1 814 143 CHANGES IN SMALL NONCODING RNA EXPRESSION DURING CHONDROCYTE SENESCENCE. OBJECTIVE: OSTEOARTHRITIS (OA) IS CHARACTERIZED BY THE CHRONIC AND PROGRESSIVE DETERIORATION OF ARTICULAR CARTILAGE. CHONDROCYTE SENESCENCE COULD LEAD TO A SHIFT IN THE BALANCE BETWEEN EXTRACELLULAR MATRIX (ECM) COMPONENT SYNTHESIS AND DEGRADATION. SMALL NONCODING RNAS (SNCRNAS), INCLUDING MICRORNAS (MIRNAS), P-ELEMENT-INDUCED WIMPY TESTIS-(PIWI-) INTERACTING RNAS (PIRNAS), SMALL NUCLEOLAR RNAS (SNORNAS), SMALL NUCLEAR RNAS (SNRNAS), AND REPEAT-ASSOCIATED SIRNAS (RASIRNAS), ARE A CLASS OF IMPORTANT EPIGENETIC MOLECULES. WE AIMED TO GAIN INSIGHTS INTO THE CHANGES AND ROLES OF SNCRNA IN CHONDROCYTE SENESCENCE. DESIGN: HEALTHY MOUSE POSTNATAL CHONDROCYTES WERE ISOLATED, AND A REPLICATIVE AGING MODEL WAS CONSTRUCTED. WE USED SMALL RNA SEQUENCING (SMALL RNA-SEQ) TO GENERATE EXTENSIVE SMALL RNA DATA. WE IDENTIFIED DIFFERENTIALLY EXPRESSED SNCRNAS AND PERFORMED TISSUE-SPECIFIC ANALYSIS USING REAL-TIME QUANTITATIVE POLYMERASE CHAIN REACTION (QRT-PCR). BETA-GALACTOSIDASE STAINING WAS USED TO DETECT CHONDROCYTE SENESCENCE. THE RESULTS SHOWED THAT THE EXPRESSION PROFILES OF SNCRNA IN PASSAGE 5 CHONDROCYTES WERE SIGNIFICANTLY DIFFERENT FROM THOSE IN PASSAGE 0 CHONDROCYTES. THE EXPRESSION OF SNCRNA WAS TISSUE SPECIFIC. WE FOUND THAT 40 MIRNAS WERE UPREGULATED AND 70 MIRNAS WERE DOWNREGULATED DURING CHONDROCYTE SENESCENCE, AND THAT MIR-132-5P EXPRESSION INHIBITION PREVENTED CHONDROCYTE SENESCENCE. WE FOUND THAT 8 PIRNAS WERE UPREGULATED AND 17 PIRNAS WERE DOWNREGULATED DURING CHONDROCYTE SENESCENCE, AND THAT PIRNA PIR_025576 OVEREXPRESSION DELAYED CHONDROCYTE SENESCENCE. WE FOUND THAT 24 SNORNAS WERE UPREGULATED AND 28 SNORNAS WERE DOWNREGULATED DURING CHONDROCYTE SENESCENCE, AND THAT SNORNA ENSMUSG00000087935 OVEREXPRESSION DELAYED CHONDROCYTE SENESCENCE. WE FOUND THAT 5 SNRNAS WERE UPREGULATED AND 6 SNRNAS WERE DOWNREGULATED DURING CHONDROCYTE SENESCENCE, AND THAT SNRNA ENSMUSG00000064682 OVEREXPRESSION DELAYED CHONDROCYTE SENESCENCE. WE FOUND THAT 1 RASIRNA WAS UPREGULATED AND 4 RASIRNAS WERE DOWNREGULATED DURING CHONDROCYTE SENESCENCE. CONCLUSIONS: THESE FINDINGS MIGHT PROVIDE NOVEL INSIGHTS INTO OA PATHOGENESIS AND CONTRIBUTE TO THE DEVELOPMENT OF CANDIDATES