DEMETHYLATION THAT PREDOMINATES IN EPITHELIAL CELLS, AN ABNORMAL EXPRESSION OF MICRORNAS, AND ABNORMAL CHROMATIN POSITIONING-ASSOCIATED WITH AUTOANTIBODY PRODUCTION. LAST BUT NOT LEAST, EPIGENETIC MODIFICATIONS ARE REVERSIBLE AS OBSERVED IN MINOR SALIVARY GLANDS FROM SS PATIENTS AFTER B CELL DEPLETION USING RITUXIMAB. THUS EPIGENETIC FINDINGS IN SS OPEN NEW PERSPECTIVES FOR THERAPEUTIC APPROACHES AS WELL AS THE POSSIBLE IDENTIFICATION OF NEW BIOMARKERS. 2014 4 2515 33 EPIGENETICS AND SJOGREN'S SYNDROME. THERE IS GROWING EVIDENCE THAT EPIGENETICS, THE STUDY OF HERITABLE CHANGES IN GENE EXPRESSION THAT DO NOT INVOLVE MUTATIONS IN THE DNA ITSELF, MAY PLAY AN ESSENTIAL ROLE IN AUTOIMMUNE DISEASES (AID). IN SJOGREN'S SYNDROME (SS), A CHRONIC AID CHARACTERIZED BY AN EPITHELIS OF THE EXOCRINE GLANDS, EPIGENETIC STUDIES HAVE FOCUSED ON THREE MECHANISMS: DNA METHYLATION AND ITS CONSEQUENCES INCLUDING HUMAN ENDOGENOUS RETROVIRUS (HERV) EXPRESSION; MICRORNA EXPRESSION; AND PROTEIN POST-TRANSLATIONAL MODIFICATIONS ASSOCIATED WITH AUTOANTIBODY PRODUCTION. ALTHOUGH IN ITS INFANCY, COMPREHENSION OF THE EPIGENETIC (DYS)REGULATION IN SS MAY HELP US TO UNDERSTAND: WHY SS AFFECTS PREDOMINANTLY MIDDLE-AGED WOMEN; WHY GENETICALLY PREDISPOSED INDIVIDUALS DEVELOP SS BUT NOT OTHERS; WHY FLARE-UPS OCCUR; WHY TREATMENT RESPONSES DIFFER BETWEEN PATIENTS; AND WHY SOME PATIENTS DEVELOP LYMPHOMA. FROM THESE STUDIES WILL ARISE A BETTER COMPREHENSION OF THE PATHOPHYSIOLOGY OF SS AS WELL AS DEVELOPMENT OF NEW DIAGNOSTIC AND PROGNOSTIC BIOMARKERS, AND NOVEL THERAPEUTICS FOR PREVENTION AND PERHAPS EARLY INTERVENTION. 2012 5 207 41 ACTIVATION OF THE TYPE I INTERFERON PATHWAY IN PRIMARY SJOGREN'S SYNDROME. SJOGREN'S SYNDROME (SS), A CHRONIC AUTOIMMUNE SYSTEMIC DISEASE AFFECTING MIDDLE AGED WOMEN, IS CHARACTERIZED BY LYMPHOCYTIC INFILTRATION OF THE SALIVARY AND LACHRYMAL GLANDS RESULTING IN DRY EYES AND DRY MOUTH. RECENT ADVANCES HAVE REVEALED A MAJOR ROLE FOR ACTIVATION OF THE TYPE I INTERFERON (IFN) PATHWAY IN THE PATHOGENESIS OF THE SYNDROME, AS EVIDENCED BY THE INCREASED CIRCULATING TYPE I IFN ACTIVITY AND AN IFN "SIGNATURE" IN PERIPHERAL BLOOD MONONUCLEAR CELLS (PBMC) AND MINOR SALIVARY GLAND (MSG) BIOPSIES FROM THESE PATIENTS. POLYMORPHISMS IN GENES INVOLVED IN THE IFNALPHA PATHWAY, SUCH AS IRF5 AND STAT4, HAVE BEEN FOUND TO BE ASSOCIATED WITH DISEASE SUSCEPTIBILITY. WHILE THE INITIAL TRIGGERS OF THE INNATE IMMUNE RESPONSE IN SS REMAIN ELUSIVE, PRELIMINARY EVIDENCE SUPPORTS THE ROLE OF INAPPROPRIATELY EXPRESSED ENDOGENOUS LINE-1 (L1) RETROELEMENTS AS POTENTIAL TRIGGERS OF TYPE I IFN ACTIVATION IN SS, POSSIBLY THROUGH TOLL-LIKE RECEPTOR (TLR) DEPENDENT OR INDEPENDENT PATHWAYS. PROTEINS OF THE METHYLATION MACHINERY AND THE APOBEC FAMILY OF CYTIDINE DEAMINASES ARE COORDINATELY OVEREXPRESSED, SUGGESTING THAT THOSE PROTEINS MIGHT CONTRIBUTE TO REGULATION OF THE INAPPROPRIATELY EXPRESSED L1 ENDOGENOUS RETROELEMENTS IN SS. GIVEN THE APPARENT CENTRAL ROLE OF IFNALPHA IN THE PATHOGENESIS OF SS, BLOCKADE OF THIS CYTOKINE MAY BE A RATIONAL THERAPEUTIC APPROACH. IN THE CURRENT REVIEW WE SUMMARIZE THE CURRENT EVIDENCE REGARDING THE POTENTIAL TRIGGERS OF TYPE I IFN ACTIVATION AS WELL AS THE DATA SUPPORTING GENETIC AND EPIGENETIC REGULATION OF THE TYPE I IFN SYSTEM IN SS. 2010 6 1508 38 DNA METHYLATION AND MRNA AND MICRORNA EXPRESSION OF SLE CD4+ T CELLS CORRELATE WITH DISEASE PHENOTYPE. SYSTEMIC LUPUS ERYTHEMATOSUS (SLE) IS AN AUTOIMMUNE DISEASE WELL KNOWN FOR ITS CLINICAL HETEROGENEITY, AND ITS ETIOLOGY SECONDARY TO A CROSS-TALK INVOLVING GENETIC PREDISPOSITION AND ENVIRONMENTAL STIMULI. ALTHOUGH GENOME-WIDE ANALYSIS HAS CONTRIBUTED GREATLY TO OUR UNDERSTANDING OF THE GENETIC BASIS OF SLE, THERE IS INCREASING EVIDENCE FOR A ROLE OF