1 4590 101 NANOPORE SEQUENCING IDENTIFIES DIFFERENTIALLY METHYLATED GENES IN THE CENTRAL NERVOUS SYSTEM IN EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS. MULTIPLE SCLEROSIS (MS) IS A CHRONIC AUTOIMMUNE-MEDIATED DEMYELINATING DISEASE OF THE CENTRAL NERVOUS SYSTEM (CNS) THAT MIGHT BE TRIGGERED BY ABERRANT EPIGENETIC CHANGES IN THE GENOME. DNA METHYLATION IS THE MOST STUDIED EPIGENETIC MECHANISM THAT PARTICIPATES IN MS PATHOGENESIS. HOWEVER, THE OVERALL METHYLATION LEVEL IN THE CNS OF MS PATIENTS REMAINS ELUSIVE. WE USED DIRECT LONG-READ NANOPORE DNA SEQUENCING AND CHARACTERIZED THE DIFFERENTIALLY METHYLATED GENES IN THE BRAIN FROM MICE WITH EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS (EAE), AN ANIMAL MODEL OF MS. WE IDENTIFIED 163 HYPOMETHYLATED PROMOTERS AND 327 HYPERMETHYLATED PROMOTERS. THESE GENOMIC ALTERATIONS WERE LINKED TO VARIOUS BIOLOGICAL PROCESSES INCLUDING METABOLISM, IMMUNE RESPONSES, NEURAL ACTIVITIES, AND MITOCHONDRIAL DYNAMICS, ALL OF WHICH ARE VITAL FOR EAE DEVELOPMENT. OUR RESULTS INDICATE A GREAT POTENTIAL OF NANOPORE SEQUENCING IN IDENTIFYING GENOMIC DNA METHYLATION IN EAE AND PROVIDE IMPORTANT GUIDANCE FOR FUTURE STUDIES INVESTIGATING THE MS/EAE PATHOLOGY. 2023 2 1611 39 DNA METHYLATION: A NEW PLAYER IN MULTIPLE SCLEROSIS. MULTIPLE SCLEROSIS (MS) IS A NEUROLOGICAL AND CHRONIC INFLAMMATORY DISEASE THAT IS MEDIATED BY DEMYELINATION AND AXONAL DEGENERATION IN THE CENTRAL NERVOUS SYSTEM (CNS). STUDIES HAVE SHOWN THAT IMMUNE SYSTEM COMPONENTS SUCH AS CD4+, CD8+, CD44+ T CELLS, B LYMPHATIC CELLS, AND INFLAMMATORY CYTOKINES PLAY A CRITICAL ROLE IN INFLAMMATORY PROCESSES AND MYELIN DAMAGE ASSOCIATED WITH MS. NEVERTHELESS, THE PATHOGENESIS OF MS REMAINS POORLY DEFINED. DNA METHYLATION, A SIGNIFICANT EPIGENETIC MODIFICATION, IS REPORTED TO BE EXTENSIVELY INVOLVED IN MS PATHOGENESIS THROUGH THE REGULATION OF GENE EXPRESSION. THIS REVIEW FOCUSES ON DNA METHYLATION INVOLVED IN MS PATHOGENESIS. EVIDENCE SHOWED THE HYPERMETHYLATION OF HUMAN LEUKOCYTE ANTIGEN-DRB1 (HLA-DRB1) IN CD4+ T CELLS, THE GENOME-WIDE DNA METHYLATION IN CD8+ T CELLS, THE HYPERMETHYLATION OF INTERLEUKIN-4 (IL-4)/FORKHEAD WINGED HELIX TRANSCRIPTION FACTOR 3 (FOXP3), AND THE DEMETHYLATION OF INTERFERON-GAMMA (IFN-GAMMA)/IL-17A IN CD44+ ENCEPHALITOGENIC T CELLS. STUDIES ALSO SHOWED THE HYPERMETHYLATION OF SH2-CONTAINING PROTEIN TYROSINE PHOSPHATASE-1 (SHP-1) IN PERIPHERAL BLOOD MONONUCLEAR CELLS (PBMCS) AND METHYLATED CHANGES OF GENES REGULATING OLIGODENDROCYTE AND NEURONAL FUNCTION IN NORMAL-APPEARING WHITE MATTER. CLARIFYING THE MECHANISM OF ABERRANT METHYLATION ON MS MAY EXPLAIN PART OF THE PATHOLOGY AND WILL LEAD TO THE DEVELOPMENT OF A NEW THERAPEUTIC TARGET FOR THE TREATMENT OF MS IN THE FUTURE. 