FOR TARGETED THERAPEUTICS IN OA. 2022 2 5796 34 STAT3 PROMOTES A YOUTHFUL EPIGENETIC STATE IN ARTICULAR CHONDROCYTES. EPIGENETIC MECHANISMS GUIDING ARTICULAR CARTILAGE REGENERATION AND AGE-RELATED DISEASE SUCH AS OSTEOARTHRITIS (OA) ARE POORLY UNDERSTOOD. STAT3 IS A CRITICAL AGE-PATTERNED TRANSCRIPTION FACTOR HIGHLY ACTIVE IN FETAL AND OA CHONDROCYTES, BUT THE CONTEXT-SPECIFIC ROLE OF STAT3 IN REGULATING THE EPIGENOME OF CARTILAGE CELLS REMAIN ELUSIVE. IN THIS STUDY, DNA METHYLATION PROFILING WAS PERFORMED ACROSS HUMAN CHONDROCYTE ONTOGENY TO BUILD AN EPIGENETIC CLOCK AND ESTABLISH AN ASSOCIATION BETWEEN CPG METHYLATION AND HUMAN CHONDROCYTE AGE. EXPOSURE OF ADULT CHONDROCYTES TO A SMALL MOLECULE STAT3 AGONIST DECREASED DNA METHYLATION, WHILE GENETIC ABLATION OF STAT3 IN FETAL CHONDROCYTES INDUCED GLOBAL HYPERMETHYLATION. CUT&RUN ASSAY AND SUBSEQUENT TRANSCRIPTIONAL VALIDATION REVEALED DNA METHYLTRANSFERASE 3 BETA (DNMT3B) AS ONE OF THE PUTATIVE STAT3 TARGETS IN CHONDROCYTE DEVELOPMENT AND OA. FUNCTIONAL ASSESSMENT OF HUMAN OA CHONDROCYTES SHOWED THE ACQUISITION OF PROGENITOR-LIKE IMMATURE PHENOTYPE BY A SIGNIFICANT SUBSET OF CELLS. FINALLY, CONDITIONAL DELETION OF STAT3 IN CARTILAGE CELLS INCREASED DNMT3B EXPRESSION IN ARTICULAR CHONDROCYTES IN THE KNEE JOINT IN VIVO AND RESULTED IN A MORE PROMINENT OA PROGRESSION IN A POST-TRAUMATIC OA (PTOA) MOUSE MODEL INDUCED BY DESTABILIZATION OF THE MEDIAL MENISCUS (DMM). TAKEN TOGETHER THESE DATA REVEAL A NOVEL ROLE FOR STAT3 IN REGULATING DNA METHYLATION IN CARTILAGE DEVELOPMENT AND DISEASE. OUR FINDINGS ALSO SUGGEST THAT ELEVATED LEVELS OF ACTIVE STAT3 IN OA CHONDROCYTES MAY INDICATE AN INTRINSIC ATTEMPT OF THE TISSUE TO REGENERATE BY PROMOTING A PROGENITOR-LIKE PHENOTYPE. HOWEVER, IT IS LIKELY THAT CHRONIC ACTIVATION OF THIS PATHWAY, INDUCED BY IL-6 CYTOKINES, IS DETRIMENTAL AND LEADS TO TISSUE DEGENERATION. 2023 3 148 40 ABERRANT FLUID SHEAR STRESS CONTRIBUTES TO ARTICULAR CARTILAGE PATHOGENESIS VIA EPIGENETIC REGULATION OF ZBTB20 BY H3K4ME3. PURPOSE: OSTEOARTHRITIS (OA) IS A COMMON DISEASE FOR HUMAN BEINGS, CHARACTERIZED BY SEVERE INFLAMMATION, CARTILAGE DEGRADATION, AND SUBCHONDRAL BONE DESTRUCTION. HOWEVER, CURRENT THERAPIES ARE LIMITED TO RELIEVING PAIN OR JOINT REPLACEMENT AND NO