EPIGENETICS. INDEED, RECENT DATA HAVE DEMONSTRATED THAT IN PATIENTS WITH SLE, THERE ARE STRIKING ALTERATIONS OF DNA METHYLATION, HISTONE MODIFICATIONS, AND DEREGULATED MICRORNA EXPRESSION, THE SUM OF WHICH CONTRIBUTE TO OVER-EXPRESSION OF SELECT AUTOIMMUNE-RELATED GENES AND LOSS OF TOLERANCE. TO ADDRESS THIS ISSUE AT THE LEVEL OF CLINICAL PHENOTYPE, WE PERFORMED DNA METHYLATION, MRNA AND MICRORNA EXPRESSION SCREENING USING HIGH-THROUGHPUT SEQUENCING OF PURIFIED CD4+ T CELLS FROM PATIENTS WITH SLE, COMPARED TO AGE AND SEX MATCHED CONTROLS. IN PARTICULAR, WE STUDIED 42 PATIENTS WITH SLE AND DIVIDED THIS GROUP INTO THREE CLINICAL PHENOTYPES: A) THE PRESENCE OF SKIN LESIONS WITHOUT SIGNS OF SYSTEMIC PATHOLOGY; B) SKIN LESIONS BUT ALSO CHRONIC RENAL PATHOLOGY; AND C) SKIN LESIONS, CHRONIC RENAL PATHOLOGY AND POLYARTICULAR DISEASE. INTERESTINGLY, AND AS EXPECTED, SEQUENCING DATA REVEALED CHANGES IN DNA METHYLATION IN SLE COMPARED TO CONTROLS. HOWEVER, AND MORE IMPORTANTLY, ALTHOUGH THERE WERE COMMON METHYLATION CHANGES FOUND IN ALL GROUPS OF SLE COMPARED TO CONTROLS, THERE WAS SPECIFIC DNA METHYLATION CHANGES THAT CORRELATED WITH CLINICAL PHENOTYPE. THESE INCLUDED CHANGES IN THE NOVEL KEY TARGET GENES NLRP2, CD300LB AND S1PR3, AS WELL AS CHANGES IN THE CRITICAL PATHWAYS, INCLUDING THE ADHERENS JUNCTION AND LEUKOCYTE TRANSENDOTHELIAL MIGRATION. WE ALSO NOTED THAT A SIGNIFICANT PROPORTION OF GENES UNDERGOING DNA METHYLATION CHANGES WERE INVERSELY CORRELATED WITH GENE EXPRESSION AND THAT MIRNA SCREENING REVEALED THE EXISTENCE OF SUBSETS WITH CHANGES IN EXPRESSION. INTEGRATED ANALYSIS OF THIS DATA HIGHLIGHTS SPECIFIC SETS OF MIRNAS CONTROLLED BY DNA METHYLATION, AND GENES THAT ARE ALTERED BY METHYLATION AND TARGETED BY MIRNAS. IN CONCLUSION, OUR FINDINGS SUGGEST SELECT EPIGENETIC MECHANISMS THAT CONTRIBUTE TO CLINICAL PHENOTYPES AND FURTHER SHED LIGHT ON A NEW VENUE FOR BASIC SLE RESEARCH. 2014 7 2909 31 GENE EXPRESSION PROFILING IN FIBROMYALGIA INDICATES AN AUTOIMMUNE ORIGIN OF THE DISEASE AND OPENS NEW AVENUES FOR TARGETED THERAPY. FIBROMYALGIA IS A CHRONIC DISORDER CHARACTERIZED BY WIDESPREAD PAIN AND BY SEVERAL NON-PAIN SYMPTOMS. AUTOIMMUNITY, SMALL FIBER NEUROPATHY AND NEUROINFLAMMATION HAVE BEEN SUGGESTED TO BE INVOLVED IN THE PATHOGENESIS OF THE DISEASE. WE HAVE INVESTIGATED THE GENE EXPRESSION PROFILE IN PERIPHERAL BLOOD MONONUCLEAR CELLS OBTAINED FROM TEN PATIENTS AND TEN HEALTHY SUBJECTS. OF THE 545,500 TRANSCRIPTS ANALYZED, 1673 RESULTED MODULATED IN FIBROMYALGIC PATIENTS. THE MAJORITY OF THESE GENES ARE INVOLVED IN BIOLOGICAL PROCESSES AND PATHWAYS LINKED TO THE CLINICAL MANIFESTATIONS OF THE DISEASE. MOREOVER, GENES INVOLVED IN IMMUNOLOGICAL PATHWAYS CONNECTED TO INTERLEUKIN-17 AND TO TYPE I INTERFERON SIGNATURES WERE ALSO MODULATED, SUGGESTING THAT AUTOIMMUNITY PLAYS A ROLE IN THE DISEASE. WE THEN AIMED AT IDENTIFYING DIFFERENTIALLY EXPRESSED LONG NON-CODING RNAS (LNCRNAS) FUNCTIONALLY CONNECTED TO MODULATED GENES BOTH DIRECTLY AND VIA MICRORNA TARGETING. ONLY TWO LNCRNAS OF THE 298 FOUND MODULATED IN PATIENTS, WERE ABLE TO TARGET THE MOST HIGHLY CONNECTED GENES IN THE FIBROMYALGIA INTERACTOME, SUGGESTING THEIR INVOLVEMENT IN CRUCIAL GENE REGULATION. OUR GENE EXPRESSION DATA WERE CONFIRMED BY REAL TIME PCR, BY AUTOANTIBODY TESTING, DETECTION OF SOLUBLE MEDIATORS AND TH-17 POLARIZATION IN A VALIDATION COHORT OF 50 PATIENTS. OUR RESULTS INDICATE THAT GENETIC AND EPIGENETIC MECHANISMS AS WELL AS AUTOIMMUNITY PLAY A PIVOTAL ROLE IN THE PATHOGENESIS OF FIBROMYALGIA. 