1 5597 101 ROLES OF MIR-432 AND CIRC_0000418 IN MEDIATING THE ANTI-DEPRESSANT ACTION OF ADAR1. ADENOSINE DEAMINASE ACTING ON RNA1 (ADAR1) IS A NEWLY DISCOVERED EPIGENETIC MOLECULE MARKER THAT IS SENSITIVE TO ENVIRONMENTAL STRESSORS. A RECENT STUDY HAS DEMONSTRATED THAT ADAR1 AFFECTS BDNF EXPRESSION VIA MIR-432 AND IS INVOLVED IN ANTIDEPRESSANT ACTION. HOWEVER, THE DETAILED MOLECULAR MECHANISM IS STILL UNCLEAR. WE HAVE UNCOVERED A NEW MOLECULAR MECHANISM SHOWING THE INVOLVEMENT OF MIR-432 AND CIRC_0000418 IN MEDIATING THE ANTIDEPRESSANT ACTION OF ADAR1. WE DEMONSTRATE THAT THE ADAR1 INDUCER (IFN-GAMMA) ALLEVIATES THE DEPRESSIVE-LIKE BEHAVIORS OF BALB/C MICE TREATED WITH CHRONIC UNPREDICTABLE STRESS (CUS) EXPOSURE. MOREOVER, BOTH IN VIVO AND IN VITRO STUDIES SHOW THAT ADAR1 DIFFERENTLY IMPACTS MIR-432 AND CIRC_0000418 EXPRESSIONS. FURTHERMORE, THE IN VITRO RESULTS DEMONSTRATE THAT CIRC_0000418 OPPOSITELY AFFECTS BDNF EXPRESSION. TOGETHER, OUR RESULTS INDICATE THAT ADAR1 AFFECTS CUS-INDUCED DEPRESSIVE-LIKE BEHAVIOR AND BDNF EXPRESSION BY ACTING ON MIR-432 AND CIRC_0000418. ELUCIDATION OF THIS NEW MOLECULAR MECHANISM WILL NOT ONLY PROVIDE INSIGHTS INTO FURTHER UNDERSTANDING THE IMPORTANT ROLE OF ADAR1 IN STRESS-INDUCED DEPRESSIVE-LIKE BEHAVIOR BUT ALSO SUGGEST A POTENTIAL THERAPEUTIC STRATEGY FOR DEVELOPING NOVEL ANTI-DEPRESSIVE DRUGS. 2021 2 6215 52 THE INVOLVEMENT OF ADAR1 IN ANTIDEPRESSANT ACTION BY REGULATING BDNF VIA MIR-432. BRAIN-DERIVED NEUROTROPHIC FACTOR (BDNF) IS A BIOMARKER OF DEPRESSION. RECENT STUDIES HAVE FOUND ADENOSINE DEAMINASE ACTING ON RNA1 (ADAR1) IS A NOVEL TARGET BEING SENSITIVE TO STRESS AT EPIGENETIC LEVEL. THE EPIGENETIC REGULATION MECHANISM OF STRESS-RELATED DEPRESSION IS STILL UNCLEAR SO FAR. TO EXPLORE THE POTENTIAL REGULATING MECHANISM OF ADAR1 ON BDNF, OVER AND LOW EXPRESSION OF ADAR1 IN PC12 AND SH-SY5Y CELL LINES ARE PREPARED. IN THE MEANWHILE, CHRONIC UNPREDICTABLE STRESS (CUS) MICE ARE TREATED WITH ADAR1 INDUCER (INTERFERON-GAMMA, IFN-GAMMA). ADAR1 REGULATES BDNF EXPRESSION, WHICH IS PROVEN BY THAT OVER AND LOW EXPRESSIONS OF ADAR1 INCREASE AND DECREASE BDNF MRNA AND PROTEIN RESPECTIVELY IN VITRO. ADDITIONALLY, ADAR1 INDUCER ALLEVIATES THE DEPRESSIVE-LIKE BEHAVIOR OF CUS MICE BY RECOVERING THE DECREASED BDNF PROTEIN IN BRAIN AND SERUM. MOREOVER, OVER AND LOW EXPRESSIONS OF ADAR1 REDUCE AND ENHANCE MICRORNA-432 (MIR-432) EXPRESSION RESPECTIVELY IN VITRO. FURTHERLY, OVER AND LOW MIR-432 EXPRESSIONS LEAD TO DECREASED AND INCREASED BDNF AND ADAR1 MRNA, PROTEIN AND IMMUNOREACTIVITY RESPECTIVELY IN VITRO. THE ABOVE RESULTS DEMONSTRATE THAT ADAR1 IS INVOLVED IN ANTIDEPRESSANT ACTION BY REGULATING BDNF VIA MIR-432. THOSE NOVEL FINDINGS CAN PROVIDE A NEW IDEA FOR THE STUDY OF EPIGENETIC REGULATION MECHANISM, EARLY DIAGNOSIS, AND EFFECTIVE TREATMENT OF STRESS-RELATED DEPRESSION. 2021 3 3318 30 HISTONE ACETYLATION AND EXPRESSION OF MONO-AMINERGIC TRANSMITTERS SYNTHETASES INVOLVED IN CUS-INDUCED DEPRESSIVE RATS. HISTONE ACETYLATION HAS BEEN LINKED TO DEPRESSION, THE ETIOLOGY OF WHICH INVOLVES MANY FACTORS SUCH AS GENETICS, ENVIRONMENTS, AND EPIGENETICS. THE AIM OF THE PRESENT STUDY WAS TO INVESTIGATE WHETHER IT WAS ASSOCIATED WITH EPIGENETIC HISTONE MODIFICATION AND GENE EXPRESSION OF ENZYMES RESPONSIBLE FOR THE BIOSYNTHESIS OF NOREPINEPHRINE AND SEROTONIN IN RAT DEPRESSION MODEL INDUCED BY CHRONIC UNPREDICTABLE STRESS (CUS). EIGHT-WEEK-OLD MALE SPRAGUE-DAWLEY RATS WERE EXPOSED TO CUS OVER 28 DAYS. IT WAS SHOWN THAT THE CUS-INDUCED RATS DISPLAYED REMARKED ANXIETY- AND DEPRESSION-LIKE BEHAVIOR WITH WEAKENED LOCOMOTOR ACTIVITY IN OPEN FIELD TEST AND PROLONGED IMMOBILITY IN FORCED SWIMMING TEST. WESTERN BLOT REVEALED THAT CUS LED TO SIGNIFICANT DECREASE IN ACETYLATION OF H3 AT LYSINE 9 (K9) AND H4 AT LYSINE 12 (K12) WITH OBVIOUSLY INCREASING HISTONE DEACETYLASES 5 (HDAC5) EXPRESSION IN HIPPOCAMPUS OF CUS-INDUCED RATS. MEANWHILE, THERE WAS AN OBVIOUSLY DECREASED EXPRESSION OF TYROSINE HYDROXYLASE (TH) AND TRYPTOPHAN HYDROXYLASE (TPH) BOTH AT PROTEIN AND MRNA LEVELS. ADMINISTRATION OF SODIUM VALPROATE (VPA), A HISTONE DEACETYLASE 5 (HDAC5) INHIBITOR, NOT ONLY SIGNIFICANTLY RELIEVED THE ANXIETY- AND DEPRESSION-LIKE BEHAVIORS OF CUS-INDUCED RATS BUT ALSO CLEARLY BLUNTED DECREASE OF H3(K9) AND H4(K12) ACETYLATION AND EXPRESSION OF TH AND TPH, AND PREVENTED INCREASE OF HDAC5 EXPRESSION. THE RESULTS INDICATE THAT THERE EXISTS POSSIBLE INTERRELATION BETWEEN TH AND TPH GENE EXPRESSION AND EPIGENETIC HISTONE ACETYLATION IN CUS-INDUCED DEPRESSIVE RATS, WHICH AT LEAST PARTLY CONTRIBUTES TO THE ETIOLOGY OF DEPRESSION. 