1 341 95 ALTERATIONS IN SPERM-INHERITED NONCODING RNAS ASSOCIATE WITH LATE-TERM FETAL GROWTH RESTRICTION INDUCED BY PRECONCEPTION PATERNAL ALCOHOL USE. USING A MOUSE MODEL, OUR GROUP RECENTLY DESCRIBED AN ASSOCIATION BETWEEN CHRONIC PATERNAL ALCOHOL USE PRIOR TO CONCEPTION AND DEFICITS IN OFFSPRING GROWTH. HERE, WE SOUGHT TO DETERMINE THE IMPACT OF ALCOHOL EXPOSURE ON MALE REPRODUCTIVE PHYSIOLOGY AND THE ASSOCIATION OF SPERM-INHERITED NONCODING RNAS WITH THE TRANSMISSION OF THE OBSERVED GROWTH DEFECTS. ALCOHOL EXPOSURE DID NOT APPRECIABLY ALTER MALE REPRODUCTIVE PHYSIOLOGY OR FERTILITY. HOWEVER, CHRONIC ALCOHOL USE REPRODUCIBLY INDUCED LATE-TERM FETAL GROWTH RESTRICTION IN THE OFFSPRING, WHICH CORRELATED WITH A SHIFT IN THE PROPORTIONAL RATIO OF TRANSFER RNA-DERIVED SMALL RNAS TO PIWI-INTERACTING RNAS, AS WELL AS ALTERED ENRICHMENT OF MICRORNAS MIR21, MIR30, AND MIR142 IN ALCOHOL-EXPOSED SPERM. ALTHOUGH OUR DATASET SHARE SIMILARITIES TO PRIOR WORKS EXAMINING THE IMPACT OF PATERNAL STRESS ON OFFSPRING PHENOTYPE, WE WERE UNABLE TO IDENTIFY ANY CHANGES IN PLASMA CORTICOSTERONE, INDICATING ALCOHOL MAY ALTER SPERM-INHERITED NONCODING RNAS THROUGH DISTINCT MECHANISMS. 2019 2 1609 38 DNA METHYLATION-INDEPENDENT GROWTH RESTRICTION AND ALTERED DEVELOPMENTAL PROGRAMMING IN A MOUSE MODEL OF PRECONCEPTION MALE ALCOHOL EXPOSURE. THE PRECONCEPTION ENVIRONMENT IS A SIGNIFICANT MODIFIER OF DYSGENESIS AND THE DEVELOPMENT OF ENVIRONMENTALLY-INDUCED DISEASE. TO DATE, FETAL ALCOHOL SPECTRUM DISORDERS (FASDS) HAVE BEEN EXCLUSIVELY ASSOCIATED WITH MATERNAL EXPOSURES, YET EMERGING EVIDENCE SUGGESTS MALE-INHERITED ALTERATIONS IN THE DEVELOPMENTAL PROGRAM OF SPERM MAY BE RELEVANT TO THE GROWTH-RESTRICTION PHENOTYPES OF THIS CONDITION. USING A MOUSE MODEL OF VOLUNTARY CONSUMPTION, WE FIND CHRONIC PRECONCEPTION MALE ETHANOL EXPOSURE ASSOCIATES WITH FETAL GROWTH RESTRICTION, DECREASED PLACENTAL EFFICIENCY, ABNORMALITIES IN CHOLESTEROL TRAFFICKING, SEX-SPECIFIC ALTERATIONS IN THE GENETIC PATHWAYS REGULATING HEPATIC FIBROSIS, AND DISRUPTIONS IN THE REGULATION OF IMPRINTED GENES. ALTERATIONS IN THE DNA METHYLATION PROFILES OF IMPRINTED LOCI HAVE BEEN IDENTIFIED IN CLINICAL STUDIES OF ALCOHOLIC SPERM, SUGGESTING THE LEGACY OF PATERNAL DRINKING MAY TRANSMIT VIA HERITABLE DISRUPTIONS IN THE REGULATION OF IMPRINTED GENES. HOWEVER, THE CAPACITY OF SPERM-INHERITED CHANGES IN DNA METHYLATION TO BROADLY TRANSMIT ENVIRONMENTALLY-INDUCED PHENOTYPES REMAINS UNCONFIRMED. USING BISULPHITE MUTAGENESIS AND SECOND-GENERATION DEEP SEQUENCING, WE FIND NO EVIDENCE TO SUGGEST THAT THESE PHENOTYPES OR ANY OF THE ASSOCIATED TRANSCRIPTIONAL CHANGES ARE LINKED TO ALTERATIONS IN THE SPERM-INHERITED DNA METHYLATION PROFILE. THESE OBSERVATIONS ARE CONSISTENT WITH RECENT STUDIES EXAMINING THE MALE TRANSMISSION OF DIET-INDUCED PHENOTYPES AND EMPHASIZE THE IMPORTANCE OF EPIGENETIC MECHANISMS OF PATERNAL INHERITANCE BEYOND DNA METHYLATION. THIS STUDY CHALLENGES THE SINGULAR IMPORTANCE OF MATERNAL ALCOHOL EXPOSURES AND SUGGESTS PATERNAL ALCOHOL ABUSE IS A SIGNIFICANT, YET OVERLOOKED EPIDEMIOLOGICAL FACTOR COMPLICIT IN THE GENESIS OF ALCOHOL-INDUCED GROWTH DEFECTS, AND MAY PROVIDE MECHANISTIC INSIGHT INTO THE FAILURE OF FASD CHILDREN TO THRIVE POSTNATALLY. 2017 3 3215 36 HEAVY CHRONIC INTERMITTENT ETHANOL EXPOSURE ALTERS SMALL NONCODING RNAS IN MOUSE SPERM AND EPIDIDYMOSOMES. WHILE THE RISKS OF MATERNAL ALCOHOL ABUSE DURING PREGNANCY ARE WELL-ESTABLISHED, SEVERAL PRECLINICAL STUDIES SUGGEST THAT CHRONIC PRECONCEPTION ALCOHOL CONSUMPTION BY EITHER PARENT MAY ALSO HAVE SIGNIFICANCE CONSEQUENCES FOR OFFSPRING HEALTH AND DEVELOPMENT. NOTABLY, SINCE ISOGENIC MALE MICE USED IN THESE STUDIES ARE NOT INVOLVED IN GESTATION OR REARING OF OFFSPRING, THE CROSS-GENERATIONAL EFFECTS OF PATERNAL ALCOHOL EXPOSURE SUGGEST A GERMLINE-BASED EPIGENETIC MECHANISM. MANY RECENT STUDIES HAVE DEMONSTRATED THAT THE EFFECTS OF PATERNAL ENVIRONMENTAL EXPOSURES SUCH AS STRESS OR MALNUTRITION CAN BE TRANSMITTED TO THE NEXT GENERATION VIA ALTERATIONS TO SMALL NONCODING RNAS IN SPERM. THEREFORE, WE USED HIGH THROUGHPUT SEQUENCING TO EXAMINE THE EFFECT OF PRECONCEPTION ETHANOL ON SMALL NONCODING RNAS IN SPERM. WE FOUND THAT CHRONIC INTERMITTENT ETHANOL EXPOSURE ALTERED SEVERAL SMALL NONCODING RNAS FROM THREE OF THE MAJOR SMALL RNA CLASSES IN SPERM, TRNA-DERIVED SMALL RNA (TDR), MITOCHONDRIAL SMALL RNA, AND MICRORNA. SIX OF THE ETHANOL-RESPONSIVE SMALL NONCODING RNAS WERE EVALUATED WITH RT-QPCR ON A SEPARATE COHORT OF MICE AND FIVE OF THE SIX WERE CONFIRMED TO BE ALTERED BY CHRONIC ETHANOL EXPOSURE, SUPPORTING THE VALIDITY OF THE