2020 8 4268 36 MICROBIAL AGENTS AS PUTATIVE INDUCERS OF B CELL LYMPHOMA IN SJOGREN'S SYNDROME THROUGH AN IMPAIRED EPIGENETIC CONTROL: THE STATE-OF-THE-ART. INTRODUCTION: UNDERSTANDING THE MECHANISMS UNDERLYING THE PATHOGENESIS OF SJOGREN'S SYNDROME (SS) IS CRUCIALLY IMPORTANT IN ORDER TO BE ABLE TO DISCRIMINATE THE STEPS THAT LEAD TO B CELL TRANSFORMATION AND PROMPTLY IDENTIFY THE PATIENTS AT RISK OF LYMPHOMAGENESIS. THE AIM OF THIS NARRATIVE REVIEW IS TO DESCRIBE THE EVIDENCE CONCERNING THE ROLE THAT INFECTIONS OR DYSBIOSIS PLAYS IN THE EPIGENETIC CONTROL OF GENE EXPRESSION IN SS PATIENTS AND THEIR POSSIBLE INVOLVEMENT IN B CELL LYMPHOMAGENESIS. MATERIALS AND METHODS: WE SEARCHED THE PUBMED AND GOOGLE SCHOLAR DATABASES AND SELECTED A TOTAL OF 92 ARTICLES PUBLISHED DURING THE LAST 25 YEARS THAT DESCRIBE EXPERIMENTAL AND CLINICAL STUDIES OF THE POTENTIAL ASSOCIATIONS OF MICROBIOTA AND EPIGENETIC ABERRATIONS WITH THE RISK OF B CELL LYMPHOMA IN SS PATIENTS. RESULTS AND DISCUSSION: THE GENETIC BACKGROUND OF SS PATIENTS IS CHARACTERIZED BY THE HYPEREXPRESSION OF GENES THAT ARE MAINLY INVOLVED IN REGULATING THE INNATE AND ADAPTIVE IMMUNE RESPONSES AND ONCOGENESIS. IN ADDITION, SALIVARY GLAND EPITHELIAL CELLS AND LYMPHOCYTES BOTH HAVE AN ALTERED EPIGENETIC BACKGROUND THAT ENHANCES THE ACTIVATION OF PROINFLAMMATORY AND SURVIVAL PATHWAYS. DYSBIOSIS OR CHRONIC LATENT INFECTIONS MAY TUNE THE IMMUNE RESPONSE AND MODIFY THE CELL EPIGENETIC MACHINERY IN SUCH A WAY AS TO GIVE B LYMPHOCYTES AN ACTIVATED OR TRANSFORMED PHENOTYPE. IT IS ALSO WORTH NOTING THAT TRANSPOSABLE INTEGRATED RETROELEMENTS MAY PARTICIPATE IN THE PATHOGENESIS OF SS AND B CELL LYMPHOMAGENESIS BY INDUCING DNA BREAKS, MODULATING CELL GENE EXPRESSION, OR GENERATING ABERRANT TRANSCRIPTS THAT CHRONICALLY STIMULATE THE IMMUNE SYSTEM. CONCLUSIONS: MICROORGANISMS MAY EPIGENETICALLY MODIFY TARGET CELLS AND INDUCE THEIR TRANSCRIPTOME TO GENERATE AN ACTIVATED OR TRANSFORMED PHENOTYPE. THE OCCURRENCE OF LYMPHOMA IN MORE THAN 15% OF SS PATIENTS MAY BE THE END RESULT OF A COMBINATION OF GENETICS, EPIGENETICS, AND DYSBIOSIS OR LATENT INFECTIONS. 2019 9 2222 33 EPIGENETIC MODIFICATIONS IN SALIVARY GLANDS FROM PATIENTS WITH SJOGREN'S SYNDROME AFFECT CYTOKERATIN 19 EXPRESSION. SJOGREN'S SYNDROME (SS) IS A CHRONIC AUTOIMMUNE EPITHELITIS, AND SEVERAL LINES OF EXPERIMENTS INDICATE THAT MULTIFACTORIAL FACTORS CONTRIBUTE TO SALIVARY GLAND EPITHELIAL CELLS (SGEC) DYSFUNCTIONS INCLUDING A COMBINATION OF ENVIRONMENTAL FACTORS, LYMPHOCYTIC INFILTRATIONS, GENETIC PREDISPOSITIONS AS WELL AS EPIGENETIC DEFECTS. SUCH STATEMENT IS REINFORCED BY THE OBSERVATION THAT GLOBAL DNA METHYLATION (5MECYT) IS ALTERED IN MINOR SALIVARY GLANDS FROM PSS PATIENTS AND THAT SUCH DEFECT IS ASSOCIATED CYTOKERATIN 19 (KRT19) OVEREXPRESSION. AN EPIGENETIC DEREGULATION OF THE KRT19 GENE WAS FURTHER TESTED BY TREATING THE HUMAN SALIVARY GLAND (HSG) CELL LINE WITH THE DNA DEMETHYLATING AGENT 5-AZACYTIDIN, AND WITH THE HISTONE ACETYLASE INHIBITOR TRICHOSTATIN A. BLOCKING DNA METHYLATION, BUT NOT HISTONE ACETYLATION, WITH 5-AZACYTIDIN WAS ASSOCIATED WITH KRT19 OVEREXPRESSION AT BOTH TRANSCRIPTIONAL AND PROTEIN LEVEL. NEXT, ANALYSIS OF THE CPG GENOME-WIDE METHYLOME ARRAY IN THE KTR19 LOCUS FROM LONG TERM CULTURED SGEC OBTAINED FROM 8 PSS PATIENTS REVEALED A MORE REDUCED DNA METHYLATION LEVEL IN THOSE PATIENTS WITH DEFECTIVE GLOBAL DNA METHYLATION. ALTOGETHER, OUR DATA, THEREFORE, SUGGEST THAT ALTERATION OF DNA METHYLATION IN SGEC MAY CONTRIBUTE TO PSS PATHOPHYSIOLOGY IN PART BY CONTROLLING THE EXPRESSION OF KRT19. 