2014 4 4299 26 MICRORNA-15B CONTRIBUTES TO DEPRESSION-LIKE BEHAVIOR IN MICE BY AFFECTING SYNAPTIC PROTEIN LEVELS AND FUNCTION IN THE NUCLEUS ACCUMBENS. MAJOR DEPRESSION IS A PREVALENT AFFECTIVE DISORDER CHARACTERIZED BY RECURRENT LOW MOOD. IT PRESUMABLY RESULTS FROM STRESS-INDUCED DETERIORATIONS OF MOLECULAR NETWORKS AND SYNAPTIC FUNCTIONS IN BRAIN REWARD CIRCUITS OF GENETICALLY-SUSCEPTIBLE INDIVIDUALS THROUGH EPIGENETIC PROCESSES. EPIGENETIC REGULATOR MICRORNA-15B INHIBITS NEURONAL PROGENITOR PROLIFERATION AND IS UP-REGULATED IN THE MEDIAL PREFRONTAL CORTEX OF MICE THAT DEMONSTRATE DEPRESSION-LIKE BEHAVIOR, INDICATING THE CONTRIBUTION OF MICRORNA-15 TO MAJOR DEPRESSION. USING A MOUSE MODEL OF MAJOR DEPRESSION INDUCED BY CHRONIC UNPREDICTABLE MILD STRESS (CUMS), HERE WE EXAMINED THE EFFECTS OF MICRORNA-15B ON SYNAPSES AND SYNAPTIC PROTEINS IN THE NUCLEUS ACCUMBENS OF THESE MICE. THE APPLICATION OF A MICRORNA-15B ANTAGOMIR INTO THE NUCLEUS ACCUMBENS SIGNIFICANTLY REDUCED THE INCIDENCE OF CUMS-INDUCED DEPRESSION AND REVERSED THE ATTENUATIONS OF EXCITATORY SYNAPSE AND SYNTAXIN-BINDING PROTEIN 3 (STXBP3A)/VESICLE-ASSOCIATED PROTEIN 1 (VAMP1) EXPRESSION. IN CONTRAST, THE INJECTION OF A MICRORNA-15B ANALOG INTO THE NUCLEUS ACCUMBENS INDUCED DEPRESSION-LIKE BEHAVIOR AS WELL AS ATTENUATED EXCITATORY SYNAPSES AND STXBP3A/VAMP1 EXPRESSION SIMILAR TO THE DOWN-REGULATION OF THESE PROCESSES INDUCED BY THE CUMS. WE CONCLUDE THAT MICRORNA-15B-5P MAY PLAY A CRITICAL ROLE IN CHRONIC STRESS-INDUCED DEPRESSION BY DECREASING SYNAPTIC PROTEINS, INNERVATIONS, AND ACTIVITIES IN THE NUCLEUS ACCUMBENS. WE PROPOSE THAT THE TREATMENT OF ANTI-MICRORNA-15B-5P MAY CONVERT STRESS-INDUCED DEPRESSION INTO RESILIENCE. 2020 5 5981 28 TET2 PROMOTES PATHOGEN INFECTION-INDUCED MYELOPOIESIS THROUGH MRNA OXIDATION. VARIETIES OF RNA MODIFICATION FORM THE EPITRANSCRIPTOME FOR POST-TRANSCRIPTIONAL REGULATION. 5-METHYLCYTOSINE (5-MC) IS A SPARSE RNA MODIFICATION IN MESSENGER RNA (MRNA) UNDER PHYSIOLOGICAL CONDITIONS. THE FUNCTION OF RNA 5-HYDROXYMETHYLCYTOSINE (5-HMC) OXIDIZED BY TEN-ELEVEN TRANSLOCATION (TET) PROTEINS IN DROSOPHILA HAS BEEN REVEALED MORE RECENTLY. HOWEVER, THE TURNOVER AND FUNCTION OF 5-MC IN MAMMALIAN MRNA HAVE BEEN LARGELY UNKNOWN. TET2 SUPPRESSES MYELOID MALIGNANCIES MOSTLY IN AN ENZYMATIC ACTIVITY-DEPENDENT MANNER, AND IS IMPORTANT IN RESOLVING INFLAMMATORY RESPONSE IN AN ENZYMATIC ACTIVITY-INDEPENDENT WAY. MYELOPOIESIS IS A COMMON HOST IMMUNE RESPONSE IN ACUTE AND CHRONIC INFECTIONS; HOWEVER, ITS EPIGENETIC MECHANISM NEEDS TO BE IDENTIFIED. HERE WE DEMONSTRATE THAT TET2 PROMOTES INFECTION-INDUCED MYELOPOIESIS IN AN MRNA OXIDATION-DEPENDENT MANNER THROUGH ADAR1-MEDIATED REPRESSION OF SOCS3 EXPRESSION AT THE POST-TRANSCRIPTION LEVEL. TET2 PROMOTES BOTH ABDOMINAL SEPSIS-INDUCED EMERGENCY MYELOPOIESIS AND PARASITE-INDUCED MAST CELL EXPANSION THROUGH DECREASING MRNA LEVELS OF SOCS3, A KEY NEGATIVE REGULATOR OF THE JAK-STAT PATHWAY THAT IS CRITICAL FOR CYTOKINE-INDUCED MYELOPOIESIS. TET2 REPRESSES SOCS3 EXPRESSION THROUGH ADAR1, WHICH BINDS AND DESTABILIZES SOCS3 MRNA IN A RNA EDITING-INDEPENDENT MANNER. FOR THE UNDERLYING MECHANISM OF TET2 REGULATION AT THE MRNA LEVEL, TET2 MEDIATES OXIDATION OF 5-MC IN MRNA. TET2 DEFICIENCY LEADS TO THE TRANSCRIPTOME-WIDE APPEARANCE OF METHYLATED CYTOSINES, INCLUDING ONES IN THE 3' UNTRANSLATED REGION OF SOCS3, WHICH INFLUENCES DOUBLE-STRANDED RNA FORMATION FOR ADAR1 BINDING, PROBABLY THROUGH CYTOSINE METHYLATION-SPECIFIC READERS, SUCH AS RNA HELICASES. OUR STUDY REVEALS A PREVIOUSLY UNKNOWN REGULATORY ROLE OF TET2 AT THE EPITRANSCRIPTOMIC LEVEL, PROMOTING MYELOPOIESIS DURING INFECTION IN THE MAMMALIAN SYSTEM BY DECREASING 5-MCS IN MRNAS. MOREOVER, THE INHIBITORY FUNCTION OF CYTOSINE METHYLATION ON DOUBLE-STRANDED RNA FORMATION AND ADAR1 BINDING IN MRNA REVEALS ITS NEW PHYSIOLOGICAL ROLE IN THE MAMMALIAN SYSTEM. 