2017 3 2139 46 EPIGENETIC INSIGHTS INTO MULTIPLE SCLEROSIS DISEASE PROGRESSION. MULTIPLE SCLEROSIS (MS), A CHRONIC INFLAMMATORY DEMYELINATING AND NEURODEGENERATIVE DISEASE OF THE CENTRAL NERVOUS SYSTEM, IS TODAY A LEADING CAUSE OF UNPREDICTABLE LIFELONG DISABILITY IN YOUNG ADULTS. THE TREATMENT OF PATIENTS IN PROGRESSIVE STAGES REMAINS HIGHLY CHALLENGING, ALLUDING TO OUR LIMITED UNDERSTANDING OF THE UNDERLYING PATHOLOGICAL PROCESSES. IN THIS REVIEW, WE PROVIDE INSIGHTS INTO THE MECHANISMS UNDERPINNING MS PROGRESSION FROM A PERSPECTIVE OF EPIGENETICS, THAT REFERS TO STABLE AND MITOTICALLY HERITABLE, YET REVERSIBLE, CHANGES IN THE GENOME ACTIVITY AND GENE EXPRESSION. WE FIRST RECAPITULATE FINDINGS FROM EPIGENETIC STUDIES EXAMINING THE BRAIN TISSUE OF PROGRESSIVE MS PATIENTS, WHICH SUPPORT A CONTRIBUTION OF DNA AND HISTONE MODIFICATIONS IN IMPAIRED OLIGODENDROCYTE DIFFERENTIATION, DEFECTIVE MYELINATION/REMYELINATION AND SUSTAINED NEURO-AXONAL VULNERABILITY. WE NEXT EXPLORE POSSIBILITIES FOR IDENTIFYING FACTORS AFFECTING PROGRESSION USING EASILY ACCESSIBLE TISSUES SUCH AS BLOOD BY COMPARING EPIGENETIC SIGNATURES IN PERIPHERAL IMMUNE CELLS AND BRAIN TISSUE. DESPITE MINOR OVERLAP AT INDIVIDUAL METHYLATION SITES, NEARLY 30% OF ALTERED GENES REPORTED IN PERIPHERAL IMMUNE CELLS OF PROGRESSIVE MS PATIENTS WERE FOUND IN BRAIN TISSUE, JOINTLY CONVERGING ON ALTERATIONS OF NEURONAL FUNCTIONS. WE FURTHER SPECULATE ABOUT THE MECHANISMS UNDERLYING SHARED EPIGENETIC PATTERNS BETWEEN BLOOD AND BRAIN, WHICH LIKELY IMPLY THE INFLUENCE OF INTERNAL (GENETIC CONTROL) AND/OR EXTERNAL (E.G. SMOKING AND AGEING) FACTORS IMPRINTING A COMMON SIGNATURE IN BOTH COMPARTMENTS. OVERALL, WE PROPOSE THAT EPIGENETICS MIGHT SHED LIGHT ON CLINICALLY RELEVANT MECHANISMS INVOLVED IN DISEASE PROGRESSION AND OPEN NEW AVENUES FOR THE TREATMENT OF PROGRESSIVE MS PATIENTS IN THE FUTURE. 