SEQUENCING RESULTS. IN ADDITION TO ALTERED SPERM RNA ABUNDANCE, CHRONIC ETHANOL EXPOSURE AFFECTED POST-TRANSCRIPTIONAL MODIFICATIONS TO SPERM SMALL NONCODING RNAS, INCREASING TWO NUCLEOSIDE MODIFICATIONS PREVIOUSLY IDENTIFIED IN MITOCHONDRIAL TRNA. FURTHERMORE, WE FOUND THAT CHRONIC ETHANOL REDUCED EPIDIDYMAL EXPRESSION OF A TRNA METHYLTRANSFERASE, NSUN2, KNOWN TO DIRECTLY REGULATE TDR BIOGENESIS. FINALLY, ETHANOL-RESPONSIVE SPERM TDR ARE SIMILARLY ALTERED IN EXTRACELLULAR VESICLES OF THE EPIDIDYMIS (I.E., EPIDIDYMOSOMES), SUPPORTING THE HYPOTHESIS THAT ALTERATIONS TO SPERM TDR EMERGE IN THE EPIDIDYMIS AND THAT EPIDIDYMOSOMES ARE THE PRIMARY SOURCE OF SMALL NONCODING RNAS IN SPERM. THESE RESULTS ADD CHRONIC ETHANOL TO THE GROWING LIST OF PATERNAL EXPOSURES THAT CAN AFFECT SMALL NONCODING RNA ABUNDANCE AND NUCLEOSIDE MODIFICATIONS IN SPERM. AS SMALL NONCODING RNAS IN SPERM HAVE BEEN SHOWN TO CAUSALLY INDUCE HERITABLE PHENOTYPES IN OFFSPRING, ADDITIONAL RESEARCH IS WARRANTED TO UNDERSTAND THE POTENTIAL EFFECTS OF ETHANOL-RESPONSIVE SPERM SMALL NONCODING RNAS ON OFFSPRING HEALTH AND DEVELOPMENT. 2018 4 6008 35 THE ANTI-INFLAMMATORY AGENT 5-ASA REDUCES THE LEVEL OF SPECIFIC TSRNAS IN SPERM CELLS OF HIGH-FAT FED C57BL/6J MOUSE SIRES AND IMPROVES GLUCOSE TOLERANCE IN FEMALE OFFSPRING. INTRODUCTION: THE PREVALENCE OF OBESITY AND ASSOCIATED COMORBIDITIES HAVE INCREASED TO EPIDEMIC PROPORTIONS GLOBALLY. PATERNAL OBESITY IS AN INDEPENDENT RISK FACTOR FOR DEVELOPING OBESITY AND TYPE 2 DIABETES IN THE FOLLOWING GENERATION, AND GROWING EVIDENCE SUGGESTS EPIGENETIC INHERITANCE AS A MECHANISM FOR THIS PREDISPOSITION. HOW AND WHY OBESITY INDUCES EPIGENETIC CHANGES IN SPERM CELLS REMAIN TO BE CLARIFIED IN DETAIL. YET, RECENT STUDIES SHOW THAT ALTERATIONS IN SPERM CONTENT OF TRANSFER RNA-DERIVED SMALL RNAS (TSRNAS) CAN TRANSMIT THE EFFECTS OF PATERNAL OBESITY TO OFFSPRING. OBESITY IS CLOSELY ASSOCIATED WITH LOW-GRADE CHRONIC INFLAMMATION. THUS, WE EVALUATED WHETHER THE ANTI-INFLAMMATORY AGENT 5-AMINOSALICYLIC ACID (5-ASA) COULD INTERVENE IN THE TRANSMISSION OF EPIGENETIC INHERITANCE OF PATERNAL OBESITY BY REDUCING THE INFLAMMATORY STATE IN OBESE FATHERS. METHODS: MALE C57BL/6JBOMTAC MICE WERE EITHER FED A HIGH-FAT DIET OR A HIGH-FAT DIET WITH 5-ASA FOR TEN WEEKS BEFORE MATING. THE OFFSPRING METABOLIC PHENOTYPE WAS EVALUATED, AND SPERMATOZOA FROM SIRES WERE ISOLATED FOR ASSESSMENT OF SPECIFIC TSRNAS LEVELS. RESULTS: 5-ASA INTERVENTION REDUCED THE LEVELS OF GLU-CTC TSRNAS IN SPERM CELLS AND IMPROVED GLUCOSE TOLERANCE IN FEMALE OFFSPRING FED A CHOW DIET. PATERNAL HIGH-FAT DIET-INDUCED OBESITY PER SE HAD ONLY A MODERATE IMPACT ON THE METABOLIC PHENOTYPE OF BOTH MALE AND FEMALE OFFSPRING IN OUR SETTING. CONCLUSION: THE RESULTS INDICATE THAT THE LOW-GRADE INFLAMMATORY RESPONSE ASSOCIATED WITH OBESITY MAY BE AN IMPORTANT FACTOR IN EPIGENETIC INHERITANCE OF PATERNAL OBESITY. 2023 5 6594 21 TUMOR-AUGMENTING EFFECTS OF GESTATIONAL ARSENIC EXPOSURE ON F1 AND F2 IN MICE. THE CONSEQUENCES OF EARLY-LIFE EXPOSURE TO CHEMICALS IN THE ENVIRONMENT ARE EMERGING CONCERNS. CHRONIC EXPOSURE TO NATURALLY OCCURRING INORGANIC ARSENIC HAS BEEN KNOWN TO CAUSE VARIOUS ADVERSE HEALTH EFFECTS, INCLUDING CANCERS, IN HUMANS. ON THE OTHER HAND, ANIMAL STUDIES BY DR. M. WAALKES' GROUP REPORTED THAT ARSENITE EXPOSURE OF PREGNANT F0 FEMALES, ONLY FROM GESTATIONAL DAY 8 TO 18, INCREASED HEPATIC TUMORS IN THE F1 (ARSENITE-F1) MALES OF C3H MICE, WHOSE MALES TEND TO DEVELOP SPONTANEOUS HEPATIC TUMORS LATER IN LIFE. SINCE THIS MICE MODEL ILLUMINATED NOVEL UNIDENTIFIED CONSEQUENCES OF ARSENIC EXPOSURE, WE WISHED TO FURTHER INVESTIGATE THE BACKGROUND MECHANISMS. IN THE SAME EXPERIMENTAL MODEL, WE IDENTIFIED A VARIETY OF FACTORS THAT WERE AFFECTED BY GESTATIONAL ARSENIC EXPOSURE, INCLUDING EPIGENETIC AND GENETIC CHANGES, AS POSSIBLE CONSTITUENTS OF MULTIPLE STEPS OF LATE-ONSET HEPATIC TUMOR AUGMENTATION IN ARSENITE-F1 MALES. FURTHERMORE, OUR STUDY DISCOVERED THAT THE F2 MALES BORN TO ARSENITE-F1 MALES DEVELOPED HEPATIC TUMORS AT A SIGNIFICANTLY HIGHER RATE THAN THE CONTROL F2 MALES. THE RESULTS IMPLY THAT THE TUMOR AUGMENTING EFFECT IS INHERITED BY ARSENITE-F2 MALES THROUGH THE SPERM OF ARSENITE-F1. IN THIS ARTICLE, WE SUMMARIZED OUR STUDIES ON THE CONSEQUENCES OF GESTATIONAL ARSENITE EXPOSURE IN F1 AND F2 MICE TO DISCUSS NOVEL ASPECTS OF BIOLOGICAL EFFECTS OF GESTATIONAL ARSENIC EXPOSURE. 