2018 6 5974 36 TET1 IN NUCLEUS ACCUMBENS OPPOSES DEPRESSION- AND ANXIETY-LIKE BEHAVIORS. DEPRESSION IS A LEADING CAUSE OF DISEASE BURDEN, YET CURRENT THERAPIES FULLY TREAT <50% OF AFFECTED INDIVIDUALS. INCREASING EVIDENCE IMPLICATES EPIGENETIC MECHANISMS IN DEPRESSION AND ANTIDEPRESSANT ACTION. HERE WE EXAMINED A POSSIBLE ROLE FOR THE DNA DIOXYGENASE, TEN-ELEVEN TRANSLOCATION PROTEIN 1 (TET1), IN DEPRESSION-RELATED BEHAVIORAL ABNORMALITIES. WE APPLIED CHRONIC SOCIAL DEFEAT STRESS, AN ETHOLOGICALLY VALIDATED MOUSE MODEL OF DEPRESSION-LIKE BEHAVIORS, AND EXAMINED TET1 EXPRESSION CHANGES IN NUCLEUS ACCUMBENS (NAC), A KEY BRAIN REWARD REGION. WE SHOW DECREASED TET1 EXPRESSION IN NAC IN STRESS-SUSCEPTIBLE MICE ONLY. SURPRISINGLY, SELECTIVE KNOCKOUT OF TET1 IN NAC NEURONS OF ADULT MICE PRODUCED ANTIDEPRESSANT-LIKE EFFECTS IN SEVERAL BEHAVIORAL ASSAYS. TO IDENTIFY TET1 TARGETS THAT MEDIATE THESE ACTIONS, WE PERFORMED RNASEQ ON NAC AFTER CONDITIONAL DELETION OF TET1 AND FOUND THAT IMMUNE-RELATED GENES ARE THE MOST HIGHLY DYSREGULATED. MOREOVER, MANY OF THESE GENES ARE ALSO UPREGULATED IN THE NAC OF RESILIENT MICE AFTER CHRONIC SOCIAL DEFEAT STRESS. THESE FINDINGS REVEAL A NOVEL ROLE FOR TET1, AN ENZYME IMPORTANT FOR DNA HYDROXYMETHYLATION, IN THE BRAIN'S REWARD CIRCUITRY IN MODULATING STRESS RESPONSES IN MICE. WE ALSO IDENTIFY A SUBSET OF GENES THAT ARE REGULATED BY TET1 IN THIS CIRCUITRY. THESE FINDINGS PROVIDE NEW INSIGHT INTO THE PATHOPHYSIOLOGY OF DEPRESSION, WHICH CAN AID IN FUTURE ANTIDEPRESSANT DRUG DISCOVERY EFFORTS. 2017 7 6804 42 [EPIGENETIC REGULATION IN DEPRESSION]. RECENT RESEARCH HAS RAISED THE NOTION THAT EPIGENETIC MECHANISMS (E.G., DNA METHYLATION AND HISTONE MODIFICATIONS), WHICH EXERT LASTING CONTROL OVER GENE EXPRESSION WITHOUT ALTERING THE GENETIC CODE, COULD MEDIATE STABLE CHANGES IN BRAIN FUNCTION. HOWEVER, THE ROLE OF ENVIRONMENTAL FACTORS ALONG WITH GENETIC FACTORS IN THE EPIGENETIC REGULATION OF THE PATHOGENESIS OF DEPRESSION IS LARGELY UNKNOWN. TWO GENETICALLY DISTINCT MICE STRAINS, BALB/C (BALB) AND C57BL/6 (B6), EXHIBIT DIFFERENT BEHAVIORAL RESPONSES TO CHRONIC STRESS. WITH CHRONIC STRESS, BALB MICE SHOWED DEPRESSIVE-LIKE BEHAVIORS, BUT NOT B6 MICE, AND GLIAL CELL-DERIVED NEUROTROPHIC FACTOR (GDNF) EXPRESSION LEVEL WAS DECREASED IN THE VENTRAL STRIATUM OF BALB MICE BUT INCREASED IN B6 MICE. IN BALB MICE, DEPRESSIVE-LIKE BEHAVIORS AND DECREASED GDNF EXPRESSION WERE RECOVERED BY CHRONIC ANTIDEPRESSANT TREATMENT. THEREFORE, WE USED THESE TWO MICE STRAINS TO INVESTIGATE HOW THE EPIGENETIC STATUS OF THE GDNF GENE IN THE VENTRAL STRIATUM MODULATES STRESS VULNERABILITY. BOTH MICE STRAINS SHOWED INCREASED DNA METHYLATION LEVELS AND MECP2 RECRUITMENT IN THE GDNF PROMOTER REGION. HOWEVER, HISTONE H3 ACETYLATION LEVEL WAS DECREASED IN BALB MICE, BUT INCREASED IN B6 MICE. FURTHERMORE, BALB MICE SHOWED INCREASED HISTONE DEACETYLASE2 (HDAC2) EXPRESSION LEVEL AND RE-CHIP ASSAY REVEALED HDAC2-MECP2 COMPLEX IN BALB MICE. OUR RESULTS INDICATE THE CRUCIAL ROLE OF HISTONE MODIFICATION BY HDAC2 AND MECP2 COMPLEX FOR THE CONTROL OF GDNF EXPRESSION AND SUBSEQUENT BEHAVIORAL RESPONSES TO CHRONIC STRESS, IN OTHER WORDS, THE SUSCEPTIBILITY TO STRESS. IN ADDITION, WE INVESTIGATED THE EFFECT OF ANTIDEPRESSANTS ON THE EPIGENETIC REGULATION OF GDNF EXPRESSION. WE FOUND A REDUCED LEVEL OF HDAC4 RECRUITMENT AT THE GDNF PROMOTER REGION WITH ANTIDEPRESSANTS. THUS, OUR DATA SUGGEST THAT ANTIDEPRESSANTS INCREASE TRANSCRIPTIONAL ACTIVITY OF THE GDNF GENE THROUGH THE MODULATION OF HISTONE ACETYLATION BY HDAC4. FINALLY, WE EXAMINED THE EXPRESSIONS OF GDNF AND EPIGENETIC-RELATED MOLECULES MRNAS WITH MAJOR DEPRESSIVE AND BIPOLAR DISORDER PATIENTS BY USING QUANTITATIVE REAL-TIME PCR. WE FOUND THE ABERRANT EXPRESSION OF GDNF AND EPIGENETIC-RELATED GENES INCLUDING HDAC2 AND HDAC4 IN MOOD DISORDER PATIENTS. THUS, OUR DATA PROVIDE NOVEL INSIGHTS SUGGESTING THAT EPIGENETIC MECHANISMS OF GDNF EXPRESSION ARE INVOLVED IN THE PATHOGENESIS OR PATHOPHYSIOLOGY OF DEPRESSION. 