EFFECTIVE TREATMENT METHODS HAVE BEEN DISCOVERED TO IMPROVE DEGENERATIVE CHANGES. CURRENTLY, A VARIETY OF EVIDENCES HAVE INDICATED THAT ABERRANT MECHANICAL STIMULI IS CLOSELY ASSOCIATED WITH ARTICULAR JOINT PATHOGENESIS, WHILE THE DETAILED UNDERLYING MECHANISM REMAINS UNELUCIDATED. IN THE PRESENT STUDY, WE DETERMINED TO INVESTIGATE THE IMPACT OF EXCESSIVE HIGH FLUID SHEAR STRESS (FSS) ON PRIMARY CHONDROCYTES AND THE UNDERLYING EPIGENETIC MECHANISMS. MATERIALS AND METHODS: PHALLOIDIN STAINING AND EDU STAINING WERE USED TO EVALUATE CELL MORPHOLOGY AND VIABILITY. THE MRNA LEVEL AND PROTEIN LEVEL OF GENES WERE DETERMINED BY QPCR, WESTERN BLOT ASSAY, AND IMMUNOFLUORESCENCE STAINING. MECHANISTIC INVESTIGATION WAS PERFORMED THROUGH RNA-SEQUENCING AND CUT&TAG SEQUENCING. IN VIVO, WE ADOPTED UNILATERAL ANTERIOR CROSSBITES (UAC) MICE MODEL TO INVESTIGATE THE EXPRESSION OF H3K4ME3 AND ZBTB20 IN ABERRANT FORCE-RELATED CARTILAGE PATHOGENESIS. RESULTS: THE RESULTS DEMONSTRATED THAT FSS GREATLY DISRUPTS CELL MORPHOLOGY AND SIGNIFICANTLY DECREASED CHONDROCYTE VIABILITY. ABERRANT FSS INDUCES REMARKABLE INFLAMMATORY MEDIATORS PRODUCTION, LEADING TO CARTILAGE DEGENERATION AND DEGRADATION. IN DEPTH MECHANISTIC STUDY SHOWED THAT FSS RESULTS IN MORE THAN 10-FOLD UPREGULATION OF H3K4ME3, AND THE MODULATORY EFFECT OF H3K4ME3 ON CARTILAGE WAS OBTAINED BY DIRECTLY TARGETING ZBTB20. FURTHERMORE, WNT SIGNALING WAS STRONGLY ACTIVATED IN HIGH FSS-INDUCED OA PATHOGENESIS, AND THE NEGATIVE IMPACT OF ZBTB20 ON CHONDROCYTES WAS ALSO ACHIEVED THROUGH ACTIVATING WNT SIGNALING PATHWAY. MOREOVER, PHARMACOLOGICAL INHIBITION OF H3K4ME3 ACTIVATION BY MM-102 OR TREATMENT WITH WNT PATHWAY INHIBITOR LF3 COULD EFFECTIVELY ALLEVIATE THE DESTRUCTIVE EFFECT OF FSS ON CHONDROCYTES. IN VIVO UAC MICE MODEL VALIDATED THE DYSREGULATION OF H3K4ME3 AND ZBTB20 IN ABERRANT FORCE-INDUCED CARTILAGE PATHOGENESIS. CONCLUSION: THROUGH THE COMBINATION OF IN VITRO FSS MODEL AND IN VIVO UAC MODEL, KMT2B-H3K4ME3-ZBTB20 AXIS WAS FIRST IDENTIFIED IN ABERRANT FSS-INDUCED CARTILAGE PATHOGENESIS, WHICH MAY PROVIDE EVIDENCES FOR EPIGENETIC-BASED THERAPY IN THE FUTURE. 