2017 6 3714 27 INHERITANCE OF SOCIAL DOMINANCE IS ASSOCIATED WITH GLOBAL SPERM DNA METHYLATION IN INBRED MALE MICE. DOMINANCE RELATIONSHIPS BETWEEN MALES AND THEIR ASSOCIATED TRAITS ARE USUALLY HERITABLE AND HAVE IMPLICATIONS FOR SEXUAL SELECTION IN ANIMALS. IN PARTICULAR, SOCIAL DOMINANCE AND ITS RELATED MALE PHEROMONES ARE HERITABLE IN INBRED MICE; THUS, WE WONDERED WHETHER EPIGENETIC CHANGES DUE TO ALTERED LEVELS OF DNA METHYLATION DETERMINE INHERITANCE. HERE, WE USED C57BL/6 MALE MICE TO ESTABLISH A SOCIAL DOMINANCE-SUBORDINATION RELATIONSHIP THROUGH CHRONIC DYADIC ENCOUNTERS, AND THIS RELATIONSHIP AND PHEROMONE COVARIATION OCCURRED IN THEIR OFFSPRING, INDICATIVE OF HERITABILITY. THROUGH TRANSCRIPTOME SEQUENCING AND WHOLE-GENOME DNA METHYLATION PROFILING OF THE SPERM OF BOTH GENERATIONS, WE FOUND THAT DIFFERENTIAL METHYLATION OF MANY GENES WAS INDUCED BY SOCIAL DOMINANCE-SUBORDINATION IN SIRES AND COULD BE PASSED ON TO THE OFFSPRING. THESE METHYLATED GENES WERE MAINLY RELATED TO GROWTH AND DEVELOPMENT PROCESSES, NEURODEVELOPMENT, AND CELLULAR TRANSPORTATION. THE EXPRESSION OF THE GENES WITH SIMILAR FUNCTIONS IN WHOLE-GENOME METHYLATION/BISULFITE SEQUENCING WAS ALSO DIFFERENTIATED BY SOCIAL DOMINANCE-SUBORDINATION, AS REVEALED BY RNA-SEQ. IN PARTICULAR, THE GENE DENND1A, WHICH REGULATES NEURAL SIGNALING, WAS DIFFERENTIALLY METHYLATED AND EXPRESSED IN THE SPERM AND MEDIAL PREFRONTAL CORTEX IN PAIRED MALES BEFORE AND AFTER DOMINANCE-SUBORDINATION ESTABLISHMENT, SUGGESTING THE POTENTIAL EPIGENETIC CONTROL AND INHERITANCE OF SOCIAL DOMINANCE-RELATED AGGRESSION. WE SUGGEST THAT SOCIAL DOMINANCE MIGHT BE PASSED ON TO MALE OFFSPRING THROUGH SPERM DNA METHYLATION AND THAT THE DIFFERENCES COULD POTENTIALLY AFFECT MALE COMPETITION IN OFFSPRING BY AFFECTING THE DEVELOPMENT OF THE NERVOUS SYSTEM. 2023 7 5773 38 SPERM MICRORNA CONTENT IS ALTERED IN A MOUSE MODEL OF MALE OBESITY, BUT THE SAME SUITE OF MICRORNAS ARE NOT ALTERED IN OFFSPRING'S SPERM. THE PREVALENCE OF OBESITY IS INCREASING WORLDWIDE AND HAS TRIPLED IN MEN OF REPRODUCTIVE AGE SINCE THE 1970S. CONCERNINGLY, OBESITY IS NOT ONLY COMORBID WITH OTHER CHRONIC DISEASES, BUT THERE IS MOUNTING EVIDENCE THAT IT INCREASES THE NON-COMMUNICABLE DISEASE LOAD IN THEIR CHILDREN (EG MORTALITY, OBESITY, AUTISM). ANIMAL STUDIES HAVE DEMONSTRATED THAT PATERNAL OBESITY INCREASES THE RISK OF METABOLIC (EG GLUCOSE METABOLISM DEFECTS, OBESITY) AND REPRODUCTIVE DISORDERS IN OFFSPRING. EPIGENETIC CHANGES WITHIN SPERM ARE CLEAR MECHANISTIC CANDIDATES THAT ARE ASSOCIATED WITH BOTH CHANGES TO THE FATHER'S ENVIRONMENT AND OFFSPRING PHENOTYPE. SPECIFICALLY THERE IS EMERGING EVIDENCE THAT A FATHER'S SPERM MICRORNA CONTENT BOTH RESPONDS TO PATERNAL ENVIRONMENTAL CUES AND ALTERS THE GENE EXPRESSION PROFILE AND SUBSEQUENT DEVELOPMENT OF THE EARLY EMBRYO. WE USED A MOUSE MODEL OF HIGH FAT DIET (HFD) INDUCED OBESITY TO INVESTIGATE WHETHER MALE OBESITY COULD MODULATE SPERM MICRORNA CONTENT. WE ALSO INVESTIGATED WHETHER THIS ALTERATION TO A FATHER'S SPERM MICRORNA CONTENT LEAD TO A SIMILAR CHANGE IN THE SPERM OF MALE OFFSPRING. OUR INVESTIGATIONS WERE INITIALLY GUIDED BY A TAQMAN PCR ARRAY, WHICH INDICATED THE DIFFERENTIAL ABUNDANCE OF 28 SPERM BORNE MICRORNAS IN HFD MICE. QPCR CONFIRMATION IN A MUCH LARGER COHORT OF FOUNDER MALES DEMONSTRATED THAT 13 OF THESE MICRORNAS WERE DIFFERENTIALLY ABUNDANT (11 UP-REGULATED; 2 DOWN-REGULATED) DUE TO HFD FEEDING. DESPITE METABOLIC AND REPRODUCTIVE PHENOTYPES ALSO BEING OBSERVED IN GRAND-OFFSPRING FATHERED VIA THE MALE OFFSPRING LINEAGE, THERE WAS NO EVIDENCE THAT ANY OF THE 13 MICRORNAS WERE ALSO DYSREGULATED IN MALE OFFSPRING SPERM. THIS WAS PRESUMABLY DUE TO THE VARIATION SEEN WITHIN BOTH GROUPS OF OFFSPRING AND SUGGESTS OTHER MECHANISMS MIGHT ACT BETWEEN OFFSPRING AND GRAND-OFFSPRING. THUS 13 SPERM BORNE MICRORNAS ARE MODULATED BY A FATHER'S HFD AND THE PRESUMED TRANSFER OF THIS ALTERED MICRORNA PAYLOAD TO THE EMBRYO AT FERTILISATION POTENTIALLY ACTS TO ALTER THE EMBRYONIC MOLECULAR MAKEUP POST-FERTILISATION, ALTERING ITS GROWTH TRAJECTORY, ULTIMATELY AFFECTING ADULT OFFSPRING PHENOTYPE AND MAY CONTRIBUTE TO PATERNAL PROGRAMMING. 