2020 4 1518 37 DNA METHYLATION AS AN EPIGENETIC MECHANISM IN THE DEVELOPMENT OF MULTIPLE SCLEROSIS. THE EPIGENETIC MECHANISMS OF GENE EXPRESSION REGULATION ARE A GROUP OF THE KEY CELLULAR AND MOLECULAR PATHWAYS THAT LEAD TO INHERITED ALTERATIONS IN GENES' ACTIVITY WITHOUT CHANGING THEIR CODING SEQUENCE. DNA METHYLATION AT THE C5 POSITION OF CYTOSINE IN CPG DINUCLEOTIDES IS AMONGST THE CENTRAL EPIGENETIC MECHANISMS. CURRENTLY, THE NUMBER OF STUDIES THAT ARE DEVOTED TO THE IDENTIFICATION OF METHYLATION PATTERNS SPECIFIC TO MULTIPLE SCLEROSIS (MS), A SEVERE CHRONIC AUTOIMMUNE DISEASE OF THE CENTRAL NERVOUS SYSTEM, IS ON A RAPID RISE. HOWEVER, THE ISSUE OF THE CONTRIBUTION OF DNA METHYLATION TO THE DEVELOPMENT OF THE DIFFERENT CLINICAL PHENOTYPES OF THIS HIGHLY HETEROGENEOUS DISEASE HAS ONLY BEGUN TO ATTRACT THE ATTENTION OF RESEARCHERS. THIS REVIEW SUMMARIZES THE DATA ON THE MOLECULAR MECHANISMS UNDERLYING DNA METHYLATION AND THE MS RISK FACTORS THAT CAN AFFECT THE DNA METHYLATION PROFILE AND, THEREBY, MODULATE THE EXPRESSION OF THE GENES INVOLVED IN THE DISEASE'S PATHOGENESIS. THE FOCUS OF OUR ATTENTION IS CENTERED ON THE ANALYSIS OF THE PUBLISHED DATA ON THE DIFFERENTIAL METHYLATION OF DNA FROM VARIOUS BIOLOGICAL SAMPLES OF MS PATIENTS OBTAINED USING BOTH THE CANDIDATE GENE APPROACH AND HIGH-THROUGHPUT METHODS. 2021 5 6136 43 THE EPIGENETICS OF MULTIPLE SCLEROSIS AND OTHER RELATED DISORDERS. MULTIPLE SCLEROSIS (MS) IS A DEMYELINATING DISEASE CHARACTERIZED BY CHRONIC INFLAMMATION OF THE CENTRAL NERVOUS SYSTEM (CNS) GRAY AND WHITE MATTER. ALTHOUGH THE CAUSE OF MS IS UNKNOWN, IT IS WIDELY APPRECIATED THAT INNATE AND ADAPTIVE IMMUNE PROCESSES CONTRIBUTE TO ITS PATHOGENESIS. THESE INCLUDE MICROGLIA/MACROPHAGE ACTIVATION, PRO-INFLAMMATORY T-CELL (TH1) RESPONSES AND HUMORAL RESPONSES. ADDITIONALLY, THERE IS EVIDENCE INDICATING THAT MS HAS A NEURODEGENERATIVE COMPONENT SINCE NEURONAL AND AXONAL LOSS OCCURS EVEN IN THE ABSENCE OF OVERT INFLAMMATION. THESE ASPECTS ALSO FORM THE RATIONALE FOR CLINICAL MANAGEMENT OF THE DISEASE. HOWEVER, THE CURRENTLY AVAILABLE THERAPIES TO CONTROL THE DISEASE ARE ONLY PARTIALLY EFFECTIVE AT BEST INDICATING THAT MORE EFFECTIVE THERAPEUTIC SOLUTIONS ARE URGENTLY NEEDED. IT IS APPRECIATED THAT IN THE IMMUNE-DRIVEN AND NEURODEGENERATIVE PROCESSES MS-SPECIFIC DEREGULATION OF GENE EXPRESSIONS AND RESULTING PROTEIN DYSFUNCTION ARE THOUGHT TO PLAY A CENTRAL ROLE. THESE DEVIATIONS IN GENE EXPRESSION PATTERNS CONTRIBUTE TO THE INFLAMMATORY RESPONSE IN THE CNS, AND TO NEURONAL OR AXONAL LOSS. EPIGENETIC MECHANISMS CONTROL TRANSCRIPTION OF MOST, IF NOT ALL GENES, IN NUCLEATED