2021 4 2331 37 EPIGENETIC REGULATION OF INFLAMMATION BY MICRORNAS IN POST-INFECTIOUS BRONCHIOLITIS OBLITERANS. OBJECTIVES: POST-INFECTIOUS BRONCHIOLITIS OBLITERANS (PIBO) IS A RARE, CHRONIC DISEASE INITIATED BY SEVERE INFECTION AND FOLLOWED BY PERPETUATING INFLAMMATION AND OBLITERATION OF THE SMALL AIRWAYS. MICRORNAS (MIRNAS) HAVE BEEN PROPOSED TO PLAY A CENTRAL ROLE AS EPIGENETIC REGULATORS, WHICH CONTROL RESOLUTION AND PREVENT THE UNCONTROLLED PROGRESS OF INFLAMMATION. THE AIM OF THIS STUDY WAS TO DEFINE BIOMARKERS ON THE LEVEL OF POST-TRANSCRIPTIONAL GENE REGULATION IN ORDER TO CHARACTERISE PIBO. METHODS: A TOTAL OF 39 PATIENTS WITH WELL-DEFINED PIBO AND 31 CONTROLS FROM TWO CENTRES, BARCELONA, SPAIN, AND FRANKFURT, GERMANY, WERE ANALYSED BY NEXT-GENERATION SEQUENCING (NGS). THE EVALUATION OF THE BIOLOGICAL TARGETS OF THE MIRNAS WAS PERFORMED BY PATHWAY ENRICHMENT ANALYSIS AND PROTEIN-PROTEIN INTERACTION NETWORK ANALYSIS RESPECTIVELY. RESULTS: PATIENTS WITH PIBO HAD SIGNIFICANTLY LOWER LUNG FUNCTION VALUES AND INCREASED AIRWAY INFLAMMATION IN INDUCED SPUTUM AS INDICATED BY TOTAL CELL COUNTS, NEUTROPHILS, IL-1BETA, IL-6, IL-8 AND TGF-BETA COMPARED TO CONTROLS.NEXT-GENERATION SEQUENCING ANALYSIS REVEALED A TOTAL OF 22 DYSREGULATED MIRNAS, WHICH PASSED SIGNIFICANCE THRESHOLD FOR PADJ 25% OF ENRICHMENT SITES ARE FOUND WITHIN, DOWNSTREAM OR BETWEEN ANNOTATED GENES. LESS THAN 10% OF THESE SITES WERE ALTERED IN MIST1(-/-) ACINI, WITH MOST CHANGES IN H3K4ME3 ENRICHMENT NOT REFLECTING ALTERED GENE EXPRESSION. INGENUITY PATHWAY ANALYSIS OF GENES DIFFERENTIALLY-ENRICHED FOR H3K4ME3 REVEALED AN ASSOCIATION WITH PANCREATITIS AND PANCREATIC DUCTAL ADENOCARCINOMA IN MIST1(-/-) TISSUE. MOST OF THESE GENES WERE NOT DIFFERENTIALLY EXPRESSED BUT SEVERAL WERE READILY INDUCED BY ACUTE EXPERIMENTAL PANCREATITIS, WITH SIGNIFICANTLY INCREASED EXPRESSION IN MIST1(-/-) TISSUE RELATIVE TO WILD TYPE MICE. WE SUGGEST THAT THE CHRONIC CELL STRESS OBSERVED IN THE ABSENCE OF MIST1 RESULTS IN EPIGENETIC REPROGRAMMING OF GENES INVOLVED IN PROMOTING PANCREATITIS TO A POISED STATE, THEREBY INCREASING THE SENSITIVITY TO EVENTS THAT PROMOTE DISEASE. 