2016 10 1165 37 CONTRIBUTION OF DNA METHYLATION TO THE PATHOGENESIS OF SJOGREN'S SYNDROME: A REVIEW. SJOGREN'S SYNDROME (SS) IS A CHRONIC SYSTEMIC DISEASE CHARACTERISED BY SALIVARY AND LACRIMAL GLAND DYSFUNCTION WITH SEVERE IMPLICATIONS FOR THE WELL-BEING OF BEARING INDIVIDUALS. ALTHOUGH ITS ORIGIN HAS NOT YET BEEN FULLY ELUCIDATED, IT IS KNOWN THAT GENETIC, ENVIRONMENTAL, AND EPIGENETIC FACTORS ARE IMPORTANT CONTRIBUTORS TO THE PATHOGENESIS OF THIS SYNDROME. DNA METHYLATION IS A RELEVANT, WIDELY STUDIED EPIGENETIC FACTOR THAT IS POSSIBLY RELATED TO THE ESTABLISHMENT OF SS. THE AIM OF THE PRESENT STUDY WAS TO PERFORM A SYSTEMATIC REVIEW OF THE LITERATURE TO COMPILE STUDIES ON THE CONTRIBUTION OF DNA METHYLATION TO THE PATHOGENESIS OF SS. A LITERATURE SEARCH WAS PERFORMED IN 4 DATABASES (PUBMED, WEB OF SCIENCE, LILACS, AND SCOPUS) USING PREVIOUSLY SELECTED MEDICAL SUBJECT HEADINGS (MESH) DESCRIPTORS, AND ARTICLE SELECTION CONSIDERED OBSERVATIONAL STUDIES ONLY. AFTER A FULL-TEXT READING OF THE SELECTED ARTICLES, 15 STUDIES WERE IN ACCORDANCE WITH THE ELIGIBILITY CRITERIA FOR DATA EXTRACTION. METHYLATION DETECTION APPROACHES INCLUDED GLOBAL METHYLATION, GENOME-WIDE ASSESSMENT OF DIFFERENTIALLY METHYLATED REGIONS, AND SITE-SPECIFIC METHYLATION. FOURTEEN ARTICLES REPORTED ASSOCIATIONS OF DNA METHYLATION PROFILES IN SS PATIENTS, BOTH GLOBALLY AND IN SEVERAL GENES IN SALIVARY GLANDS AND BLOOD CELLS. THUS, DNA METHYLATION MAY CONTRIBUTE TO THE PATHOGENESIS OF SS. THE FINDINGS REINFORCE THE IMPORTANCE OF EPIGENETIC MARKERS IN THE DYNAMICS OF SS AND MAY DIRECT EFFORTS TOWARD THE DEVELOPMENT OF NEW DIAGNOSTIC AND THERAPEUTIC APPROACHES. 2022 11 6468 28 TISSUE-SPECIFIC ENRICHMENT OF LYMPHOMA RISK LOCI IN REGULATORY ELEMENTS. THOUGH NUMEROUS POLYMORPHISMS HAVE BEEN ASSOCIATED WITH RISK OF DEVELOPING LYMPHOMA, HOW THESE VARIANTS FUNCTION TO PROMOTE TUMORIGENESIS IS POORLY UNDERSTOOD. HERE, WE REPORT THAT LYMPHOMA RISK SNPS, ESPECIALLY IN THE NON-HODGKIN'S LYMPHOMA SUBTYPE CHRONIC LYMPHOCYTIC LEUKEMIA, ARE SIGNIFICANTLY ENRICHED FOR CO-LOCALIZATION WITH EPIGENETIC MARKS OF ACTIVE GENE REGULATION. THESE ENRICHMENTS WERE SEEN IN A LYMPHOID-SPECIFIC MANNER FOR NUMEROUS ENCODE DATASETS, INCLUDING DNASE-HYPERSENSITIVITY AS WELL AS MULTIPLE SEGMENTATION-DEFINED ENHANCER REGIONS. FURTHERMORE, WE IDENTIFY PUTATIVELY FUNCTIONAL SNPS THAT ARE BOTH IN REGULATORY ELEMENTS IN LYMPHOCYTES AND ARE ASSOCIATED WITH GENE EXPRESSION CHANGES IN BLOOD. WE DEVELOPED AN ALGORITHM, UES, THAT USES A MONTE CARLO SIMULATION APPROACH TO CALCULATE THE ENRICHMENT OF PREVIOUSLY IDENTIFIED RISK SNPS IN VARIOUS FUNCTIONAL ELEMENTS. THIS MULTISCALE APPROACH INTEGRATING MULTIPLE DATASETS HELPS DISENTANGLE THE UNDERLYING BIOLOGY OF LYMPHOMA, AND MORE BROADLY, IS GENERALLY APPLICABLE TO GWAS RESULTS FROM OTHER DISEASES AS WELL. 2015 12 1567 33 DNA METHYLATION OF THE KLF14 GENE REGION IN WHOLE BLOOD CELLS PROVIDES PREDICTION FOR THE CHRONIC INFLAMMATION IN THE ADIPOSE TISSUE. KRUPPEL-LIKE FACTOR 14 (KLF14) GENE, WHICH APPEARS TO BE A MASTER REGULATOR OF GENE EXPRESSION IN THE ADIPOSE TISSUE AND HAVE PREVIOUSLY BEEN ASSOCIATED WITH BMI AND TYPE 2 DIABETES (T2D) BY LARGE GENOME-WIDE ASSOCIATION STUDIES. IN ORDER TO FIND PREDICTIVE BIOMARKERS FOR THE DEVELOPMENT OF T2D, IT IS NECESSARY TO TAKE EPIGENOMIC CHANGES AFFECTED BY ENVIRONMENTAL FACTORS INTO ACCOUNT. THIS STUDY FOCUSES ON AGEING AND OBESITY, WHICH ARE T2D RISK FACTORS, AND EXAMINES EPIGENETIC CHANGES AND INFLAMMATORY CHANGES. WE INVESTIGATED DNA METHYLATION CHANGES IN THE KLF14 PROMOTER REGION IN DIFFERENT ORGANS OF MICE FOR COMPARING AGING AND WEIGHT. WE FOUND THAT METHYLATION LEVELS OF THESE SITES WERE INCREASED WITH AGING AND WEIGHT IN THE SPLEEN, THE ADIPOSE TISSUE, THE KIDNEY, THE LUNG, THE COLON AND THE WHOLE BLOOD CELLS. IN ADDITION, IN THE SPLEEN, THE ADIPOSE TISSUE AND THE WHOLE BLOOD, THESE EPIGENETIC CHANGES WERE ALSO SIGNIFICANTLY ASSOCIATED WITH INFLAMMATORY LEVELS. MOREOVER, NOT ONLY KLF14, BUT ALSO EXPRESSION LEVELS OF SOME DOWNSTREAM GENES WERE DECREASED WITH METHYLATION IN THE SPLEEN, THE ADIPOSE TISSUE AND THE WHOLE BLOOD CELLS. TAKEN TOGETHER, OUR RESULTS SUGGEST THAT METHYLATION CHANGES