CELLS INCLUDING CELLS OF THE CNS AND IN HAEMATOPOIETIC CELLS. MS-SPECIFIC ALTERATIONS IN EPIGENETIC REGULATION OF GENE EXPRESSION MAY THEREFORE LIE AT THE HEART OF THE DEREGULATION OF GENE EXPRESSION IN MS. AS SUCH, EPIGENETIC MECHANISMS MOST LIKELY PLAY AN IMPORTANT ROLE IN DISEASE PATHOGENESIS. IN THIS REVIEW WE DISCUSS A ROLE FOR MS-SPECIFIC DEREGULATION OF EPIGENETIC FEATURES THAT CONTROL GENE EXPRESSION IN THE CNS AND IN THE PERIPHERY. FURTHERMORE, WE DISCUSS THE APPLICATION OF SMALL MOLECULE INHIBITORS THAT TARGET THE EPIGENETIC MACHINERY TO AMELIORATE DISEASE IN EXPERIMENTAL ANIMAL MODELS, INDICATING THAT SUCH APPROACHES MAY BE APPLICABLE TO MS PATIENTS. 2014 6 3069 44 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 7 1508 39 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 8 1526 44 DNA METHYLATION CHANGES IN GLIAL CELLS OF THE NORMAL-APPEARING WHITE MATTER IN MULTIPLE SCLEROSIS PATIENTS. MULTIPLE SCLEROSIS (MS), THE LEADING CAUSE OF NON-TRAUMATIC NEUROLOGICAL DISABILITY IN YOUNG ADULTS, IS A CHRONIC INFLAMMATORY AND NEURODEGENERATIVE DISEASE OF THE CENTRAL NERVOUS SYSTEM (CNS). DUE TO THE POOR ACCESSIBILITY TO THE TARGET ORGAN, CNS-CONFINED PROCESSES UNDERPINNING THE LATER PROGRESSIVE FORM OF MS REMAIN ELUSIVE THEREBY LIMITING TREATMENT OPTIONS. WE AIMED TO EXAMINE DNA METHYLATION, A STABLE EPIGENETIC MARK OF GENOME ACTIVITY, IN GLIAL CELLS TO CAPTURE RELEVANT MOLECULAR CHANGES UNDERLYING MS NEUROPATHOLOGY. WE PROFILED DNA METHYLATION IN NUCLEI OF NON-NEURONAL CELLS, ISOLATED FROM 38 POST-MORTEM NORMAL-APPEARING WHITE MATTER (NAWM) SPECIMENS OF MS PATIENTS (N = 8) IN COMPARISON TO WHITE MATTER OF CONTROL INDIVIDUALS (N = 14), USING INFINIUM METHYLATIONEPIC BEADCHIP. WE IDENTIFIED 1,226 SIGNIFICANT (GENOME-WIDE ADJUSTED P-VALUE < 0.05) DIFFERENTIALLY METHYLATED POSITIONS (DMPS) BETWEEN MS PATIENTS AND CONTROLS. FUNCTIONAL ANNOTATION OF THE ALTERED DMP-GENES UNCOVERED ALTERATIONS OF PROCESSES RELATED TO CELLULAR MOTILITY, CYTOSKELETON DYNAMICS, METABOLIC PROCESSES, SYNAPTIC SUPPORT, NEUROINFLAMMATION AND SIGNALING, SUCH AS WNT AND TGF-BETA PATHWAYS. A FRACTION OF THE AFFECTED GENES DISPLAYED TRANSCRIPTIONAL DIFFERENCES IN THE BRAIN OF MS PATIENTS, AS REPORTED BY PUBLICALLY AVAILABLE TRANSCRIPTOMIC DATA. CELL TYPE-RESTRICTED ANNOTATION OF DMP-GENES ATTRIBUTED ALTERATIONS OF CYTOSKELETON REARRANGEMENT AND EXTRACELLULAR MATRIX REMODELLING TO ALL GLIAL CELL