2012 8 1331 27 DEPRESSIVE-LIKE BEHAVIORS INDUCED BY CHRONIC SOCIAL DEFEAT STRESS ARE ASSOCIATED WITH HDAC7 REDUCTION IN THE NUCLEUS ACCUMBENS. PERSISTENT SYMPTOMS OF DEPRESSION INDICATE THE ADAPTIVE INVOLVEMENT OF STABLE MOLECULES IN THE BRAIN THAT MAY BE MANIFESTED AT THE LEVEL OF CHROMATIN REMODELING, SUCH AS HISTONE ACETYLATION. FORMER STUDIES HAVE IDENTIFIED ALTERATIONS IN HISTONE ACETYLATION AND DEACETYLATION IN SEVERAL ANIMAL MODELS ABOUT DEPRESSION. HOWEVER, THE SPECIFIC HISTONE DEACETYLASES RELATED WITH DEPRESSION ARE NEEDED TO BE EXPLORED. HERE, SOCIAL AVOIDANCE BEHAVIORS, ANXIETY-, AND DEPRESSION-LIKE BEHAVIORS WERE ALL FOUND IN MICE SUFFERED FROM CHRONIC SOCIAL DEFEAT STRESS. MOREOVER, WE ALSO DISCOVERED THAT THE AMOUNT OF THE CLASS II HISTONE DEACETYLASE, HDAC7 RATHER THAN HDAC2, WAS SIGNIFICANTLY DECREASED IN THE NUCLEUS ACCUMBENS OF DEFEATED MICE, WHICH SUGGESTED THAT HDAC7 MIGHT BE A CRUCIAL HISTONE DEACETYLASE IN A CHRONIC SOCIAL DEFEAT STRESS MODEL. OUR DATA SHOWED THAT THE DEPRESSIVE-LIKE BEHAVIORS INDUCED BY CHRONIC SOCIAL DEFEAT STRESS WERE ASSOCIATED WITH HDAC7 REDUCTION IN NUCLEUS ACCUMBENS. HDAC7 MIGHT BE A PROMISING THERAPEUTIC TARGET FOR DEPRESSION. 2020 9 3341 27 HISTONE DEACETYLASE-2 IS INVOLVED IN STRESS-INDUCED COGNITIVE IMPAIRMENT VIA HISTONE DEACETYLATION AND PI3K/AKT SIGNALING PATHWAY MODIFICATION. EXPOSURE TO CHRONIC STRESS UPREGULATES BLOOD GLUCOCORTICOID LEVELS AND IMPAIRS COGNITION VIA DIVERSE EPIGENETIC MECHANISMS, SUCH AS HISTONE DEACETYLATION. HISTONE DEACETYLATION CAN LEAD TO TRANSCRIPTIONAL SILENCING OF MANY PROTEINS INVOLVED IN COGNITION AND MAY ALSO CAUSE LEARNING AND MEMORY DYSFUNCTION. HISTONE DEACETYLASE?2 (HDAC2) HAS BEEN DEMONSTRATED TO EPIGENETICALLY BLOCK COGNITION VIA A REDUCTION IN THE HISTONE ACETYLATION LEVEL; HOWEVER, IT IS UNKNOWN WHETHER HDAC2 IS INVOLVED IN THE COGNITIVE DECLINE INDUCED BY CHRONIC STRESS. TO THE BEST OF AUTHORS' KNOWLEDGE, THIS IS THE FIRST STUDY TO DEMONSTRATE THAT THE STRESS HORMONE CORTICOSTEROID UPREGULATE HDAC2 PROTEIN LEVELS IN NEURO?2A CELLS AND CAUSE CELL INJURIES. HDAC2 KNOCKDOWN RESULTED IN A SIGNIFICANT AMELIORATION OF THE PATHOLOGICAL CHANGES IN N2A CELLS VIA THE UPREGULATION OF HISTONE ACETYLATION AND MODIFICATIONS IN THE PHOSPHOINOSITIDE 3?KINASE/PROTEIN KINASE B SIGNALING PATHWAY. IN ADDITION, THE HDAC2 PROTEIN LEVELS WERE UPREGULATED IN 12?MONTH?OLD FEMALE C57BL/6J MICE UNDER CHRONIC STRESS IN VIVO. TAKEN TOGETHER, THESE FINDINGS SUGGESTED THAT HDAC2 MAY BE AN IMPORTANT NEGATIVE REGULATOR INVOLVED IN CHRONIC STRESS?INDUCED COGNITIVE IMPAIRMENT. 2017 10 5467 37 RESILIENT PHENOTYPE IN CHRONIC MILD STRESS PARADIGM IS ASSOCIATED WITH ALTERED EXPRESSION LEVELS OF MIR-18A-5P AND SEROTONIN 5-HT(1A) RECEPTOR IN DORSAL PART OF THE HIPPOCAMPUS. DISTURBED SEROTONERGIC SIGNALING IN THE HIPPOCAMPUS OBSERVED IN MANY INDIVIDUALS VULNERABLE TO STRESS HAS BEEN SUGGESTED AS ONE OF THE PRIMARY FACTORS CONTRIBUTING TO THE DEVELOPMENT OF DEPRESSION. HOWEVER, LITTLE IS KNOWN ABOUT THE PHYSIOLOGY OF THE BRAIN IN THE RESILIENT PHENOTYPE. RESILIENT SUBJECTS MAINTAIN A POSITIVE MOOD AND PSYCHOLOGICAL BALANCE DESPITE BEING UNDER THE STRESS INFLUENCE. IN OUR STUDY, WE GENERATED STRESS-VULNERABLE AND RESILIENT RATS BY USING A CHRONIC MILD STRESS (CMS) PARADIGM. USING DIFFERENT MOLECULAR APPROACHES, WE REVEALED THAT RESILIENT ANIMALS EXHIBITED A SIGNIFICANTLY DECREASED EXPRESSION LEVEL OF MIR-18A-5P AND, IN THE SAME TIME, AN ELEVATED LEVEL OF 5-HT1AR IN DORSAL, BUT NOT VENTRAL, PART OF THE HIPPOCAMPUS. DESCRIBED BIOCHEMICAL CHANGES WERE NOT OBSERVED IN ANIMALS BEHAVIORALLY VULNERABLE TO STRESS. FURTHER, IN VITRO ANALYSIS SHOWED THAT MIR-18A-5P MAY BE A NEGATIVE EPIGENETIC REGULATOR OF 5-HT1AR SINCE THE TREATMENT OF ADULT HIPPOCAMPAL NEURONS WITH MIR-18A-5P MIMIC SIGNIFICANTLY LOWERED THE EXPRESSION LEVEL OF MRNA ENCODING 5-HT1AR. MOREOVER, BIOINFORMATIC ANALYSIS OF POTENTIAL TARGET GENES EXPRESSED IN THE HIPPOCAMPUS AND BEING REGULATED BY MIR-18A-5P SHOWED THAT THIS MICRORNA MAY REGULATE BIOLOGICAL PROCESSES, SUCH AS AXONOGENESIS, WHICH ARE IMPORTANT IN THE FUNCTIONING OF THE HIPPOCAMPUS IN BOTH RATS AND HUMANS. ALL THESE MOLECULAR FEATURES MAY CONTRIBUTE TO SEROTONERGIC HOMEOSTATIC BALANCE AT THE LEVEL OF SEROTONIN TURNOVER OBSERVED IN HIPPOCAMPI OF RESILIENT BUT NOT STRESS-VULNERABLE RATS. DELINEATION OF FURTHER MOLECULAR AND BIOCHEMICAL MARKERS UNDERLYING RESILIENCE TO STRESS MAY CONTRIBUTE TO THE DEVELOPMENT OF NEW ANTIDEPRESSANT STRATEGIES WHICH WILL RESTORE RESILIENT PHENOTYPE IN DEPRESSED PATIENTS. 