OF KLF14 IN THOSE TISSUES MAY BE ASSOCIATED WITH CHANGES IN GENE EXPRESSION AND INFLAMMATION ON THE ADIPOSE TISSUE OF OBESITY AND T2D. IN ADDITION, THE METHYLATION CHANGES IN THE WHOLE BLOOD CELLS MAY SERVE AS A PREDICTIVE EPIGENETIC BIOMARKER FOR THE DEVELOPMENT OF T2D. 2018 13 3069 31 GENOME-WIDE DNA METHYLATION PROFILING IDENTIFIES EPIGENETIC CHANGES IN CD4+ AND CD14+ CELLS OF MULTIPLE SCLEROSIS PATIENTS. MULTIPLE SCLEROSIS (MS) IS A CHRONIC AUTOIMMUNE AND DEGENERATIVE DISEASE OF THE CENTRAL NERVOUS SYSTEM, WHICH DEVELOPS IN GENETICALLY PREDISPOSED INDIVIDUALS UPON EXPOSURE TO ENVIRONMENTAL INFLUENCES. ENVIRONMENTAL TRIGGERS OF MS, SUCH AS VIRAL INFECTIONS OR SMOKING, WERE DEMONSTRATED TO AFFECT DNA METHYLATION, AND THUS TO INVOLVE THIS IMPORTANT EPIGENETIC MECHANISM IN THE DEVELOPMENT OF PATHOLOGICAL PROCESS. TO IDENTIFY MS-ASSOCIATED DNA METHYLATION HALLMARKS, WE PERFORMED GENOME-WIDE DNA METHYLATION PROFILING OF TWO CELL POPULATIONS (CD4+ T-LYMPHOCYTES AND CD14+ MONOCYTES), COLLECTED FROM THE SAME TREATMENT-NAIVE RELAPSING-REMITTING MS PATIENTS AND HEALTHY SUBJECTS, USING ILLUMINA 450 K METHYLATION ARRAYS. WE REVEALED SIGNIFICANT CHANGES IN DNA METHYLATION FOR BOTH CELL POPULATIONS IN MS. IN CD4+ CELLS OF MS PATIENTS THE MAJORITY OF DIFFERENTIALLY METHYLATED POSITIONS (DMPS) WERE SHOWN TO BE HYPOMETHYLATED, WHILE IN CD14+ CELLS - HYPERMETHYLATED. DIFFERENTIAL METHYLATION OF HLA-DRB1 GENE IN CD4+ AND CD14+ CELLS WAS ASSOCIATED WITH CARRIAGE OF DRB1*15 ALLELE INDEPENDENTLY FROM THE DISEASE STATUS. BESIDES, ABOUT 20% OF IDENTIFIED DMPS WERE SHARED BETWEEN TWO CELL POPULATIONS AND HAD THE SAME DIRECTION OF METHYLATION CHANGES; THEY MAY BE INVOLVED IN BASIC EPIGENETIC PROCESSES OCCURING IN MS. THESE FINDINGS SUGGEST THAT THE EPIGENETIC MECHANISM OF DNA METHYLATION IN IMMUNE CELLS CONTRIBUTES TO MS; FURTHER STUDIES ARE NOW REQUIRED TO VALIDATE THESE RESULTS AND UNDERSTAND THEIR FUNCTIONAL SIGNIFICANCE. 2022 14 2635 35 EPIGENOME-WIDE DNA METHYLATION REGULATES CARDINAL PATHOLOGICAL FEATURES OF PSORIASIS. BACKGROUND: PSORIASIS IS A CHRONIC INFLAMMATORY AUTOIMMUNE SKIN DISORDER. SEVERAL STUDIES SUGGESTED PSORIASIS TO BE A COMPLEX MULTIFACTORIAL DISEASE, BUT THE EXACT TRIGGERING FACTOR IS YET TO BE DETERMINED. EVIDENCES SUGGEST THAT IN ADDITION TO GENETIC FACTORS, EPIGENETIC REPROGRAMMING IS ALSO INVOLVED IN PSORIASIS DEVELOPMENT. MAJOR HISTOPATHOLOGICAL FEATURES, LIKE INCREASED PROLIFERATION AND ABNORMAL DIFFERENTIATION OF KERATINOCYTES, AND IMMUNE CELL INFILTRATIONS ARE CHARACTERISTIC MARKS OF PSORIATIC SKIN LESIONS. FOLLOWING THERAPY, HISTOPATHOLOGICAL FEATURES AS WELL AS ABERRANT DNA METHYLATION REVERSED TO NORMAL LEVELS. TO UNDERSTAND THE ROLE OF DNA METHYLATION IN REGULATING THESE CRUCIAL HISTOPATHOLOGIC FEATURES, WE INVESTIGATED THE GENOME-WIDE DNA METHYLATION PROFILE OF PSORIASIS PATIENTS WITH DIFFERENT HISTOPATHOLOGICAL FEATURES. RESULTS: GENOME-WIDE DNA METHYLATION PROFILING OF PSORIATIC AND ADJACENT NORMAL SKIN TISSUES IDENTIFIED SEVERAL NOVEL DIFFERENTIALLY METHYLATED REGIONS ASSOCIATED WITH PSORIASIS. DIFFERENTIALLY METHYLATED CPGS WERE SIGNIFICANTLY ENRICHED IN SEVERAL PSORIASIS SUSCEPTIBILITY (PSORS) REGIONS AND EPIGENETICALLY REGULATED THE EXPRESSION OF KEY PATHOGENIC GENES, EVEN WITH LOW-CPG PROMOTERS. TOP DIFFERENTIALLY METHYLATED GENES OVERLAPPED WITH PSORS REGIONS INCLUDING S100A9, SELENBP1, CARD14, KAZN AND PTPN22 SHOWED INVERSE CORRELATION BETWEEN METHYLATION AND GENE EXPRESSION. WE IDENTIFIED DIFFERENTIALLY METHYLATED GENES ASSOCIATED WITH CHARACTERISTIC HISTOPATHOLOGICAL FEATURES IN PSORIASIS. PSORIATIC SKIN WITH MUNRO'S MICROABSCESS, A DISTINCTIVE FEATURE IN PSORIASIS INCLUDING PARAKERATOSIS AND NEUTROPHIL ACCUMULATION AT THE STRATUM CORNEUM, WAS ENRICHED WITH DIFFERENTIALLY