TYPES, WHILE SOME PROCESSES, INCLUDING ION TRANSPORT, WNT/TGF-BETA SIGNALING AND IMMUNE PROCESSES WERE MORE SPECIFICALLY LINKED TO OLIGODENDROCYTES, ASTROCYTES AND MICROGLIAL CELLS, RESPECTIVELY. OUR FINDINGS STRONGLY SUGGEST THAT NAWM GLIAL CELLS ARE HIGHLY ALTERED, EVEN IN THE ABSENCE OF LESIONAL INSULT, COLLECTIVELY EXHIBITING A MULTICELLULAR REACTION IN RESPONSE TO DIFFUSE INFLAMMATION. 2022 9 4921 38 PARENT-OF-ORIGIN EFFECTS IMPLICATE EPIGENETIC REGULATION OF EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS AND IDENTIFY IMPRINTED DLK1 AS A NOVEL RISK GENE. PARENT-OF-ORIGIN EFFECTS COMPRISE A RANGE OF GENETIC AND EPIGENETIC MECHANISMS OF INHERITANCE. RECENTLY, DETECTION OF SUCH EFFECTS IMPLICATED EPIGENETIC MECHANISMS IN THE ETIOLOGY OF MULTIPLE SCLEROSIS (MS), A CHRONIC INFLAMMATORY DISEASE OF THE CENTRAL NERVOUS SYSTEM. WE HERE SOUGHT TO DISSECT THE MAGNITUDE AND THE TYPE OF PARENT-OF-ORIGIN EFFECTS IN THE PATHOGENESIS OF EXPERIMENTAL NEUROINFLAMMATION UNDER CONTROLLED ENVIRONMENTAL CONDITIONS. WE INVESTIGATED INHERITANCE OF AN MS-LIKE DISEASE IN RAT, EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS (EAE), USING A BACKCROSS STRATEGY DESIGNED TO IDENTIFY THE PARENTAL ORIGIN OF DISEASE-PREDISPOSING ALLELES. A STRIKING 37-54% OF ALL DETECTED DISEASE-PREDISPOSING LOCI DEPENDED ON PARENTAL TRANSMISSION. ADDITIONALLY, THE Y CHROMOSOME FROM THE SUSCEPTIBLE STRAIN CONTRIBUTED TO DISEASE SUSCEPTIBILITY. ACCOUNTING FOR PARENT-OF-ORIGIN ENABLED MORE POWERFUL AND PRECISE IDENTIFICATION OF NOVEL RISK FACTORS AND INCREASED THE DISEASE VARIANCE EXPLAINED BY THE IDENTIFIED FACTORS BY 2-4-FOLD. THE MAJORITY OF LOCI DISPLAYED AN IMPRINTING-LIKE PATTERN WHEREBY A GENE EXPRESSED ONLY FROM THE MATERNAL OR PATERNAL COPY EXERTS AN EFFECT. IN PARTICULAR, A LOCUS ON CHROMOSOME 6 COMPRISES A WELL-KNOWN CLUSTER OF IMPRINTED GENES INCLUDING THE PATERNALLY EXPRESSED DLK1, AN ATYPICAL NOTCH LIGAND. DISEASE-PREDISPOSING ALLELES AT THE LOCUS CONFERRED LOWER DLK1 EXPRESSION IN RATS AND, TOGETHER WITH DATA FROM TRANSGENIC OVEREXPRESSING DLK1 MICE, DEMONSTRATE THAT REDUCED DLK1 DRIVES MORE SEVERE DISEASE AND MODULATES ADAPTIVE IMMUNE REACTIONS IN EAE. OUR FINDINGS SUGGEST A SIGNIFICANT EPIGENETIC CONTRIBUTION TO THE ETIOLOGY OF EAE. INCORPORATING THESE EFFECTS ENABLES MORE POWERFUL AND PRECISE IDENTIFICATION OF NOVEL RISK FACTORS WITH DIAGNOSTIC AND PROGNOSTIC IMPLICATIONS FOR COMPLEX DISEASE. 