2014 16 1584 21 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 1615 27 DNA METHYLTRANSFERASE 3B PLAYS A PROTECTIVE ROLE AGAINST HEPATOCARCINOGENESIS CAUSED BY CHRONIC INFLAMMATION VIA MAINTAINING MITOCHONDRIAL HOMEOSTASIS. MOST HEPATOCELLULAR CARCINOMAS (HCCS) DEVELOP ON THE BASIS OF CHRONIC HEPATITIS, BUT THE MECHANISM OF EPIGENETIC REGULATION IN INFLAMMATORY HEPATOCARCINOGENESIS HAS YET TO BE ELUCIDATED. AMONG DE NOVO DNA METHYLTRANSFERASES (DNMTS), DNMT3B HAS LATELY BEEN REPORTED TO ACT SPECIFICALLY ON ACTIVELY TRANSCRIBED GENES, SUGGESTING THE POSSIBILITY THAT IT PLAYS A ROLE IN THE PATHOGENESIS OF CANCER. WE CONFIRMED THAT DNMT3B ISOFORMS LACKING ITS CATALYTIC DOMAIN WERE HIGHLY EXPRESSED IN HCCS COMPARED WITH NON-TUMOROUS LIVER TISSUE. TO ELUCIDATE THE ROLE OF DNMT3B IN HEPATOCARCINOGENESIS, WE GENERATED A GENETICALLY ENGINEERED MOUSE MODEL WITH HEPATOCYTE-SPECIFIC DNMT3B DELETION. THE LIVER OF THE DNMT3B-DEFICIENT MICE EXHIBITED AN EXACERBATION OF THIOACETAMIDE-INDUCED HEPATITIS, PROGRESSION OF LIVER FIBROSIS AND A HIGHER INCIDENCE OF HCC COMPARED WITH THE LIVER OF THE CONTROL MICE. WHOLE-GENOME BISULFITE SEQUENCING VERIFIED A LOWER CG METHYLATION LEVEL IN THE DNMT3B-DEFICIENT LIVER, DEMONSTRATING DIFFERENTIALLY METHYLATED REGIONS THROUGHOUT THE GENOME. TRANSCRIPTOME ANALYSIS REVEALED DECREASED EXPRESSION OF GENES RELATED TO OXIDATIVE PHOSPHORYLATION IN THE DNMT3B-DEFICIENT LIVER. MOREOVER, PRIMARY HEPATOCYTES ISOLATED FROM THE DNMT3B-DEFICIENT MICE SHOWED REDUCED MITOCHONDRIAL RESPIRATORY CAPACITY, LEADING TO THE ENHANCEMENT OF OXIDATIVE STRESS IN THE LIVER TISSUE. OUR FINDINGS SUGGEST THE PROTECTIVE ROLE OF DNMT3B AGAINST CHRONIC INFLAMMATION AND HCC DEVELOPMENT VIA MAINTAINING MITOCHONDRIAL HOMEOSTASIS. 2020 18 3764 30 INTEGRATIVE ANALYSIS OF DNA METHYLATION AND GENE EXPRESSION DATA IDENTIFIES EPAS1 AS A KEY REGULATOR OF COPD. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) IS A COMPLEX DISEASE. GENETIC, EPIGENETIC, AND ENVIRONMENTAL FACTORS ARE KNOWN TO CONTRIBUTE TO COPD RISK AND DISEASE PROGRESSION. THEREFORE WE DEVELOPED A SYSTEMATIC APPROACH TO IDENTIFY KEY REGULATORS OF COPD THAT INTEGRATES GENOME-WIDE DNA METHYLATION, GENE EXPRESSION, AND PHENOTYPE DATA IN LUNG TISSUE FROM COPD AND CONTROL SAMPLES. OUR INTEGRATIVE ANALYSIS IDENTIFIED 126 KEY REGULATORS OF COPD. WE IDENTIFIED EPAS1 AS THE ONLY KEY REGULATOR WHOSE DOWNSTREAM GENES SIGNIFICANTLY OVERLAPPED WITH MULTIPLE GENES SETS ASSOCIATED WITH COPD DISEASE SEVERITY. EPAS1 IS DISTINCT IN COMPARISON WITH