2016 8 909 31 CHRONIC EXPOSURE TO ETHANOL IN MALE MICE MAY BE ASSOCIATED WITH HEARING LOSS IN OFFSPRING. ALTHOUGH PATERNAL ETHANOL (ETOH) ABUSE HAS BEEN SHOWN TO AFFECT THE GROWTH AND BEHAVIOR OF OFFSPRING, THE EXACT MOLECULAR AND MECHANISTIC BASIS REMAINS LARGELY UNCLEAR. METHYLATION ALTERATIONS IN IMPRINTED GENES MAY BE RELATED TO WELL-DOCUMENTED TERATOGENIC EFFECTS OF ETHANOL. HERE WE SHOW THAT CHRONIC PATERNAL ETHANOL EXPOSURE INCREASES THE SUSCEPTIBILITY TO ABNORMAL BEHAVIOR IN OFFSPRING THROUGH MALE GAME EPIGENETIC ALTERATION. IN OUR STUDY, DIFFERENT DOSES OF ETHANOL (0, 1.1, 3.3 G KG-1 ) WERE ADMINISTERED INTRA-GASTRICALLY TO MALE MICE AND DECREASED SPERM MOTILITY WAS FOUND IN THE HIGHEST ETHANOL-EXPOSED GROUP COMPARED WITH THE CONTROLS. DATA ALSO SHOWED A DOSE-DEPENDENT INCREASE IN DEAF MICE OF THE PATERNALLY ETHANOL-EXPOSED GROUPS. THE METHYLATION OF H19, PEG3, NDN AND SNRPN WAS ASSESSED IN PATERNAL SPERMATOZOA AND IN THE CEREBRAL CORTICES OF DEAF MICE. ETOH AFFECTED METHYLATION OF PEG3 (CPG 3, 7 AND 9) IN PATERNAL SPERMATOZOA AND IN THE CEREBRAL CORTICES OF DEAF MICE, BUT THE LEVEL OF MRNA EXPRESSION DID NOT CHANGE, SUGGESTING THAT OTHER GENE REGULATION MAY BE INVOLVED IN THESE PROCESSES. OVERALL, CHRONIC PATERNAL ETHANOL EXPOSURE COULD ALTER THE METHYLATION OF IMPRINTED GENES IN SIRE SPERMATOZOA THAT COULD ALSO BE PASSED ON TO OFFSPRING, GIVING RISE TO DEVELOPMENTAL DISORDERS. OUR RESULTS PROVIDE POSSIBLE EPIGENETIC EVIDENCE FOR A PATERNAL ETHANOL EXPOSURE CONTRIBUTION TO FETAL ALCOHOL SYNDROME (FAS). 2015 9 2471 21 EPIGENETIC TRANSGENERATIONAL INHERITANCE OF ALTERED STRESS RESPONSES. ANCESTRAL ENVIRONMENTAL EXPOSURES HAVE PREVIOUSLY BEEN SHOWN TO PROMOTE EPIGENETIC TRANSGENERATIONAL INHERITANCE AND INFLUENCE ALL ASPECTS OF AN INDIVIDUAL'S LIFE HISTORY. IN ADDITION, PROXIMATE LIFE EVENTS SUCH AS CHRONIC STRESS HAVE DOCUMENTED EFFECTS ON THE DEVELOPMENT OF PHYSIOLOGICAL, NEURAL, AND BEHAVIORAL PHENOTYPES IN ADULTHOOD. WE USED A SYSTEMS BIOLOGY APPROACH TO INVESTIGATE IN MALE RATS THE INTERACTION OF THE ANCESTRAL MODIFICATIONS CARRIED TRANSGENERATIONALLY IN THE GERM LINE AND THE PROXIMATE MODIFICATIONS INVOLVING CHRONIC RESTRAINT STRESS DURING ADOLESCENCE. WE FIND THAT A SINGLE EXPOSURE TO A COMMON-USE FUNGICIDE (VINCLOZOLIN) THREE GENERATIONS REMOVED ALTERS THE PHYSIOLOGY, BEHAVIOR, METABOLIC ACTIVITY, AND TRANSCRIPTOME IN DISCRETE BRAIN NUCLEI IN DESCENDANT MALES, CAUSING THEM TO RESPOND DIFFERENTLY TO CHRONIC RESTRAINT STRESS. THIS ALTERATION OF BASELINE BRAIN DEVELOPMENT PROMOTES A CHANGE IN NEURAL GENOMIC ACTIVITY THAT CORRELATES WITH CHANGES IN PHYSIOLOGY AND BEHAVIOR, REVEALING THE INTERACTION OF GENETICS, ENVIRONMENT, AND EPIGENETIC TRANSGENERATIONAL INHERITANCE IN THE SHAPING OF THE ADULT PHENOTYPE. THIS IS AN IMPORTANT DEMONSTRATION IN AN ANIMAL THAT ANCESTRAL EXPOSURE TO AN ENVIRONMENTAL COMPOUND MODIFIES HOW DESCENDANTS OF THESE PROGENITOR INDIVIDUALS PERCEIVE AND RESPOND TO A STRESS CHALLENGE EXPERIENCED DURING THEIR OWN LIFE HISTORY. 2012 10 5189 27 PRENATAL ARSENIC EXPOSURE INDUCES IMMUNOMETABOLIC ALTERATION AND RENAL INJURY IN RATS. ARSENIC (AS) EXPOSURE IS PROGRESSIVELY ASSOCIATED WITH CHRONIC KIDNEY DISEASE (CKD), A LEADING PUBLIC HEALTH CONCERN PRESENT WORLDWIDE. THE ADVERSE EFFECT OF AS EXPOSURE ON THE KIDNEYS OF PEOPLE LIVING IN AS ENDEMIC AREAS HAVE NOT BEEN EXTENSIVELY STUDIED. FURTHERMORE, THE IMPACT OF ONLY PRENATAL EXPOSURE TO AS ON THE PROGRESSION OF CKD ALSO HAS NOT BEEN FULLY CHARACTERIZED. IN THE PRESENT STUDY, WE EXAMINED THE EFFECT OF PRENATAL EXPOSURE TO LOW DOSES OF AS 0.04 AND 0.4 MG/KG BODY WEIGHT (0.04 AND 0.4 PPM, RESPECTIVELY) ON THE PROGRESSION OF CKD IN MALE OFFSPRING USING A WISTAR RAT MODEL. INTERESTINGLY, ONLY PRENATAL AS EXPOSURE WAS SUFFICIENT TO ELEVATE THE EXPRESSION OF PROFIBROTIC (TGF-BETA1) AND PROINFLAMMATORY (IL-1ALPHA, MIP-2ALPHA, RANTES, AND TNF-ALPHA) CYTOKINES AT 2-DAY, 12- AND 38-WEEK TIME POINTS IN THE EXPOSED PROGENY. FURTHER, ALTERATION IN ADIPOGENIC FACTORS (GHRELIN, LEPTIN, AND GLUCAGON) WAS ALSO OBSERVED IN 12- AND 38-WEEK OLD MALE OFFSPRING PRENATALLY EXPOSED TO AS. AN ALTERED LEVEL OF THESE FACTORS COINCIDES WITH IMPAIRED GLUCOSE METABOLISM AND HOMEOSTASIS ACCOMPANIED BY PROGRESSIVE KIDNEY DAMAGE. WE OBSERVED A SIGNIFICANT INCREASE IN THE DEPOSITION OF EXTRACELLULAR MATRIX COMPONENTS AND GLOMERULAR AND TUBULAR DAMAGE IN THE KIDNEYS OF 38-WEEK-OLD MALE OFFSPRING PRENATALLY EXPOSED TO AS. FURTHERMORE, THE OVEREXPRESSION OF TGF-BETA1 IN KIDNEYS CORRESPONDS WITH HYPERMETHYLATION OF THE TGF-BETA1 GENE-BODY, INDICATING A POSSIBLE INVOLVEMENT OF PRENATAL AS EXPOSURE-DRIVEN EPIGENETIC MODULATIONS OF TGF-BETA1 EXPRESSION. OUR STUDY PROVIDES EVIDENCE THAT PRENATAL AS EXPOSURE TO MALES CAN ADVERSELY AFFECT THE IMMUNOMETABOLISM OF OFFSPRING WHICH CAN PROMOTE KIDNEY DAMAGE LATER IN LIFE. 2022 11 4528 17 MULTIGENERATIONAL EFFECTS OF CADMIUM ON THE LIFESPAN AND FERTILITY OF DROSOPHILA MELANOGASTER. ALTHOUGH THE DAMAGE AND TOLERANCE MECHANISMS OF CD STRESS ARE KNOWN, THE DATA ON GENETIC RISK ARE LIMITED. THE AIM OF THIS STUDY WAS TO ASSESS THE CHRONIC TOXICITY OF CD, GENETIC RESPONSES, AND MULTIGENERATIONAL EFFECTS IN FIVE GENERATIONS OF DROSOPHILA MELANOGASTER. FOR EACH GENERATION, LIFESPAN AND FERTILITY WERE STATISTICALLY ANALYSED