2014 10 950 29 CHRONIC MILD STRESS EXACERBATES SEVERITY OF EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS IN ASSOCIATION WITH ALTERED NON-CODING RNA AND METABOLIC BIOMARKERS. THE CAUSAL FACTORS DETERMINING THE ONSET AND SEVERITY OF MULTIPLE SCLEROSIS (MS) ARE NOT WELL UNDERSTOOD. HERE, WE INVESTIGATED THE INFLUENCE OF CHRONIC STRESS ON CLINICAL SYMPTOMS, METABOLIC AND EPIGENETIC MANIFESTATIONS OF EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS (EAE), A COMMON ANIMAL MODEL OF MS. LEWIS RATS WERE IMMUNIZED FOR MONOPHASIC EAE WITH MBP(69-88) AND WERE EXPOSED TO CHRONIC STRESS FOR 37DAYS STARTING 7DAYS PRIOR TO IMMUNIZATION. THE EXPOSURE TO STRESS ACCELERATED AND EXACERBATED THE CLINICAL SYMPTOMS OF EAE. BOTH STRESS AND EAE ALSO DISRUPTED METABOLIC STATUS AS INDICATED BY TRACE ELEMENTAL ANALYSIS IN BODY HAIR. STRESS PARTICULARLY EXACERBATED CHLORINE DEPOSITION IN EAE ANIMALS. MOREOVER, DEEP SEQUENCING REVEALED A CONSIDERABLE IMPACT OF STRESS ON MICRORNA EXPRESSION IN EAE. EAE BY ITSELF UPREGULATED MICRORNA EXPRESSION IN LUMBAR SPINAL CORD, INCLUDING MIR-21, MIR-142-3P, MIR-142-5P, MIR-146A, AND MIR-155. STRESS IN EAE FURTHER UP-REGULATED MIR-16, MIR-146A AND MIR-155 LEVELS. THE LATTER TWO MICRORNAS ARE RECOGNIZED BIOMARKERS OF HUMAN MS. THUS, STRESS MAY SYNERGISTICALLY EXACERBATE SEVERITY OF EAE BY ALTERING EPIGENETIC REGULATORY PATHWAYS. THE FINDINGS SUGGEST THAT STRESS MAY REPRESENT A SIGNIFICANT RISK FACTOR FOR SYMPTOMATIC DETERIORATION IN MS. STRESS-RELATED METABOLIC AND MICRORNA SIGNATURES SUPPORT THEIR VALUE AS BIOMARKERS FOR PREDICTING THE RISK AND SEVERITY OF MS. 2017 11 4439 31 MOLECULAR GENETIC AND EPIGENETIC BASIS OF MULTIPLE SCLEROSIS. MULTIPLE SCLEROSIS (MS) IS A CHRONIC IMMUNE-MEDIATED DISEASE OF SPINAL CORD AND BRAIN. THE INITIAL EVENT IN MS OCCURS WHEN ACTIVATED CD4(+) T CELLS IN PERIPHERY EXACERBATES IMMUNE RESPONSES BY STIMULATING IMMUNE CELLS SUCH AS B CELLS, CD8(+) CELLS, MAST CELLS, GRANULOCYTES AND MONOCYTES. THESE PROINFLAMMATORY CELLS PASS BLOOD BRAIN BARRIER BY SECRETING PROINFLAMMATORY CYTOKINES INCLUDING TNF-ALPHA AND INF-(GAMMA) WHICH ACTIVATE ADHESION FACTORS. APCS (ANTIGEN-PRESENTING CELLS) REACTIVATE CD4(+) T CELLS AFTER INFILTRATING THE CNS AND CD4(+) T CELLS PRODUCE CYTOKINES AND CHEMOKINES. THESE PROINFLAMMATORY CYTOKINES AGGRAVATE INFLAMMATION BY INDUCING MYELIN PHAGOCYTOSIS THROUGH MICROGLIA AND ASTROCYTES ACTIVATION. MS IS