2019 11 995 29 CHRONIC STRESS LEADS TO EPIGENETIC DYSREGULATION IN THE NEUROPEPTIDE-Y AND CANNABINOID CB1 RECEPTOR GENES IN THE MOUSE CINGULATE CORTEX. PERSISTENT STRESS TRIGGERS A VARIETY OF MECHANISMS, WHICH MAY ULTIMATELY LEAD TO THE OCCURRENCE OF ANXIETY- AND DEPRESSION-RELATED DISORDERS. EPIGENETIC MODIFICATIONS REPRESENT A MECHANISM BY WHICH CHRONIC STRESS MEDIATES LONG-TERM EFFECTS. HERE, WE ANALYZED BRAIN TISSUE FROM MICE EXPOSED TO CHRONIC UNPREDICTABLE STRESS (CUS), WHICH INDUCED IMPAIRED EMOTIONAL AND NOCICEPTIVE BEHAVIORS. AS ENDOCANNABINOID (ECB) AND NEUROPEPTIDE-Y (NPY) SYSTEMS MODULATE EMOTIONAL PROCESSES, WE HYPOTHESIZED THAT CUS MAY AFFECT THESE SYSTEMS THROUGH EPIGENETIC MECHANISMS. WE FOUND REDUCED NPY EXPRESSION AND NPY TYPE 1 RECEPTOR (NPY1R) SIGNALING, AND DECREASED EXPRESSION OF THE CANNABINOID TYPE 1 RECEPTOR (CB1) IN THE CINGULATE CORTEX OF CUS MICE SPECIFICALLY IN LOW CB1-EXPRESSING NEURONS. EPIGENETIC INVESTIGATIONS REVEALED REDUCED LEVELS OF HISTONE H3K9 ACETYLATION (H3K9AC) ASSOCIATED TO NPY AND CB1 GENES, WHICH MAY REPRESENT A FACTOR DETERMINING THE DYSREGULATION OCCURRING AT EXPRESSION AND SIGNALING LEVEL. CUS MICE ALSO SHOWED INCREASED NUCLEAR PROTEIN LEVELS AND ACTIVITY OF THE HISTONE DEACETYLASE TYPE 2 (HDAC2) IN THE CINGULATE CORTEX AS COMPARED TO CONTROLS. CHRONIC ADMINISTRATION OF URB597, AN INHIBITOR OF ANANDAMIDE DEGRADATION, WHICH IS KNOWN TO INDUCE ANXIOLYSIS IN CUS MICE, REVERSED THE EPIGENETIC CHANGES FOUND IN THE NPY GENE, BUT WAS INEFFECTIVE IN ALLEVIATING THE DYSREGULATION OF NPY AT TRANSCRIPTIONAL AND SIGNALING LEVEL. OUR FINDINGS SUGGEST THAT EPIGENETIC ALTERATIONS IN THE NPY AND CB1 GENES REPRESENT ONE OF THE POTENTIAL MECHANISMS CONTRIBUTING TO THE EMOTIONAL IMBALANCE INDUCED BY CUS IN MICE, AND THAT THE NPY AND ECB SYSTEMS MAY REPRESENT THERAPEUTIC TARGETS FOR THE TREATMENT OF PSYCHOPATHOLOGIES ASSOCIATED WITH OR TRIGGERED BY CHRONIC STRESS STATES. 2017 12 578 24 BEHAVIOR, BDNF AND EPIGENETIC MECHANISMS IN RESPONSE TO SOCIAL ISOLATION AND SOCIAL SUPPORT IN MIDDLE AGED RATS EXPOSED TO CHRONIC STRESS. SOCIAL DEPRIVATION CAN BE STRESSFUL FOR GROUP-LIVING MAMMALS. ON THE OTHER HAND, AN AMAZING RESPONSE OF THESE ANIMALS TO STRESS IS SEEKING SOCIAL CONTACT TO GIVE AND RECEIVE JOINT PROTECTION IN THREATENING SITUATIONS. WE EXPLORED THE EFFECTS OF SOCIAL ISOLATION AND SOCIAL SUPPORT ON EPIGENETIC AND BEHAVIORAL RESPONSES TO CHRONIC STRESS. MORE SPECIFICALLY, WE INVESTIGATED THE BEHAVIORAL RESPONSES, CORTICOSTERONE LEVELS, BDNF GENE EXPRESSION, AND MARKERS OF HIPPOCAMPAL EPIGENETIC ALTERATIONS (LEVELS OF H3K9 ACETYLATION AND METHYLATION, H3K27 METHYLATION, HDAC5, DNMT1, AND DNMT3A GENE EXPRESSIONS) IN MIDDLE-AGED ADULT RATS MAINTAINED IN DIFFERENT HOUSING CONDITIONS (ISOLATION OR ACCOMPANIED HOUSING) AND EXPOSED TO THE CHRONIC UNPREDICTABLE STRESS PROTOCOL (CUS). ISOLATION WAS ASSOCIATED WITH DECREASED BASAL LEVELS OF CORTICOSTERONE, IMPAIRED LONG-TERM MEMORY, AND DECREASED EXPRESSION OF THE BDNF GENE, BESIDES ALTERING THE BALANCE OF H3K9 FROM ACETYLATION TO METHYLATION AND INCREASING THE DNMT1 GENE EXPRESSION. THE CUS PROTOCOL DECREASED H3K9 ACETYLATION, BESIDES INCREASING H3K27 METHYLATION AND DNMT1 GENE EXPRESSION, BUT HAD NO SIGNIFICANT EFFECTS ON MEMORY AND BDNF GENE EXPRESSION. INTERESTINGLY, THE EFFECTS OF CUS ON CORTICOSTERONE AND HDAC5 GENE EXPRESSION WERE SEEN ONLY IN ISOLATED ANIMALS, WHEREAS THE EFFECTS OF CUS ON DNMT1 GENE EXPRESSION WERE MORE PRONOUNCED IN ISOLATED THAN ACCOMPANIED ANIMALS. IN CONCLUSION, SOCIAL ISOLATION IN MIDDLE AGE SHOWED BROADER EFFECTS THAN CHRONIC UNPREDICTABLE STRESS ON BEHAVIORAL AND EPIGENETIC ALTERATIONS POTENTIALLY ASSOCIATED WITH DECREASED BDNF EXPRESSION. MOREOVER, SOCIAL SUPPORT PREVENTED THE ADVERSE EFFECTS OF CUS ON HPA AXIS FUNCTIONING, HDAC5, AND DNMT1 GENE EXPRESSIONS. 