AND THE EXPRESSION OF APOPTOSIS- (P53 AND CASPASE-3) AND EPIGENESIS-RELATED (DDNMT2 AND DMBD2/3) GENES WAS EXAMINED. LIFESPAN AND FERTILITY SIGNIFICANTLY DECLINED UNDER CD STRESS AND THESE EFFECTS WERE MAINTAINED FOR TWO GENERATIONS AND ONE GENERATION, RESPECTIVELY, WHEN CD STRESS WAS REMOVED. THE EXPRESSION OF P53 AND CASPASE-3 WAS SIGNIFICANTLY UP-REGULATED AFTER EXPOSURE, SUGGESTING THAT APOPTOSIS CONTRIBUTES TO THE RESISTANCE MECHANISM. THEIR ALTERED EXPRESSION WAS RETAINED FOR TWO GENERATIONS. FURTHERMORE, HIGH EXPRESSION OF DDNMT2 AND DMBD2/3 ACCOMPANIED CD EXPOSURE, WHICH WAS PASSED ON TO THREE GENERATIONS, SUGGESTING THAT GENETIC MODIFICATIONS IN APOPTOSIS-RELATED GENES ARE CARRIED TO THE OFFSPRING THROUGH EPIGENETIC REGULATION. 2020 12 5188 32 PRENATAL ALCOHOL EXPOSURE ALTERS EXPRESSION OF NEUROGENESIS-RELATED GENES IN AN EX VIVO CELL CULTURE MODEL. PRENATAL ALCOHOL EXPOSURE CAN LEAD TO LONG-LASTING CHANGES IN FUNCTIONAL AND GENETIC PROGRAMS OF THE BRAIN, WHICH MAY UNDERLIE BEHAVIORAL ALTERATIONS SEEN IN FETAL ALCOHOL SPECTRUM DISORDER (FASD). ABERRANT FETAL PROGRAMMING DURING GESTATIONAL ALCOHOL EXPOSURE IS A POSSIBLE MECHANISM BY WHICH ALCOHOL IMPARTS TERATOGENIC EFFECTS ON THE BRAIN; HOWEVER, CURRENT METHODS USED TO INVESTIGATE THE EFFECTS OF ALCOHOL ON DEVELOPMENT OFTEN RELY ON EITHER DIRECT APPLICATION OF ALCOHOL IN VITRO OR ACUTE HIGH DOSES IN VIVO. IN THIS STUDY, WE USED OUR ESTABLISHED MODERATE PRENATAL ALCOHOL EXPOSURE (PAE) MODEL, RESULTING IN MATERNAL BLOOD ALCOHOL CONTENT OF APPROXIMATELY 20 MM, AND SUBSEQUENT EX VIVO CELL CULTURE TO ASSESS EXPRESSION OF GENES RELATED TO NEUROGENESIS. PROLIFERATING AND DIFFERENTIATING NEURAL PROGENITOR CELL CULTURE CONDITIONS WERE ESTABLISHED FROM TELENCEPHALIC TISSUE DERIVED FROM EMBRYONIC DAY (E) 15-17 TISSUE EXPOSED TO ALCOHOL VIA MATERNAL DRINKING THROUGHOUT PREGNANCY. GENE EXPRESSION ANALYSIS ON MRNA DERIVED IN VITRO WAS PERFORMED USING A MICROARRAY, AND QUANTITATIVE PCR WAS CONDUCTED FOR GENES TO VALIDATE THE MICROARRAY. STUDENT'S T TESTS WERE PERFORMED FOR STATISTICAL COMPARISON OF EACH EXPOSURE UNDER EACH CULTURE CONDITION USING A 95% CONFIDENCE INTERVAL. ELEVEN PERCENT OF GENES ON THE ARRAY HAD SIGNIFICANTLY ALTERED MRNA EXPRESSION IN THE PRENATAL ALCOHOL-EXPOSED NEURAL PROGENITOR CULTURE UNDER PROLIFERATING CONDITIONS. THESE INCLUDE REDUCED EXPRESSION OF ADORA2A, CXCL1, DLG4, HES1, NPTX1, AND VEGFA AND INCREASED EXPRESSION OF FGF13, NDN, AND SOX3; BIOINFORMATICS ANALYSIS INDICATED THAT THESE GENES ARE INVOLVED IN CELL GROWTH AND PROLIFERATION. DECREASED LEVELS OF DNMT1 AND DNMT3A WERE ALSO FOUND UNDER PROLIFERATING CONDITIONS. UNDER DIFFERENTIATING CONDITIONS, 7.3% OF GENES HAD DECREASED MRNA EXPRESSION; THESE INCLUDE CDK5RAP3, GDNF, HEY2, HEYL, PARD6B, AND PTN, WHICH ARE ASSOCIATED WITH SURVIVAL AND DIFFERENTIATION AS INDICATED BY BIOINFORMATICS ANALYSIS. THIS STUDY IS THE FIRST TO USE CHRONIC LOW TO MODERATE PAE, TO MORE ACCURATELY REFLECT MATERNAL ALCOHOL CONSUMPTION, AND SUBSEQUENT NEURAL PROGENITOR CELL CULTURE TO DEMONSTRATE THAT PAE THROUGHOUT GESTATION ALTERS EXPRESSION OF GENES INVOLVED IN NEURAL DEVELOPMENT AND EMBRYONIC NEUROGENESIS. 2014 13 2776 23 EXTRAUTERINE GROWTH RESTRICTION ON PULMONARY VASCULAR ENDOTHELIAL DYSFUNCTION IN ADULT MALE RATS: THE ROLE OF EPIGENETIC MECHANISMS. OBJECTIVE: EARLY POSTNATAL LIFE IS CONSIDERED AS A CRITICAL TIME WINDOW FOR THE DETERMINATION OF LONG-TERM METABOLIC STATES AND ORGAN FUNCTIONS. EXTRAUTERINE GROWTH RESTRICTION (EUGR) CAUSES THE DEVELOPMENT OF ADULT-ONSET CHRONIC DISEASES, INCLUDING PULMONARY HYPERTENSION. HOWEVER, THE EFFECTS OF NUTRITIONAL DISADVANTAGES DURING THE EARLY POSTNATAL PERIOD ON PULMONARY VASCULAR CONSEQUENCES IN LATER LIFE ARE NOT FULLY UNDERSTOOD. OUR STUDY WAS DESIGNED TO TEST WHETHER EPIGENETICS DYSREGULATION MEDIATES THE CELLULAR MEMORY OF THIS EARLY POSTNATAL EVENT. METHODS AND RESULTS: TO TEST THIS HYPOTHESIS, WE ISOLATED PULMONARY VASCULAR ENDOTHELIAL CELLS BY MAGNETIC-ACTIVATED CELL SORTING FROM EUGR AND CONTROL RATS. A POSTNATAL INSULT, NUTRITIONAL RESTRICTION-INDUCED EUGR CAUSED DEVELOPMENT OF AN INCREASED PULMONARY ARTERY PRESSURE AT 9 WEEKS OF AGE IN MALE SPRAGUE-DAWLEY RATS. METHYL-DNA IMMUNE PRECIPITATION CHIP, GENOME-SCALE MAPPING STUDIES TO SEARCH FOR DIFFERENTIALLY METHYLATED LOCI BETWEEN CONTROL AND EUGR RATS, REVEALED SIGNIFICANT DIFFERENCE IN CYTOSINE METHYLATION BETWEEN EUGR AND CONTROL RATS. EUGR CHANGES THE CYTOSINE METHYLATION AT APPROXIMATELY 500 LOCI IN MALE RATS AT 9 WEEKS OF AGE, PRECEDING THE DEVELOPMENT OF PULMONARY HYPERTENSION AND THESE REPRESENT THE CANDIDATE LOCI FOR MEDIATING