BELIEVED TO HAVE A MULTIFACTORIAL ORIGIN THAT INCLUDES A COMBINATION OF MULTIPLE GENETIC, ENVIRONMENTAL AND STOCHASTIC FACTORS. ALTHOUGH THE EXACT COMPONENT OF MS RISKS THAT CAN BE EXPLAINED BY THESE FACTORS IS DIFFICULT TO DETERMINE, ESTIMATES BASED ON GENETIC AND EPIDEMIOLOGICAL STUDIES SUGGEST THAT UP TO 60-70 % OF THE TOTAL RISK OF MS MAY BE CONTRIBUTE TO GENETIC FACTORS. IN CONTINUE, FIRSTLY WE PROVIDE AN OVERVIEW OF THE CURRENT UNDERSTANDING OF EPIGENETIC MECHANISMS, AND SO PRESENT EVIDENCE OF HOW THE EPIGENETIC MODIFICATIONS CONTRIBUTE TO INCREASED SUSCEPTIBILITY OF MS. WE ALSO EXPLAIN HOW SPECIFIED EPIGENETIC MODIFICATIONS MAY INFLUENCE THE PATHOPHYSIOLOGY AND KEY ASPECTS OF DISEASE IN MS (DEMYELINATION, REMYELINATION, INFLAMMATION, AND NEURODEGENERATION). FINALLY, WE TEND TO DISCUSS HOW ENVIRONMENTAL FACTORS AND EPIGENETIC MECHANISMS MAY INTERACT TO HAVE AN EFFECT ON MS RISK AND CLINICAL OUTCOME AND RECOMMEND NEW THERAPEUTIC INTERVENTIONS THAT MIGHT MODULATE PATIENTS' EPIGENETIC PROFILES. 2017 12 2909 36 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 13 810 41 CHANGES IN DNA METHYLATION IN APOE AND ACKR3 GENES IN MULTIPLE SCLEROSIS PATIENTS AND THE RELATIONSHIP WITH THEIR HEAVY METAL BLOOD LEVELS. MULTIPLE SCLEROSIS (MS) IS A CHRONIC INFLAMMATORY DISEASE WITH DEMYELINATED LESIONS IN THE CENTRAL NERVOUS SYSTEM CAUSED BY GENETIC AND ENVIRONMENTAL FACTORS. DNA METHYLATION AS AN EPIGENETIC CHANGE INFLUENCED BY ENVIRONMENTAL FACTORS, INCLUDING HEAVY METALS HAS BEEN IMPLEMENTED IN MS DISEASE. WE INVESTIGATED THE CORRELATION OF DNA METHYLATION CHANGES IN APOE AND ACKR3 GENES IN MS PATIENTS AND THE POSSIBLE ASSOCIATION WITH BLOOD CONCENTRATION OF ARSENIC (AS), CADMIUM (CD) AND LEAD (PB) AS MAJOR HEAVY METAL POLLUTANTS. THIS STUDY INCLUDED 69 RELAPSING-REMITTING MULTIPLE SCLEROSIS (RR-MS) PATIENTS AND 69 AGE/GENDER-MATCHED HEALTHY SUBJECTS. THE HRM REAL-TIME PCR METHOD WAS USED TO INVESTIGATE THE CHANGES IN DNA METHYLATION AND HEAVY METAL CONCENTRATIONS WERE MEASURED BY ELECTROTHERMAL ATOMIC ABSORPTION SPECTROMETRY. OUR RESULTS SHOWED THAT THE METHYLATION PATTERN IN THE ACKR3 GENE OF THE PATIENT GROUP WAS MORE HYPOMETHYLATED, WHILE IN THE CASE OF THE APOE GENE, THIS PATTERN WAS MORE TOWARDS HYPERMETHYLATION COMPARED TO HEALTHY SUBJECTS. MOREOVER, THE BLOOD LEVELS OF AS AND CD METALS, BUT NOT PB, WERE SIGNIFICANTLY HIGHER IN THE PATIENT GROUP COMPARE TO THE CONTROL GROUP (P