METHYLATED GENES INVOLVED IN NEUTROPHIL CHEMOTAXIS. RETE PEG ELONGATION AND FOCAL HYPERGRANULOSIS WERE ALSO ASSOCIATED WITH EPIGENETICALLY REGULATED GENES, SUPPORTING THE REVERSIBLE NATURE OF THESE CHARACTERISTIC FEATURES DURING REMISSION AND RELAPSE OF THE LESIONS. CONCLUSION: OUR STUDY, FOR THE FIRST TIME, INDICATED THE POSSIBLE INVOLVEMENT OF DNA METHYLATION IN REGULATING THE CARDINAL PATHOPHYSIOLOGICAL FEATURES IN PSORIASIS. COMMON GENES INVOLVED IN REGULATION OF THESE PATHOLOGIES MAY BE USED TO DEVELOP DRUGS FOR BETTER CLINICAL MANAGEMENT OF PSORIASIS. 2018 15 1739 33 EARLY DNA METHYLATION CHANGES IN CHILDREN DEVELOPING BETA CELL AUTOIMMUNITY AT A YOUNG AGE. AIMS/HYPOTHESIS: TYPE 1 DIABETES IS A CHRONIC AUTOIMMUNE DISEASE OF COMPLEX AETIOLOGY, INCLUDING A POTENTIAL ROLE FOR EPIGENETIC REGULATION. PREVIOUS EPIGENOMIC STUDIES FOCUSED MAINLY ON CLINICALLY DIAGNOSED INDIVIDUALS. THE AIM OF THE STUDY WAS TO ASSESS EARLY DNA METHYLATION CHANGES ASSOCIATED WITH TYPE 1 DIABETES ALREADY BEFORE THE DIAGNOSIS OR EVEN BEFORE THE APPEARANCE OF AUTOANTIBODIES. METHODS: REDUCED REPRESENTATION BISULPHITE SEQUENCING (RRBS) WAS APPLIED TO STUDY DNA METHYLATION IN PURIFIED CD4(+) T CELL, CD8(+) T CELL AND CD4(-)CD8(-) CELL FRACTIONS OF 226 PERIPHERAL BLOOD MONONUCLEAR CELL SAMPLES LONGITUDINALLY COLLECTED FROM SEVEN TYPE 1 DIABETES-SPECIFIC AUTOANTIBODY-POSITIVE INDIVIDUALS AND CONTROL INDIVIDUALS MATCHED FOR AGE, SEX, HLA RISK AND PLACE OF BIRTH. WE ALSO EXPLORED CORRELATIONS BETWEEN DNA METHYLATION AND GENE EXPRESSION USING RNA SEQUENCING DATA FROM THE SAME SAMPLES. TECHNICAL VALIDATION OF RRBS RESULTS WAS PERFORMED USING PYROSEQUENCING. RESULTS: WE IDENTIFIED 79, 56 AND 45 DIFFERENTIALLY METHYLATED REGIONS IN CD4(+) T CELLS, CD8(+) T CELLS AND CD4(-)CD8(-) CELL FRACTIONS, RESPECTIVELY, BETWEEN TYPE 1 DIABETES-SPECIFIC AUTOANTIBODY-POSITIVE INDIVIDUALS AND CONTROL PARTICIPANTS. THE ANALYSIS OF PRE-SEROCONVERSION SAMPLES IDENTIFIED DNA METHYLATION SIGNATURES AT THE VERY EARLY STAGE OF DISEASE, INCLUDING DIFFERENTIAL METHYLATION AT THE PROMOTER OF IRF5 IN CD4(+) T CELLS. FURTHER, WE VALIDATED RRBS RESULTS USING PYROSEQUENCING AT THE FOLLOWING CPG SITES: CHR19:18118304 IN THE PROMOTER OF ARRDC2; CHR21:47307815 IN THE INTRON OF PCBP3; AND CHR14:81128398 IN THE INTERGENIC REGION NEAR TRAF3 IN CD4(+) T CELLS. CONCLUSIONS/INTERPRETATION: THESE PRELIMINARY RESULTS PROVIDE NOVEL INSIGHTS INTO CELL TYPE-SPECIFIC DIFFERENTIAL EPIGENETIC REGULATION OF GENES, WHICH MAY CONTRIBUTE TO TYPE 1 DIABETES PATHOGENESIS AT THE VERY EARLY STAGE OF DISEASE DEVELOPMENT. SHOULD THESE FINDINGS BE VALIDATED, THEY MAY SERVE AS A POTENTIAL SIGNATURE USEFUL FOR DISEASE PREDICTION AND MANAGEMENT. 2022 16 1584 27 DNA METHYLATION PROFILES OF SELECTED PRO-INFLAMMATORY CYTOKINES IN ALZHEIMER DISEASE. BY MEANS OF FUNCTIONAL GENOMICS ANALYSIS, WE RECENTLY DESCRIBED THE MRNA EXPRESSION PROFILES OF VARIOUS GENES INVOLVED IN THE NEUROINFLAMMATORY RESPONSE IN THE BRAINS OF SUBJECTS WITH LATE-ONSET ALZHEIMER DISEASE (LOAD). SOME OF THESE GENES, NAMELY INTERLEUKIN (IL)-1BETA AND IL-6, SHOWED DISTINCT EXPRESSION PROFILES WITH PEAK EXPRESSION DURING THE FIRST STAGES OF THE DISEASE AND CONTROL-LIKE LEVELS AT LATER STAGES. IL-1BETA AND IL-6 GENES ARE MODULATED BY DNA METHYLATION IN DIFFERENT CHRONIC AND DEGENERATIVE DISEASES; IT IS ALSO WELL KNOWN THAT LOAD MAY HAVE AN EPIGENETIC BASIS. INDEED, WE AND OTHERS HAVE PREVIOUSLY REPORTED GENE-SPECIFIC DNA METHYLATION ALTERATIONS IN LOAD AND IN RELATED ANIMAL MODELS. BASED ON THESE DATA, WE STUDIED THE DNA METHYLATION PROFILES, AT SINGLE CYTOSINE RESOLUTION, OF IL-1BETA AND IL-6 5'-FLANKING REGION BY BISULPHITE MODIFICATION IN THE CORTEX OF HEALTHY CONTROLS AND LOAD PATIENTS AT 2 DIFFERENT DISEASE STAGES: BRAAK I-II/A AND BRAAK V-VI/C. OUR ANALYSIS PROVIDES EVIDENCE THAT NEUROINFLAMMATION IN LOAD IS ASSOCIATED WITH (AND POSSIBLY MEDIATED BY) EPIGENETIC MODIFICATIONS. 