THE PATHOGENESIS OF PULMONARY VASCULAR DISEASE THAT OCCURS LATER IN LIFE. GENE ONTOLOGY ANALYSIS ON DIFFERENTIALLY METHYLATED GENES SHOWED THAT HYPERMETHYLATED GENES IN EUGR ARE VASCULAR DEVELOPMENT-ASSOCIATED GENES AND HYPOMETHYLATED GENES IN EUGR ARE LATE-DIFFERENTIATION-ASSOCIATED AND SIGNAL TRANSDUCTION GENES. WE VALIDATED CANDIDATE DYSREGULATED LOCI WITH THE QUANTITATIVE ASSAYS OF CYTOSINE METHYLATION AND GENE EXPRESSIONS. CONCLUSION: THESE RESULTS DEMONSTRATE THAT EPIGENETICS DYSREGULATION IS A STRONG MECHANISM FOR PROPAGATING THE CELLULAR MEMORY OF EARLY POSTNATAL EVENTS, CAUSING CHANGES IN THE EXPRESSION OF GENES AND LONG-TERM SUSCEPTIBILITY TO PULMONARY HYPERTENSION, AND FURTHER PROVIDING A NEW INSIGHT INTO THE PREVENTION AND TREATMENT OF EUGR-RELATED PULMONARY HYPERTENSION. 2014 14 4931 27 PATERNAL ALCOHOL EXPOSURE REDUCES ALCOHOL DRINKING AND INCREASES BEHAVIORAL SENSITIVITY TO ALCOHOL SELECTIVELY IN MALE OFFSPRING. ALCOHOL USE DISORDER (AUD) IS HERITABLE, BUT THE GENETIC BASIS FOR THIS DISEASE REMAINS POORLY UNDERSTOOD. ALTHOUGH NUMEROUS GENE VARIANTS HAVE BEEN ASSOCIATED WITH AUD, THESE VARIANTS ACCOUNT FOR ONLY A SMALL FRACTION OF THE TOTAL RISK. THE IDEA OF INHERITANCE OF ACQUIRED CHARACTERISTICS, I.E. "EPIGENETIC INHERITANCE," IS RE-EMERGING AS A PROVEN ADJUNCT TO TRADITIONAL MODES OF GENETIC INHERITANCE. WE HYPOTHESIZED THAT ALCOHOL DRINKING AND NEUROBIOLOGICAL SENSITIVITY TO ALCOHOL ARE INFLUENCED BY ANCESTRAL ALCOHOL EXPOSURE. TO TEST THIS HYPOTHESIS, WE EXPOSED MALE MICE TO CHRONIC VAPOR ETHANOL OR CONTROL CONDITIONS, MATED THEM TO ETHANOL-NAIVE FEMALES, AND TESTED ADULT OFFSPRING FOR ETHANOL DRINKING, ETHANOL-INDUCED BEHAVIORS, GENE EXPRESSION, AND DNA METHYLATION. WE FOUND THAT ETHANOL-SIRED MALE OFFSPRING HAD REDUCED ETHANOL PREFERENCE AND CONSUMPTION, ENHANCED SENSITIVITY TO THE ANXIOLYTIC AND MOTOR-ENHANCING EFFECTS OF ETHANOL, AND INCREASED BDNF EXPRESSION IN THE VENTRAL TEGMENTAL AREA (VTA) COMPARED TO CONTROL-SIRED MALE OFFSPRING. THERE WERE NO DIFFERENCES AMONG ETHANOL- AND CONTROL-SIRED FEMALE OFFSPRING ON THESE ASSAYS. ETHANOL EXPOSURE ALSO DECREASED DNA METHYLATION AT THE BDNFAEPROMOTER OF SIRE'S GERM CELLS AND HYPOMETHYLATION WAS MAINTAINED IN THE VTA OF BOTH MALE AND FEMALE ETHANOL-SIRED OFFSPRING. OUR FINDINGS SHOW THAT PATERNAL ALCOHOL EXPOSURE IS A PREVIOUSLY UNRECOGNIZED REGULATOR OF ALCOHOL DRINKING AND BEHAVIORAL SENSITIVITY TO ALCOHOL IN MALE, BUT NOT FEMALE, OFFSPRING. PATERNAL ALCOHOL EXPOSURE ALSO INDUCES EPIGENETIC ALTERATIONS (DNA HYPOMETHYLATION) AND GENE EXPRESSION CHANGES THAT PERSIST IN THE VTA OF OFFSPRING. THESE RESULTS PROVIDE NEW INSIGHT INTO THE INHERITANCE AND DEVELOPMENT OF ALCOHOL DRINKING BEHAVIORS. 2014 15 1162 27 CONTRASTING EFFECTS OF ACUTE AND CHRONIC STRESS ON THE TRANSCRIPTOME, EPIGENOME, AND IMMUNE RESPONSE OF ATLANTIC SALMON. STRESS EXPERIENCED DURING EARLY LIFE MAY HAVE LASTING EFFECTS ON THE IMMUNE SYSTEM, WITH IMPACTS ON HEALTH AND DISEASE DEPENDENT ON THE NATURE AND DURATION OF THE STRESSOR. THE EPIGENOME IS ESPECIALLY SENSITIVE TO ENVIRONMENTAL STIMULI DURING EARLY LIFE AND REPRESENTS A POTENTIAL MECHANISM THROUGH WHICH STRESS MAY CAUSE LONG-LASTING HEALTH EFFECTS. HOWEVER, THE EXTENT TO WHICH THE EPIGENOME RESPONDS DIFFERENTLY TO CHRONIC VS ACUTE STRESSORS IS UNCLEAR, ESPECIALLY FOR NON-MAMMALIAN SPECIES. WE EXAMINED THE EFFECTS OF ACUTE STRESS (COLD-SHOCK DURING EMBRYOGENESIS) AND CHRONIC STRESS (ABSENCE OF TANK ENRICHMENT DURING LARVAL-STAGE) ON GLOBAL GENE EXPRESSION (USING RNA-SEQ) AND DNA METHYLATION (USING RRBS) IN THE GILLS OF ATLANTIC SALMON (SALMO SALAR) FOUR MONTHS AFTER HATCHING. CHRONIC STRESS INDUCED PRONOUNCED TRANSCRIPTIONAL DIFFERENCES, WHILE ACUTE STRESS CAUSED FEW LASTING TRANSCRIPTIONAL EFFECTS. HOWEVER, BOTH ACUTE AND CHRONIC STRESS CAUSED LASTING AND CONTRASTING CHANGES IN THE METHYLOME. CRUCIALLY, WE FOUND THAT ACUTE STRESS ENHANCED TRANSCRIPTIONAL IMMUNE RESPONSE TO A PATHOGENIC CHALLENGE (BACTERIAL LIPOPOLYSACCHARIDE, LPS), WHILE CHRONIC STRESS SUPPRESSED IT. WE IDENTIFIED STRESS-INDUCED CHANGES IN PROMOTER AND GENE-BODY METHYLATION THAT WERE ASSOCIATED WITH ALTERED EXPRESSION FOR A SMALL PROPORTION OF IMMUNE-RELATED GENES, AND EVIDENCE OF WIDER EPIGENETIC REGULATION WITHIN SIGNALLING PATHWAYS INVOLVED IN IMMUNE RESPONSE. OUR RESULTS SUGGEST THAT STRESS CAN AFFECT IMMUNO-COMPETENCE THROUGH EPIGENETIC MECHANISMS, AND HIGHLIGHT THE MARKEDLY DIFFERENT EFFECTS OF CHRONIC LARVAL AND ACUTE EMBRYONIC STRESS. THIS KNOWLEDGE COULD BE USED TO HARNESS THE STIMULATORY EFFECTS OF ACUTE STRESS ON IMMUNITY, PAVING THE WAY FOR IMPROVED STRESS AND DISEASE MANAGEMENT THROUGH EPIGENETIC CONDITIONING. 