OTHER KEY REGULATORS IN TERMS OF METHYLATION PROFILE AND DOWNSTREAM TARGET GENES. GENES PREDICTED TO BE REGULATED BY EPAS1 WERE ENRICHED FOR BIOLOGICAL PROCESSES INCLUDING SIGNALING, CELL COMMUNICATIONS, AND SYSTEM DEVELOPMENT. WE CONFIRMED THAT EPAS1 PROTEIN LEVELS ARE LOWER IN HUMAN COPD LUNG TISSUE COMPARED TO NON-DISEASE CONTROLS AND THAT EPAS1 GENE EXPRESSION IS REDUCED IN MICE CHRONICALLY EXPOSED TO CIGARETTE SMOKE. AS EPAS1 DOWNSTREAM GENES WERE SIGNIFICANTLY ENRICHED FOR HYPOXIA RESPONSIVE GENES IN ENDOTHELIAL CELLS, WE TESTED EPAS1 FUNCTION IN HUMAN ENDOTHELIAL CELLS. EPAS1 KNOCKDOWN BY SIRNA IN ENDOTHELIAL CELLS IMPACTED GENES THAT SIGNIFICANTLY OVERLAPPED WITH EPAS1 DOWNSTREAM GENES IN LUNG TISSUE INCLUDING HYPOXIA RESPONSIVE GENES, AND GENES ASSOCIATED WITH EMPHYSEMA SEVERITY. OUR FIRST INTEGRATIVE ANALYSIS OF GENOME-WIDE DNA METHYLATION AND GENE EXPRESSION PROFILES ILLUSTRATES THAT NOT ONLY DOES DNA METHYLATION PLAY A 'CAUSAL' ROLE IN THE MOLECULAR PATHOPHYSIOLOGY OF COPD, BUT IT CAN BE LEVERAGED TO DIRECTLY IDENTIFY NOVEL KEY MEDIATORS OF THIS PATHOPHYSIOLOGY. 2015 19 5422 32 REGULATION OF LUNG EPITHELIAL CELL SENESCENCE IN SMOKING-INDUCED COPD/EMPHYSEMA BY MICROR-125A-5P VIA SP1 MEDIATION OF SIRT1/HIF-1A. CHRONIC OBSTRUCTIVE PULMONARY DISEASE (COPD) AFFECTS THE HEALTH OF MORE THAN 300 MILLION PEOPLE WORLDWIDE; AT PRESENT, THERE IS NO EFFECTIVE DRUG TO TREAT COPD. SMOKING IS THE MOST IMPORTANT RISK FACTOR, BUT THE MOLECULAR MECHANISM BY WHICH SMOKING CAUSES THE DISEASE IS UNCLEAR. THE SENESCENCE OF LUNG EPITHELIAL CELLS IS RELATED TO DEVELOPMENT OF COPD. REGULATION OF MIRNAS IS THE MAIN EPIGENETIC MECHANISM RELATED TO AGING. BETA-GALACTOSE STAINING SHOWED THAT THE LUNG TISSUES OF SMOKERS HAVE A HIGHER DEGREE OF CELLULAR SENESCENCE, AND THE EXPRESSION OF MIR-125A-5P IS HIGH. THIS EFFECT IS OBVIOUS FOR SMOKERS WITH COPD/EMPHYSEMA, AND THERE IS A NEGATIVE CORRELATION BETWEEN MIR-125A-5P LEVELS AND VALUES FOR FORCED EXPIRATORY VOLUME IN ONE SECOND (FEV1)/FORCED VITAL CAPACITY (FVC). AFTER BALB/C MICE WERE CHRONICALLY EXPOSED TO VARIOUS CONCENTRATIONS OF CIGARETTE SMOKE (CS), PLETHYSMOGRAPHY SHOWED THAT LUNG FUNCTION WAS IMPAIRED, LUNG TISSUE SENESCENCE WAS INCREASED, AND THE SENESCENCE-ASSOCIATED SECRETORY PHENOTYPE (SASP) IN