2017 17 2653 32 EPIGENOTYPING IN PERIPHERAL BLOOD CELL DNA AND BREAST CANCER RISK: A PROOF OF PRINCIPLE STUDY. BACKGROUND: EPIGENETIC CHANGES ARE EMERGING AS ONE OF THE MOST IMPORTANT EVENTS IN CARCINOGENESIS. TWO ALTERATIONS IN THE PATTERN OF DNA METHYLATION IN BREAST CANCER (BC) HAVE BEEN PREVIOUSLY REPORTED; ACTIVE ESTROGEN RECEPTOR-ALPHA (ER-ALPHA) IS ASSOCIATED WITH DECREASED METHYLATION OF ER-ALPHA TARGET (ERT) GENES, AND POLYCOMB GROUP TARGET (PCGT) GENES ARE MORE LIKELY THAN OTHER GENES TO HAVE PROMOTER DNA HYPERMETHYLATION IN CANCER. HOWEVER, WHETHER DNA METHYLATION IN NORMAL UNRELATED CELLS IS ASSOCIATED WITH BC RISK AND WHETHER THESE IMPRINTS CAN BE RELATED TO FACTORS WHICH CAN BE MODIFIED BY THE ENVIRONMENT, IS UNCLEAR. METHODOLOGY/PRINCIPAL FINDINGS: USING QUANTITATIVE METHYLATION ANALYSIS IN A CASE-CONTROL STUDY (N = 1,083) WE FOUND THAT DNA METHYLATION OF PERIPHERAL BLOOD CELL DNA PROVIDES GOOD PREDICTION OF BC RISK. WE ALSO REPORT THAT INVASIVE DUCTAL AND INVASIVE LOBULAR BC IS CHARACTERIZED BY TWO DIFFERENT SETS OF GENES, THE LATTER PARTICULAR BY GENES INVOLVED IN THE DIFFERENTIATION OF THE MESENCHYME (PITX2, TITF1, GDNF AND MYOD1). FINALLY WE DEMONSTRATE THAT ONLY ERT GENES PREDICT ER POSITIVE BC; LACK OF PERIPHERAL BLOOD CELL DNA METHYLATION OF ZNF217 PREDICTED BC INDEPENDENT OF AGE AND FAMILY HISTORY (ODDS RATIO 1.49; 95% CONFIDENCE INTERVAL 1.12-1.97; P = 0.006) AND WAS ASSOCIATED WITH ER-ALPHA BIOACTIVITY IN THE CORRESPONDING SERUM. CONCLUSION/SIGNIFICANCE: THIS FIRST LARGE-SCALE EPIGENOTYPING STUDY DEMONSTRATES THAT DNA METHYLATION MAY SERVE AS A LINK BETWEEN THE ENVIRONMENT AND THE GENOME. FACTORS THAT CAN BE MODULATED BY THE ENVIRONMENT (LIKE ESTROGENS) LEAVE AN IMPRINT IN THE DNA OF CELLS THAT ARE UNRELATED TO THE TARGET ORGAN AND INDICATE THE PREDISPOSITION TO DEVELOP A CANCER. FURTHER RESEARCH WILL NEED TO DEMONSTRATE WHETHER DNA METHYLATION PROFILES WILL BE ABLE TO SERVE AS A NEW TOOL TO PREDICT THE RISK OF DEVELOPING CHRONIC DISEASES WITH SUFFICIENT ACCURACY TO GUIDE PREVENTIVE MEASURES. 2008 18 6855 30 [NEW APPROACH TO THE INVESTIGATION OF DOHAD USING X-INACTIVATION GENE EXPRESSION SYSTEM]. X-CHROMOSOME INACTIVATION (XCI) OCCURS DURING THE GESTATION PERIOD TO COMPENSATE FOR THE DOSAGE OF X-LINKED GENES IN FEMALE MAMMALS. XIST RNA IS A LONG NONCODING RNA WITH A GLOBAL EPIGENETIC FUNCTION AND IS INDISPENSABLE FOR XCI FROM THE INITIATION TO ESTABLISHMENT AND MAINTENANCE PHASES. THE X CHROMOSOME CONTAINS OVER 1,000 GENES THAT ARE ESSENTIAL FOR PROPER DEVELOPMENT, ESPECIALLY THAT OF THE BRAIN, IMMUNE SYSTEM, METABOLISM AND REPRODUCTIVE FUNCTIONS. WE FOUND THAT EXPOSURE TO BISPHENOL A OR FOLATE DEFICIENCY DURING THE FETAL PERIOD CHANGES THE EXPRESSIONS OF XIST, TSIX (THE ANTISENSE REPRESSOR OF XIST), AND MANY X CHROMOSOME LINKED GENES WIDELY IN NEWBORN MICE. THIS FINDING SUGGESTS THAT THIS X-CHROMOSOME MEDIATED EFFECT IS CONSIDERED ONE OF THE MECHANISMS OF VARIOUS PROBLEMS ENCOUNTERED IN THE FETAL ENVIRONMENT. THE DEVELOPMENTAL ORIGINS OF HEALTH AND DISEASE (DOHAD) HYPOTHESIS STATES THAT NUTRITION AND OTHER ENVIRONMENTAL STIMULI DURING CRITICAL PERIODS AFFECT DEVELOPMENTAL PATHWAYS WITH EPIGENETICS AND INDUCE METABOLISM AND CHRONIC DISEASE SUSCEPTIBILITY. THE XCI PROCESS HAS SOME SIMILARITIES TO THIS HYPOTHESIS AND IT MAY BECOME ONE OF THE APPROACHES TO REVEAL THE DOHAD MECHANISMS. 