2018 16 2808 25 FETAL PROGRAMMING OF HYPOTHALAMIC-PITUITARY-ADRENAL (HPA) AXIS FUNCTION AND BEHAVIOR BY SYNTHETIC GLUCOCORTICOIDS. REDUCED FETAL GROWTH HAS BEEN CLOSELY ASSOCIATED WITH AN INCREASED RISK FOR THE DEVELOPMENT OF CHRONIC DISEASE IN LATER LIFE. ACCUMULATING EVIDENCE INDICATES THAT FETAL EXPOSURE TO EXCESS GLUCOCORTICOIDS REPRESENTS A CRITICAL MECHANISM UNDERLYING THIS ASSOCIATION. APPROXIMATELY 7% OF PREGNANT WOMEN ARE AT RISK OF PRETERM DELIVERY AND THESE WOMEN ARE ROUTINELY TREATED WITH SYNTHETIC GLUCOCORTICOIDS (SGC) BETWEEN 24 AND 34 OF WEEKS GESTATION TO IMPROVE NEONATAL OUTCOME. ANIMAL STUDIES HAVE DEMONSTRATED THAT MATERNALLY ADMINISTERED SGC CROSSES THE PLACENTA, AFFECTING FETAL HYPOTHALAMIC-PITUITARY-ADRENAL (HPA) DEVELOPMENT, RESULTING IN CHANGES IN HPA AXIS FUNCTION THAT PERSIST THROUGHOUT LIFE. THESE CHANGES APPEAR TO BE MODULATED AT THE LEVEL OF GLUCOCORTICOID RECEPTORS (GR) AND MINERALOCORTICOID RECEPTORS (MR) IN THE BRAIN AND PITUITARY. AS THE HPA AXIS INTERACTS WITH MANY OTHER PHYSIOLOGICAL PATHWAYS, THE CHANGES IN ENDOCRINE FUNCTION ARE ALSO SEX-SPECIFIC AND AGE-DEPENDENT. ALTERATIONS IN BEHAVIOR, PARTICULARLY LOCOMOTION, IN ANIMALS EXPOSED TO SGC IN UTERO HAVE ALSO BEEN DEMONSTRATED. CONSISTENT WITH THE FINDING IN ANIMAL MODELS, EMERGING HUMAN DATA ARE INDICATING ATTENTION DEFICIT-HYPERACTIVITY DISORDER (ADHD)-LIKE SYMPTOMS IN CHILDREN EXPOSED TO REPEATED COURSES OF SGC IN UTERO. THIS BEHAVIORAL PHENOTYPE IS LIKELY LINKED TO ALTERATIONS IN DOPAMINE (DA) SIGNALING, SUGGESTING THAT SGC ARE ABLE TO PERMANENTLY MODIFY OR 'PROGRAM' THIS SYSTEM. FINALLY, IT IS EMERGING THAT CHANGES IN HPA AXIS FUNCTION AND BEHAVIOR FOLLOWING ANTENATAL EXPOSURE TO SGC ARE TRANSGENERATIONAL AND LIKELY INVOLVE EPIGENETIC MECHANISMS. A COMPREHENSIVE UNDERSTANDING OF THE ACUTE AND LONG-TERM IMPACT OF SGC EXPOSURE IN UTERO IS NECESSARY TO BEGIN TO DEVELOP RECOMMENDATIONS AND TREATMENT OPTIONS FOR PREGNANT WOMEN AT RISK OF PRETERM DELIVERY. 2008 17 5166 46 PRECONCEPTION PATERNAL ALCOHOL EXPOSURE EXERTS SEX-SPECIFIC EFFECTS ON OFFSPRING GROWTH AND LONG-TERM METABOLIC PROGRAMMING. BACKGROUND: ALTHOUGH CLINICAL DATA SUPPORT AN ASSOCIATION BETWEEN PATERNAL ALCOHOL USE AND DEFICITS IN CHILD NEUROCOGNITIVE DEVELOPMENT, THE RELATIONSHIP BETWEEN PATERNAL DRINKING AND ALCOHOL-INDUCED GROWTH PHENOTYPES REMAINS CHALLENGING TO DEFINE. USING AN ESTABLISHED MOUSE MODEL OF CHRONIC EXPOSURE, PREVIOUS WORK BY OUR GROUP HAS LINKED PRECONCEPTION PATERNAL ALCOHOL USE TO SEX-SPECIFIC PATTERNS OF FETAL GROWTH RESTRICTION AND PLACENTAL DYSFUNCTION. THE AIM OF THE PRESENT STUDY WAS TO INVESTIGATE THE LONG-TERM IMPACT OF CHRONIC PRECONCEPTION PATERNAL ALCOHOL USE ON OFFSPRING GROWTH AND METABOLIC PROGRAMMING. RESULTS: PRECONCEPTION PATERNAL ALCOHOL EXPOSURE INDUCED A PROLONGED PERIOD OF FETAL GESTATION AND AN INCREASED INCIDENCE OF INTRAUTERINE GROWTH RESTRICTION, WHICH AFFECTED THE MALE OFFSPRING TO A GREATER EXTENT THAN THE FEMALES. WHILE THE FEMALE OFFSPRING OF ETHANOL-EXPOSED MALES WERE ABLE TO MATCH THE BODY WEIGHTS OF THE CONTROLS WITHIN THE FIRST 2 WEEKS OF POSTNATAL LIFE, MALE OFFSPRING CONTINUED TO DISPLAY AN 11% REDUCTION IN WEIGHT AT 5 WEEKS OF AGE AND A 6% REDUCTION AT 8 WEEKS OF AGE. THE OBSERVED GROWTH DEFICITS ASSOCIATED WITH INSULIN HYPERSENSITIVITY IN THE MALE OFFSPRING, WHILE IN CONTRAST, FEMALES DISPLAYED A MODEST LAG IN THEIR GLUCOSE TOLERANCE TEST. THESE METABOLIC DEFECTS WERE ASSOCIATED WITH AN UP-REGULATION OF GENES WITHIN THE PRO-FIBROTIC TGF-BETA SIGNALING PATHWAY AND INCREASED LEVELS OF CELLULAR HYDROXYPROLINE WITHIN THE LIVERS OF THE MALE OFFSPRING. WE OBSERVED SUPPRESSED CYTOKINE PROFILES WITHIN THE LIVER AND PANCREAS OF BOTH THE MALE AND FEMALE OFFSPRING, WHICH CORRELATED WITH THE UP-REGULATION OF GENES IN THE LIVERX/RETINOIDX/FARNESOIDX RECEPTOR PATHWAYS. HOWEVER, PATTERNS OF GENE EXPRESSION WERE HIGHLY VARIABLE BETWEEN THE OFFSPRING OF ALCOHOL-EXPOSED SIRES. IN THE ADULT OFFSPRING OF ALCOHOL-EXPOSED MALES, WE DID NOT OBSERVE ANY DIFFERENCES IN THE ALLELIC EXPRESSION OF IGF2 OR ANY OTHER IMPRINTED GENES. CONCLUSIONS: THE IMPACT OF PATERNAL ALCOHOL USE ON CHILD DEVELOPMENT IS POORLY EXPLORED AND REPRESENTS A SIGNIFICANT GAP IN OUR UNDERSTANDING OF THE TERATOGENIC EFFECTS OF ETHANOL. OUR STUDIES IMPLICATE PATERNAL EXPOSURE HISTORY AS AN ADDITIONAL AND IMPORTANT MODIFIER OF ALCOHOL-INDUCED GROWTH PHENOTYPES AND CHALLENGE THE CURRENT MATERNAL-CENTRIC EXPOSURE PARADIGM. 