2023 13 3969 29 LONG-LASTING DEPRESSION-LIKE BEHAVIOR AND EPIGENETIC CHANGES OF BDNF GENE EXPRESSION INDUCED BY PERINATAL EXPOSURE TO METHYLMERCURY. SUBSTANTIAL EVIDENCE INDICATES THAT PREDISPOSITION TO DISEASES CAN BE ACQUIRED DURING EARLY STAGES OF DEVELOPMENT AND INTERACTIONS BETWEEN ENVIRONMENTAL AND GENETIC FACTORS MAY BE IMPLICATED IN THE ONSET OF MANY PATHOLOGICAL CONDITIONS. DATA COLLECTED OVER SEVERAL DECADES HAVE SHOWN THAT CHEMICALS ARE AMONG THE RELEVANT FACTORS THAT CAN ENDANGER CNS. WE PREVIOUSLY SHOWED THAT PERINATAL EXPOSURE TO METHYLMERCURY (MEHG) CAUSES PERSISTENT CHANGES IN LEARNING AND MOTIVATIONAL BEHAVIOR IN MICE. IN THIS STUDY, WE REPORT THAT THE DEPRESSION-LIKE BEHAVIOR IN MEHG-EXPOSED MALE MICE IS REVERSED BY CHRONIC TREATMENT WITH THE ANTIDEPRESSANT FLUOXETINE. BEHAVIORAL ALTERATIONS ARE ASSOCIATED WITH A DECREASE IN BRAIN-DERIVED NEUROTROPHIC FACTOR (BDNF) MRNA IN THE HIPPOCAMPAL DENTATE GYRUS AND FLUOXETINE TREATMENT RESTORES BDNF MRNA EXPRESSION. WE ALSO SHOW THAT MEHG-EXPOSURE INDUCES LONG-LASTING REPRESSIVE STATE OF THE CHROMATIN STRUCTURE AT THE BDNF PROMOTER REGION, IN PARTICULAR DNA HYPERMETHYLATION, AN INCREASE IN HISTONE H3-K27 TRI-METHYLATION AND A DECREASE IN H3 ACETYLATION AT THE PROMOTER IV. WHILE FLUOXETINE TREATMENT DOES NOT ALTER HYPERMETHYLATION OF H3-K27, IT SIGNIFICANTLY UP-REGULATES H3 ACETYLATION AT THE BDNF PROMOTER IV IN MEHG-EXPOSED MICE. OUR STUDY SHOWS THAT DEVELOPMENTAL EXPOSURE TO LOW LEVELS OF MEHG PREDISPOSES MICE TO DEPRESSION AND INDUCES EPIGENETIC SUPPRESSION OF BDNF GENE EXPRESSION IN THE HIPPOCAMPUS. 2008 14 1808 35 EFFECTS OF ADOLESCENT SOCIAL STRESS AND ANTIDEPRESSANT TREATMENT ON COGNITIVE INFLEXIBILITY AND BDNF EPIGENETIC MODIFICATIONS IN THE MPFC OF ADULT MICE. ADOLESCENT SOCIAL STRESS (ASS) CAN INCREASE SUSCEPTIBILITY TO DEPRESSION IN ADULTHOOD. HOWEVER, THE UNDERLYING PSYCHOLOGICAL AND NEURAL MECHANISMS REMAIN UNCLEAR. CORTICALLY MEDIATED COGNITIVE DYSFUNCTIONS ARE INCREASINGLY RECOGNIZED AS AN INDEPENDENT AND IMPORTANT RISK FACTOR OF DEPRESSION. USING SOCIAL DEFEAT STRESS, A CLASSICAL ANIMAL MODEL OF DEPRESSION, OUR PREVIOUS STUDIES FOUND THAT MICE SUBJECTED TO THIS FORM OF STRESS DURING EARLY ADOLESCENCE DISPLAYED COGNITIVE INFLEXIBILITY (CI) IN ADULTHOOD. THIS CHANGE WAS ACCOMPANIED BY A DOWN-REGULATION OF BDNF GENE EXPRESSION IN THE MEDIAL PREFRONTAL CORTEX (MPFC); THIS GENE ENCODES A KEY MOLECULE INVOLVED IN DEPRESSION AND ANTIDEPRESSANT ACTION. IN THE PRESENT PAPER, WE IDENTIFIED EPIGENETIC MODIFICATION OF BDNF AS A POSSIBLE MECHANISM UNDERLYING THE BEHAVIORAL AND MOLECULAR CHANGES. ASS INDUCED A SET OF DEPRESSIVE PHENOTYPES, INCLUDING INCREASED SOCIAL AVOIDANCE AND CI, AS WELL AS REDUCED LEVELS OF TOTAL BDNF AND ISOFORM IV BUT NOT ISOFORM I OR VI TRANSCRIPTS IN THE MPFC. IN PARALLEL WITH CHANGES IN BDNF GENE EXPRESSION, PREVIOUSLY STRESSED ADULT MICE SHOWED INCREASED LEVELS OF DIMETHYLATION OF HISTONE H3 AT LYSINE K9 (H3K9ME2) IMMEDIATELY DOWNSTREAM OF THE BDNF IV PROMOTER. ON THE OTHER HAND, NO DIFFERENCES WERE FOUND IN TRIMETHYLATION OF HISTONE H3 AT LYSINE K4 (H3K4ME3) OR IN ACETYLATION OF HISTONE H3 AT LYSINE K9 (H3K9AC) OR AT K4 (H3K4AC) IN THE BDNF IV PROMOTER. LIKEWISE, NO ALTERATIONS WERE FOUND IN DNA METHYLATION OF THE BDNF IV PROMOTER. ADDITIONALLY, TREATMENT WITH THE CHRONIC ANTIDEPRESSANT TRANYLCYPROMINE REVERSED BDNF EPIGENETIC CHANGES AND RELATED GENE TRANSCRIPTION WHILE ALSO REVERSING CI, BUT NOT SOCIAL AVOIDANCE, IN PREVIOUSLY STRESSED ADULT MICE. THESE RESULTS SUGGEST THAT EPIGENETIC CHANGES TO THE BDNF GENE IN THE MPFC AFTER ADOLESCENT SOCIAL ADVERSITY MAY BE INVOLVED IN THE REGULATION OF COGNITIVE DYSFUNCTION IN DEPRESSION AND ANTIDEPRESSANT ACTION IN ADULTHOOD. 