2018 19 5699 34 SIMULTANEOUS DETECTION OF DNA VARIATION AND METHYLATION AT HLA CLASS II LOCUS AND IMMUNE GENE PROMOTERS USING TARGETED SURESELECT METHYL-SEQUENCING. THE HUMAN LEUKOCYTE ANTIGEN (HLA) LOCUS ASSOCIATES WITH A VARIETY OF COMPLEX DISEASES, PARTICULARLY AUTOIMMUNE AND INFLAMMATORY CONDITIONS. THE HLA-DR15 HAPLOTYPE, FOR EXAMPLE, CONFERS THE MAJOR RISK FOR DEVELOPING MULTIPLE SCLEROSIS IN CAUCASIANS, PINPOINTING AN IMPORTANT ROLE IN THE ETIOLOGY OF THIS CHRONIC INFLAMMATORY DISEASE OF THE CENTRAL NERVOUS SYSTEM. IN ADDITION TO THE PROTEIN-CODING VARIANTS THAT SHAPE THE FUNCTIONAL HLA-ANTIGEN-T CELL INTERACTION, RECENT STUDIES SUGGEST THAT THE LEVELS OF HLA MOLECULE EXPRESSION, THAT ARE EPIGENETICALLY CONTROLLED, ALSO PLAY A ROLE IN DISEASE DEVELOPMENT. HOWEVER, DECIPHERING THE EXACT MOLECULAR MECHANISMS OF THE HLA ASSOCIATION HAS BEEN HAMPERED BY THE TREMENDOUS GENETIC COMPLEXITY OF THE LOCUS AND A LACK OF ROBUST APPROACHES TO INVESTIGATE IT. HERE, WE DEVELOPED A METHOD TO SPECIFICALLY ENRICH THE GENOMIC DNA FROM THE HLA CLASS II LOCUS (CHR6:32,426,802-34,167,129) AND PROXIMAL PROMOTERS OF 2,157 IMMUNE-RELEVANT GENES, UTILIZING THE AGILENT RNA-BASED SURESELECT METHYL-SEQ CAPTURE RELATED METHOD, FOLLOWED BY SEQUENCING TO DETECT GENETIC AND EPIGENETIC VARIATION. WE DEMONSTRATED SUCCESSFUL SIMULTANEOUS DETECTION OF THE GENETIC VARIATION AND QUANTIFICATION OF DNA METHYLATION LEVELS IN HLA LOCUS. MOREOVER, BY THE DETECTION OF DIFFERENTIALLY METHYLATED POSITIONS IN PROMOTERS OF IMMUNE-RELATED GENES, WE IDENTIFIED RELEVANT PATHWAYS FOLLOWING STIMULATION OF CELLS. TAKEN TOGETHER, WE PRESENT A METHOD THAT CAN BE UTILIZED TO STUDY THE INTERPLAY BETWEEN GENETIC VARIANCE AND EPIGENETIC REGULATION IN THE HLA CLASS II REGION, POTENTIALLY, IN A WIDE DISEASE CONTEXT. 2023 20 2142 42 EPIGENETIC INVESTIGATION OF VARIABLY X CHROMOSOME INACTIVATED GENES IN MONOZYGOTIC FEMALE TWINS DISCORDANT FOR PRIMARY BILIARY CIRRHOSIS. PRIMARY BILIARY CIRRHOSIS (PBC) IS AN AUTOIMMUNE CHRONIC CHOLESTATIC LIVER DISEASE WITH A STRONG GENETIC SUSCEPTIBILITY DUE TO THE HIGH CONCORDANCE IN MONOZYGOTIC (MZ) TWINS AND A STRIKING FEMALE PREDOMINANCE. WOMEN WITH PBC MANIFEST AN ENHANCED X MONOSOMY RATE IN PERIPHERAL LYMPHOCYTES AND WE THUS HYPOTHESIZED AN X CHROMOSOME EPIGENETIC COMPONENT TO EXPLAIN PBC FEMALE PREVALENCE. WHILE MOST GENES ON THE FEMALE INACTIVE X CHROMOSOME ARE SILENCED BY PROMOTER METHYLATION FOLLOWING X CHROMOSOME INACTIVATION (XCI), APPROXIMATELY 10% OF X- LINKED GENES EXHIBIT VARIABLE ESCAPE FROM XCI IN HEALTHY FEMALES. THIS STUDY WAS DESIGNED TO TEST THE HYPOTHESIS THAT SUSCEPTIBILITY TO PBC IS MODIFIED BY ONE OR MORE X-LINKED GENE WITH VARIABLE XCI STATUS. PERIPHERAL BLOOD MRNA AND DNA SAMPLES WERE OBTAINED FROM A UNIQUE COHORT OF MZ TWIN SETS DISCORDANT AND CONCORDANT FOR PBC. TRANSCRIPT LEVELS OF THE 125 VARIABLE XCI STATUS GENES WAS DETERMINED BY QUANTITATIVE RT-PCR ANALYSIS AND TWO GENES (CLIC2 AND PIN4) WERE IDENTIFIED AS CONSISTENTLY DOWNREGULATED IN THE AFFECTED TWIN OF DISCORDANT PAIRS. BOTH CLIC2 AND PIN4 DEMONSTRATED PARTIAL AND VARIABLE METHYLATION OF CPG SITES WITHIN 300 BP OF THE TRANSCRIPTION START SITE THAT DID NOT PREDICT THE XCI STATUS. PROMOTER METHYLATION OF CLIC2 MANIFESTED NO SIGNIFICANT DIFFERENCE BETWEEN SAMPLES AND NO SIGNIFICANT CORRELATION WITH TRANSCRIPT LEVELS. PIN4 METHYLATION SHOWED A POSITIVE TREND WITH TRANSCRIPTION IN ALL SAMPLES BUT NO DIFFERENTIAL METHYLATION WAS OBSERVED BETWEEN DISCORDANT TWINS. A GENETIC POLYMORPHISM AFFECTING THE NUMBER OF CPG SITES IN THE PIN4 PROMOTER DID NOT IMPACT METHYLATION OR TRANSCRIPT LEVELS IN A HETEROZYGOUS TWIN PAIR AND SHOWED A SIMILAR FREQUENCY IN INDEPENDENT SERIES OF UNRELATED PBC CASES AND CONTROLS. OUR RESULTS SUGGEST THAT EPIGENETIC FACTORS INFLUENCING PBC ONSET ARE MORE COMPLEX THAN METHYLATION DIFFERENCES AT X-LINKED PROMOTERS AND VARIABLY 3 INACTIVATED X-LINKED GENES MAY BE CHARACTERIZED BY PARTIAL PROMOTER METHYLATION AND BIALLELIC TRANSCRIPTION. 2011