2019 18 2158 26 EPIGENETIC MECHANISMS FOR NUTRITION DETERMINANTS OF LATER HEALTH OUTCOMES. EPIGENETIC MARKING ON GENES CAN DETERMINE WHETHER OR NOT GENES ARE EXPRESSED. EPIGENETIC REGULATION IS MEDIATED BY THE ADDITION OF METHYL GROUPS TO DNA CYTOSINE BASES, OF METHYL AND ACETYL GROUPS TO PROTEINS (HISTONES) AROUND WHICH DNA IS WRAPPED, AND BY SMALL INTERFERING RNA MOLECULES. SOME COMPONENTS OF EPIGENETIC REGULATION HAVE EVOLVED TO PERMIT CONTROL OF WHETHER MATERNAL OR PATERNAL GENES ARE EXPRESSED. THE EPIGENETIC IMPRINTING OF IGF2 EXPRESSION IS AN EXAMPLE OF MATERNAL AND PATERNAL EPIGENETIC MARKING THAT MODULATES FETAL GROWTH AND FETAL SIZE. HOWEVER, EPIGENETIC REGULATION ALSO PERMITS THE FETUS AND THE INFANT TO ADAPT GENE EXPRESSION TO THE ENVIRONMENT IN WHICH IT IS GROWING; SOMETIMES WHEN THIS ADJUSTMENT GOES AWRY, THE RISK OF CHRONIC DISEASE IS INCREASED. RECENT PROGRESS IN THE UNDERSTANDING OF NUTRITIONAL INFLUENCES ON EPIGENETICS SUGGESTS THAT NUTRIENTS THAT ARE PART OF METHYL-GROUP METABOLISM CAN SIGNIFICANTLY INFLUENCE EPIGENETICS. DURING CRITICAL PERIODS IN DEVELOPMENT, DIETARY METHYL-GROUP INTAKE (CHOLINE, METHIONINE, AND FOLATE) CAN ALTER DNA AND HISTONE METHYLATION, WHICH RESULTS IN LIFELONG CHANGES IN GENE EXPRESSION. IN RODENT MODELS, PREGNANT DAMS THAT WERE FED DIETS HIGH IN METHIONINE, FOLIC ACID, AND CHOLINE PRODUCED OFFSPRING WITH DIFFERENT COAT COLORS OR WITH KINKED TAILS. A NUMBER OF SYNDROMES IN HUMANS CAN BE CAUSED BY DEFECTIVE EPIGENETIC REGULATION, INCLUDING RETT SYNDROME. THERE ARE INTERESTING EXAMPLES OF THE EFFECTS OF NUTRITION IN EARLY LIFE THAT RESULT IN ALTERED HEALTH IN ADULTS, AND SOME OF THESE COULD BE THE RESULT OF ALTERED EPIGENETIC REGULATION OF GENE EXPRESSION. 2009 19 3784 24 INTERGENERATIONAL EFFECTS OF ALCOHOL: A REVIEW OF PATERNAL PRECONCEPTION ETHANOL EXPOSURE STUDIES AND EPIGENETIC MECHANISMS IN THE MALE GERMLINE. WHILE ALCOHOL USE DISORDER (AUD) IS A HIGHLY HERITABLE PSYCHIATRIC DISEASE, EFFORTS TO ELUCIDATE THAT HERITABILITY BY EXAMINING GENETIC VARIATION (E.G., SINGLE NUCLEOTIDE POLYMORPHISMS) HAVE BEEN INSUFFICIENT TO FULLY ACCOUNT FOR FAMILIAL AUD RISK. PERHAPS NOT COINCIDENTLY, THERE HAS BEEN A BURGEONING INTEREST IN NOVEL NONGENOMIC MECHANISMS OF INHERITANCE (I.E., EPIGENETICS) THAT ARE SHAPED IN THE MALE OR FEMALE GERM CELLS BY SIGNIFICANT LIFETIME EXPERIENCES SUCH AS EXPOSURE TO CHRONIC STRESS, MALNUTRITION, OR DRUGS OF ABUSE. WHILE MANY EPIDEMIOLOGICAL AND PRECLINICAL STUDIES HAVE LONG POINTED TO A ROLE FOR THE PARENTAL PRECONCEPTION ENVIRONMENT IN OFFSPRING BEHAVIOR, OVER THE LAST DECADE MANY STUDIES HAVE IMPLICATED A CAUSAL RELATIONSHIP BETWEEN THE ENVIRONMENTALLY SENSITIVE SPERM EPIGENOME AND INTERGENERATIONAL PHENOTYPES. THIS CRITICAL REVIEW WILL DETAIL THE HERITABLE EFFECTS OF ALCOHOL AND THE POTENTIAL ROLE FOR EPIGENETICS. 2019 20 218 24 ACUTE HYPOXIA AND CHRONIC ISCHEMIA INDUCE DIFFERENTIAL TOTAL CHANGES IN PLACENTAL EPIGENETIC MODIFICATIONS. PREECLAMPSIA IS A COMMON OBSTETRICAL COMPLICATION, HALLMARKED BY NEW-ONSET HYPERTENSION. BELIEVED TO RESULT FROM PLACENTAL INSUFFICIENCY AND CHRONIC PLACENTAL ISCHEMIA, THE SYMPTOMS OF PREECLAMPSIA ARE CAUSED BY RELEASE OF PATHOGENIC FACTORS FROM THE PLACENTA ITSELF, ALTHOUGH THE MECHANISMS OF THEIR REGULATION ARE IN MANY CASES UNKNOWN. ONE POTENTIAL MECHANISM IS THROUGH CHANGES IN PLACENTAL EPIGENETIC CHROMATIN MODIFICATIONS, PARTICULARLY HISTONE ACETYLATION AND DNA METHYLATION. HERE, WE DETERMINED THE EFFECTS OF CHRONIC ISCHEMIA ON GLOBAL EPIGENETIC MODIFICATIONS IN THE RODENT PLACENTA IN VIVO AND ACUTE HYPOXIA IN BEWO PLACENTAL TROPHOBLAST CELLS IN VITRO. PLACENTAL INSUFFICIENCY VIA UTERINE ARTERY RESTRICTION INCREASED MATERNAL BLOOD PRESSURE AND FETAL DEMISE WHILE DECREASING PLACENTAL AND FETAL MASS. GLOBAL PLACENTAL HISTONE H3 ACETYLATION LEVELS WERE SIGNIFICANTLY DECREASED AT H3 K9, K14, K18, K27, AND K56. INTERESTINGLY, WHEN BEWO-IMMORTALIZED PLACENTAL TROPHOBLAST CELLS WERE CULTURED IN OXYGEN CONCENTRATIONS MIMICKING HEALTHY AND ISCHEMIC PLACENTAS, THERE WAS A SIGNIFICANT INCREASE IN ACETYLATED AT K9, K18, K27, AND K56. THIS WAS ASSOCIATED WITH A SMALL BUT SIGNIFICANT DECREASE IN PLACENTAL ACETYL-COA, SUGGESTING DEPLETION IN THE SOURCE OF ACETYL GROUP DONORS. FINALLY, WHILE GLOBAL METHYLATION OF CYTOSINE FROM PLACENTAL DNA WAS LOW IN BOTH GROUPS OF ANIMALS (<1%), THERE WAS APPROXIMATELY 50% INCREASE IN 5-MC IN RESPONSE TO CHRONIC ISCHEMIA. THIS SUGGESTS ACUTE HYPOXIA AND CHRONIC ISCHEMIA INDUCE DIFFERENTIAL GLOBAL CHANGES IN HISTONE ACETYLATION IN THE PLACENTA AND THAT CHRONICALLY ALTERED METABOLIC PROFILES COULD AFFECT HISTONE ACETYLATION IN THE PLACENTA, THEREBY REGULATING PRODUCTION OF PATHOGENIC FACTORS FROM THE PLACENTA DURING PREECLAMPSIA. 2019