2018 15 6170 34 THE HDAC INHIBITOR SAHA IMPROVES DEPRESSIVE-LIKE BEHAVIOR OF CRTC1-DEFICIENT MICE: POSSIBLE RELEVANCE FOR TREATMENT-RESISTANT DEPRESSION. MAJOR DEPRESSION IS A HIGHLY COMPLEX DISABLING PSYCHIATRIC DISORDER AFFECTING MILLIONS OF PEOPLE WORLDWIDE. DESPITE THE AVAILABILITY OF SEVERAL CLASSES OF ANTIDEPRESSANTS, A SUBSTANTIAL PERCENTAGE OF PATIENTS ARE UNRESPONSIVE TO THESE MEDICATIONS. A BETTER UNDERSTANDING OF THE NEUROBIOLOGY OF DEPRESSION AND THE MECHANISMS UNDERLYING ANTIDEPRESSANT RESPONSE IS THUS CRITICALLY NEEDED. WE PREVIOUSLY REPORTED THAT MICE LACKING CREB-REGULATED TRANSCRIPTION COACTIVATOR 1 (CRTC1) EXHIBIT A DEPRESSIVE-LIKE PHENOTYPE AND A BLUNTED ANTIDEPRESSANT RESPONSE TO THE SELECTIVE SEROTONIN REUPTAKE INHIBITOR FLUOXETINE. IN THIS STUDY, WE SIMILARLY SHOW THAT CRTC1(-/-) MICE ARE RESISTANT TO THE ANTIDEPRESSANT EFFECT OF CHRONIC DESIPRAMINE IN A BEHAVIORAL DESPAIR PARADIGM. SUPPORTING THE BLUNTED RESPONSE TO THIS TRICYCLIC ANTIDEPRESSANT, WE FOUND THAT DESIPRAMINE DOES NOT SIGNIFICANTLY INCREASE THE EXPRESSION OF BDNF AND NR4A1-3 IN THE HIPPOCAMPUS AND PREFRONTAL CORTEX OF CRTC1(-/-) MICE. EPIGENETIC REGULATION OF NEUROPLASTICITY GENE EXPRESSION HAS BEEN ASSOCIATED WITH DEPRESSION AND ANTIDEPRESSANT RESPONSE, AND HISTONE DEACETYLASE (HDAC) INHIBITORS HAVE BEEN SHOWN TO HAVE ANTIDEPRESSANT-LIKE PROPERTIES. HERE, WE SHOW THAT UNLIKE CONVENTIONAL ANTIDEPRESSANTS, CHRONIC SYSTEMIC ADMINISTRATION OF THE HDAC INHIBITOR SAHA PARTIALLY RESCUES THE DEPRESSIVE-LIKE BEHAVIOR OF CRTC1(-/-) MICE. THIS BEHAVIORAL EFFECT IS ACCOMPANIED BY AN INCREASED EXPRESSION OF BDNF, BUT NOT NR4A1-3, IN THE PREFRONTAL CORTEX OF THESE MICE, SUGGESTING THAT THIS EPIGENETIC INTERVENTION RESTORES THE EXPRESSION OF A SUBSET OF GENES BY ACTING DOWNSTREAM OF CRTC1. THESE FINDINGS SUGGEST THAT CRTC1 ALTERATIONS MAY BE ASSOCIATED WITH TREATMENT-RESISTANT DEPRESSION, AND SUPPORT THE INTERESTING POSSIBILITY THAT TARGETING HDACS MAY BE A USEFUL THERAPEUTIC STRATEGY IN ANTIDEPRESSANT DEVELOPMENT. 2016 16 5073 34 PHYSICAL EXERCISE PREVENTED STRESS-INDUCED ANXIETY VIA IMPROVING BRAIN RNA METHYLATION. PHYSICAL EXERCISE IS EFFECTIVE IN ALLEVIATING MENTAL DISORDERS BY IMPROVING SYNAPTIC TRANSMISSION; HOWEVER, THE LINK BETWEEN BODY ENDURANCE TRAINING AND NEURAL ADAPTATION HAS NOT YET BEEN COMPLETELY RESOLVED. IN THIS STUDY, THE AUTHORS INVESTIGATED THE ROLE OF RNA N(6) -METHYLADENOSINE (M6A), AN EMERGING EPIGENETIC MECHANISM, IN IMPROVED RESILIENCE AGAINST CHRONIC RESTRAINT STRESS. A COMBINATION OF MOLECULAR, BEHAVIORAL, AND IN VIVO RECORDING DATA DEMONSTRATES EXERCISE-MEDIATED RESTORATION OF M6A IN THE MOUSE MEDIAL PREFRONTAL CORTEX, WHOSE ACTIVITY IS POTENTIATED TO EXERT ANXIOLYTIC EFFECTS. FURTHERMORE, IT IS REVEALED THAT HEPATIC BIOSYNTHESIS OF ONE METHYL DONOR IS NECESSARY FOR EXERCISE TO IMPROVE BRAIN RNA M6A TO COUNTERACT ENVIRONMENTAL STRESS. THIS NOVEL LIVER-BRAIN AXIS PROVIDES AN EXPLANATION FOR BRAIN NETWORK CHANGES UPON EXERCISE TRAINING AND PROVIDES NEW INSIGHTS INTO THE DIAGNOSIS AND TREATMENT OF ANXIETY DISORDERS. 2022 17 2598 28 EPIGENETICS OF THE DEPRESSED BRAIN: ROLE OF HISTONE ACETYLATION AND METHYLATION. MAJOR DEPRESSIVE DISORDER IS A CHRONIC, REMITTING SYNDROME INVOLVING WIDELY DISTRIBUTED CIRCUITS IN THE BRAIN. STABLE ALTERATIONS IN GENE EXPRESSION THAT CONTRIBUTE TO STRUCTURAL AND FUNCTIONAL CHANGES IN MULTIPLE BRAIN REGIONS ARE IMPLICATED IN THE HETEROGENEITY AND PATHOGENESIS OF THE ILLNESS. EPIGENETIC EVENTS THAT ALTER CHROMATIN STRUCTURE TO REGULATE PROGRAMS OF GENE EXPRESSION HAVE BEEN ASSOCIATED WITH DEPRESSION-RELATED BEHAVIOR, ANTIDEPRESSANT ACTION, AND RESISTANCE TO DEPRESSION OR 'RESILIENCE' IN ANIMAL MODELS, WITH INCREASING EVIDENCE FOR SIMILAR MECHANISMS OCCURRING IN POSTMORTEM BRAINS OF DEPRESSED HUMANS. IN THIS REVIEW, WE DISCUSS RECENT ADVANCES IN OUR UNDERSTANDING OF EPIGENETIC CONTRIBUTIONS TO DEPRESSION, IN PARTICULAR THE ROLE OF HISTONE ACETYLATION AND METHYLATION, WHICH ARE REVEALING NOVEL MECHANISTIC INSIGHT INTO THE SYNDROME THAT MAY AID IN THE DEVELOPMENT OF NOVEL TARGETS FOR DEPRESSION TREATMENT. 