BRONCHOALVEOLAR LAVAGE FLUID WAS INCREASED. FOR MOUSE LUNG EPITHELIAL (MLE)-12 CELLS TREATED WITH CIGARETTE SMOKE EXTRACT (CSE), SP1 AND SIRT1 LEVELS WERE LOW, HIF-1ALPHA ACETYLATION LEVELS WERE HIGH, AND CELL SENESCENCE AND SECRETION OF SASP FACTORS WERE ELEVATED. DOWN-REGULATION OF MIR-125A-5P OR UP-REGULATION OF SP1 REVERSED THESE EFFECTS. IN ADDITION, COMPARED WITH MICE EXPOSED TO CS, KNOCKDOWN OF MIR-125A-5P REDUCED LUNG EPITHELIAL CELL SENESCENCE AND COPD/EMPHYSEMA. THEREFORE, IN SMOKING-INDUCED COPD, ELEVATED MIR-125A-5P PARTICIPATES IN THE SENESCENCE OF LUNG EPITHELIAL CELLS THROUGH SP1/SIRT1/HIF-1ALPHA. THESE FINDINGS PROVIDE EVIDENCE RELATED TO THE PATHOGENESIS OF COPD/EMPHYSEMA CAUSED BY CHRONIC SMOKING. 2022 20 3959 36 LONG NON-CODING RNAS TARGET PATHOGENETICALLY RELEVANT GENES AND PATHWAYS IN RHEUMATOID ARTHRITIS. RHEUMATOID ARTHRITIS (RA) IS A CHRONIC INFLAMMATORY AUTOIMMUNE DISEASE DRIVEN BY GENETIC, ENVIRONMENTAL AND EPIGENETIC FACTORS. LONG NON-CODING RNAS (LNCRNAS) ARE A KEY COMPONENT OF THE EPIGENETIC MECHANISMS AND ARE KNOWN TO BE INVOLVED IN THE DEVELOPMENT OF AUTOIMMUNE DISEASES. IN THIS WORK WE AIMED TO IDENTIFY SIGNIFICANTLY DIFFERENTIALLY EXPRESSED LNCRNAS (DE-LNCRNAS) THAT ARE FUNCTIONALLY CONNECTED TO MODULATED GENES STRICTLY ASSOCIATED WITH RA. IN TOTAL, 542,500 TRANSCRIPTS HAVE BEEN PROFILED IN PERIPHERAL BLOOD MONONUCLEAR CELLS (PBMCS) FROM FOUR PATIENTS WITH EARLY ONSET RA PRIOR ANY TREATMENT AND FOUR HEALTHY DONORS USING CLARIOM D ARRAYS. RESULTS WERE CONFIRMED BY REAL-TIME PCR IN 20 PATIENTS AND 20 CONTROLS. SIX DE-LNCRNAS TARGET EXPERIMENTALLY VALIDATED MIRNAS ABLE TO REGULATE DIFFERENTIALLY EXPRESSED GENES (DEGS) IN RA; AMONG THEM, ONLY FTX, HNRNPU-AS1 AND RP11-498C9.15 TARGETED A LARGE NUMBER OF DEGS. MOST IMPORTANTLY, RP11-498C9.15 TARGETED THE LARGEST NUMBER OF SIGNALLING PATHWAYS THAT WERE FOUND TO BE ENRICHED BY THE GLOBAL AMOUNT OF RA-DEGS AND THAT HAVE ALREADY BEEN ASSOCIATED WITH RA AND RA-SYNOVIOCYTES. MOREOVER, RP11-498C9.15 TARGETED THE MOST HIGHLY CONNECTED GENES IN THE RA INTERACTOME, THUS SUGGESTING ITS INVOLVEMENT IN CRUCIAL GENE REGULATION. THESE RESULTS INDICATE THAT, BY MODULATING BOTH MICRORNAS AND GENE EXPRESSION, RP11-498C9.15 MAY PLAY A PIVOTAL ROLE IN RA PATHOGENESIS. 2019