2013 18 1740 27 EARLY ENRICHED ENVIRONMENT PREVENTS EPIGENETIC P11 GENE CHANGES INDUCED BY ADULTHOOD STRESS IN MICE. POSITIVE EXPERIENCES IN EARLY LIFE MAY IMPROVE THE CAPACITY TO COPE WITH ADULTHOOD STRESS THROUGH EPIGENETIC MODIFICATION. WE INVESTIGATED WHETHER AN ENRICHED ENVIRONMENT (EE) IN THE POSTNATAL PERIOD AFFECTED EPIGENETIC CHANGES IN THE P11 GENE INDUCED BY CHRONIC UNPREDICTABLE STRESS (CUS) IN ADULT C57BL/6J MICE. EE WAS INTRODUCED FOR 5 WEEKS DURING POSTNATAL DAYS 21-55. AFTER EE, THE MICE WERE SUBJECTED TO CUS FOR 4 WEEKS. EE PREVENTED DEPRESSION-LIKE BEHAVIOR INDUCED BY ADULT CUS. EE PREVENTED A DECREASE IN P11 MRNA AND HISTONE H3 ACETYLATION INDUCED BY CUS, WITH CHANGES IN THE EXPRESSION OF HISTONE DEACETYLASE 5. MOREOVER, EE PREVENTED CHANGES IN TRIMETHYLATION OF HISTONE H3 LYSINE 4 (H3K4) AND H3K27 INDUCED BY CUS. FURTHERMORE, EE HAD POSITIVE EFFECTS ON BEHAVIOR AND EPIGENETIC ALTERATIONS IN ADULT MICE WITHOUT CUS. THESE RESULTS SUGGEST THAT ONE OF THE UNDERLYING MECHANISMS OF EARLY-LIFE EE MAY INVOLVE EPIGENETIC MODIFICATION OF THE HIPPOCAMPAL P11 GENE PROMOTER. 2021 19 432 34 ANTIDEPRESSANT TREATMENT IS ASSOCIATED WITH EPIGENETIC ALTERATIONS IN THE PROMOTER OF P11 IN A GENETIC MODEL OF DEPRESSION. P11 (S100A10) HAS BEEN ASSOCIATED WITH THE PATHOPHYSIOLOGY OF DEPRESSION BOTH IN HUMAN AND RODENT MODELS. DIFFERENT TYPES OF ANTIDEPRESSANTS HAVE BEEN SHOWN TO INCREASE P11 LEVELS IN DISTINCT BRAIN REGIONS AND P11 GENE THERAPY WAS RECENTLY PROVEN EFFECTIVE IN REVERSING DEPRESSIVE-LIKE BEHAVIOURS IN MICE. HOWEVER, THE MOLECULAR MECHANISMS THAT GOVERN P11 GENE EXPRESSION IN RESPONSE TO ANTIDEPRESSANTS STILL REMAIN ELUSIVE. IN THIS STUDY WE REPORT DECREASED LEVELS OF P11, ASSOCIATED WITH HIGHER DNA METHYLATION IN THE PROMOTER REGION, IN THE PREFRONTAL CORTEX OF THE FLINDERS SENSITIVE LINE (FSL) GENETIC RODENT MODEL OF DEPRESSION. THIS HYPERMETHYLATED PATTERN WAS REVERSED TO NORMAL, AS INDICATED BY THE CONTROL LINE, AFTER CHRONIC ADMINISTRATION OF ESCITALOPRAM (A SELECTIVE SEROTONIN REUPTAKE INHIBITOR; SSRI). THE ESCITALOPRAM-INDUCED HYPOMETHYLATION WAS ASSOCIATED WITH BOTH AN INCREASE IN P11 GENE EXPRESSION AND A REDUCTION IN MRNA LEVELS OF TWO DNA METHYLTRANSFERASES THAT HAVE BEEN SHOWN TO MAINTAIN DNA METHYLATION IN ADULT FOREBRAIN NEURONS (DNMT1 AND DNMT3A). IN CONCLUSION, OUR DATA FURTHER SUPPORT A ROLE FOR P11 IN DEPRESSION-LIKE STATES AND SUGGEST THAT THIS GENE IS CONTROLLED BY EPIGENETIC MECHANISMS THAT CAN BE AFFECTED BY ANTIDEPRESSANT TREATMENT. 2012 20 1698 28 DYNAMIC EFFECTS OF EARLY ADOLESCENT STRESS ON DEPRESSIVE-LIKE BEHAVIORS AND EXPRESSION OF CYTOKINES AND JMJD3 IN THE PREFRONTAL CORTEX AND HIPPOCAMPUS OF RATS. AIMS: EXPRESSION OF INFLAMMATORY CYTOKINES IN THE BRAIN HAS BEEN REPORTED TO BE INVOLVED IN THE PATHOGENESIS OF AND SUSCEPTIBILITY TO DEPRESSION. JUMONJI DOMAIN-CONTAINING 3 (JMJD3), WHICH IS A HISTONE H3 LYSINE 27 (H3K27) DEMETHYLASE AND CAN REGULATE MICROGLIAL ACTIVATION, HAS BEEN REGARDED AS A CRUCIAL ELEMENT IN THE EXPRESSION OF INFLAMMATORY CYTOKINES. FURTHERMORE, RECENT STUDIES HIGHLIGHTED THE FACT THAT LIPOPOLYSACCHARIDES INDUCE DEPRESSIVE-LIKE BEHAVIORS AND HIGHER JMJD3 EXPRESSION AND LOWER H3K27ME3 EXPRESSION IN THE BRAIN. HOWEVER, WHETHER THE PROCESS OF JMJD3 MEDIATING INFLAMMATORY CYTOKINES WAS INVOLVED IN THE SUSCEPTIBILITY TO DEPRESSION DUE TO EARLY-LIFE STRESS REMAINED ELUSIVE. METHODS: RATS EXPOSED TO CHRONIC UNPREDICTABLE MILD STRESS (CUMS) IN ADOLESCENCE WERE USED IN ORDER TO DETECT DYNAMIC ALTERATIONS IN DEPRESSIVE-LIKE BEHAVIORS AND EXPRESSION OF CYTOKINES, JMJD3, AND H3K27ME3 IN THE PREFRONTAL CORTEX AND HIPPOCAMPUS. MOREOVER, MINOCYCLINE, AN INHIBITOR OF MICROGLIAL ACTIVATION, WAS EMPLOYED TO OBSERVE THE PROTECTIVE EFFECTS. RESULTS: OUR RESULTS SHOWED THAT CUMS DURING THE ADOLESCENT PERIOD INDUCED DEPRESSIVE-LIKE BEHAVIORS, OVER-EXPRESSION OF CYTOKINES, AND INCREASED JMJD3 AND DECREASED H3K27ME3 EXPRESSION IN THE PREFRONTAL CORTEX AND HIPPOCAMPUS OF BOTH ADOLESCENT AND ADULT RATS. HOWEVER, MINOCYCLINE RELIEVED ALL THE ALTERATIONS. CONCLUSION: THE STUDY REVEALED THAT JMJD3 MIGHT BE INVOLVED IN THE SUSCEPTIBILITY TO DEPRESSIVE-LIKE BEHAVIORS BY MODULATING H3K27ME3 AND PRO-INFLAMMATORY CYTOKINE EXPRESSION IN THE PREFRONTAL CORTEX AND HIPPOCAMPUS OF RATS THAT HAD BEEN STRESSED DURING EARLY ADOLESCENCE. 2018