1 6709 111 VIRAL TRANSDUCTION OF PRIMARY HUMAN LYMPHOMA B CELLS REVEALS MECHANISMS OF NOTCH-MEDIATED IMMUNE ESCAPE. HOTSPOT MUTATIONS IN THE PEST-DOMAIN OF NOTCH1 AND NOTCH2 ARE RECURRENTLY IDENTIFIED IN B CELL MALIGNANCIES. TO ADDRESS HOW NOTCH-MUTATIONS CONTRIBUTE TO A DISMAL PROGNOSIS, WE HAVE GENERATED ISOGENIC PRIMARY HUMAN TUMOR CELLS FROM PATIENTS WITH CHRONIC LYMPHOCYTIC LEUKEMIA (CLL) AND MANTLE CELL LYMPHOMA (MCL), DIFFERING ONLY IN THEIR EXPRESSION OF THE INTRACELLULAR DOMAIN (ICD) OF NOTCH1 OR NOTCH2. OUR DATA DEMONSTRATE THAT BOTH NOTCH-PARALOGS FACILITATE IMMUNE-ESCAPE OF MALIGNANT B CELLS BY UP-REGULATING PD-L1, PARTLY DEPENDENT ON AUTOCRINE INTERFERON-GAMMA SIGNALING. IN ADDITION, NOTCH-ACTIVATION CAUSES SILENCING OF THE ENTIRE HLA-CLASS II LOCUS VIA EPIGENETIC REGULATION OF THE TRANSCRIPTIONAL CO-ACTIVATOR CIITA. NOTABLY, WHILE NOTCH1 AND NOTCH2 GOVERN SIMILAR TRANSCRIPTIONAL PROGRAMS, DISEASE-SPECIFIC DIFFERENCES IN THEIR EXPRESSION LEVELS CAN FAVOR PARALOG-SPECIFIC SELECTION. IMPORTANTLY, NOTCH-ICD ALSO STRONGLY DOWN-REGULATES THE EXPRESSION OF CD19, POSSIBLY LIMITING THE EFFECTIVENESS OF IMMUNE-THERAPIES. THESE NOTCH-MEDIATED IMMUNE ESCAPE MECHANISMS ARE ASSOCIATED WITH THE EXPANSION OF EXHAUSTED CD8(+) T CELLS IN VIVO. 2022 2 1334 31 DEREGULATION OF AIOLOS EXPRESSION IN CHRONIC LYMPHOCYTIC LEUKEMIA IS ASSOCIATED WITH EPIGENETIC MODIFICATIONS. CHRONIC LYMPHOCYTIC LEUKEMIA (CLL) IS CHARACTERIZED BY A CLONAL ACCUMULATION OF MATURE NEOPLASTIC B CELLS THAT ARE RESISTANT TO APOPTOSIS. AIOLOS, A MEMBER OF THE IKAROS FAMILY OF ZINC-FINGER TRANSCRIPTION FACTORS, PLAYS AN IMPORTANT ROLE IN THE CONTROL OF MATURE B LYMPHOCYTE DIFFERENTIATION AND MATURATION. IN THIS STUDY, WE SHOWED THAT AIOLOS EXPRESSION IS UP-REGULATED IN B-CLL CELLS. THIS OVEREXPRESSION DOES NOT IMPLICATE ISOFORM IMBALANCE OR DISTURB AIOLOS SUBCELLULAR LOCALIZATION. THE CHROMATIN STATUS AT THE AIOLOS PROMOTER IN CLL IS DEFINED BY THE DEMETHYLATION OF DNA AND AN ENRICHMENT OF EUCHROMATIN ASSOCIATED HISTONE MARKERS, SUCH AS THE DIMETHYLATION OF THE LYSINE 4 ON HISTONE H3. THESE EPIGENETIC MODIFICATIONS SHOULD ALLOW ITS UPSTREAM EFFECTORS, SUCH AS NUCLEAR FACTOR-KAPPAB, CONSTITUTIVELY ACTIVATED IN CLL, TO GAIN ACCESS TO PROMOTER, RESULTING UP-REGULATION OF AIOLOS. TO DETERMINE THE CONSEQUENCES OF AIOLOS DEREGULATION IN CLL, WE ANALYZED THE EFFECTS OF AIOLOS OVEREXPRESSION OR DOWN-REGULATION ON APOPTOSIS. AIOLOS IS INVOLVED IN CELL SURVIVAL BY REGULATING THE EXPRESSION OF SOME BCL-2 FAMILY MEMBERS. OUR RESULTS STRONGLY SUGGEST THAT AIOLOS DEREGULATION BY EPIGENETIC MODIFICATIONS MAY BE A HALLMARK OF CLL. 2011 3 5101 23 POLYCOMB FACTOR PHF19 CONTROLS CELL GROWTH AND DIFFERENTIATION TOWARD ERYTHROID PATHWAY IN CHRONIC MYELOID LEUKEMIA CELLS. POLYCOMB GROUP (PCG) OF PROTEINS ARE A GROUP OF HIGHLY CONSERVED EPIGENETIC REGULATORS INVOLVED IN MANY BIOLOGICAL FUNCTIONS, SUCH AS EMBRYONIC DEVELOPMENT, CELL PROLIFERATION, AND ADULT STEM CELL DETERMINATION. PHD FINGER PROTEIN 19 (PHF19) IS AN ASSOCIATED FACTOR OF POLYCOMB REPRESSOR COMPLEX 2 (PRC2), OFTEN UPREGULATED IN HUMAN CANCERS. IN PARTICULAR, MYELOID LEUKEMIA CELL LINES SHOW INCREASED LEVELS OF PHF19, YET LITTLE IS KNOWN ABOUT ITS FUNCTION. HERE, WE HAVE CHARACTERIZED THE ROLE OF PHF19 IN MYELOID LEUKEMIA CELLS. WE DEMONSTRATED THAT PHF19 DEPLETION DECREASES CELL PROLIFERATION AND PROMOTES CHRONIC MYELOID LEUKEMIA (CML) DIFFERENTIATION. MECHANISTICALLY, WE HAVE SHOWN HOW PHF19 REGULATES THE PROLIFERATION OF CML THROUGH A DIRECT REGULATION OF THE CELL CYCLE INHIBITOR P21. FURTHERMORE, WE OBSERVED THAT MTF2, A PHF19 HOMOLOG, PARTIALLY COMPENSATES FOR PHF19 DEPLETION IN A SUBSET OF TARGET GENES, INSTRUCTING SPECIFIC ERYTHROID DIFFERENTIATION. TAKEN TOGETHER, OUR RESULTS SHOW THAT PHF19 IS A KEY TRANSCRIPTIONAL REGULATOR FOR CELL FATE DETERMINATION AND COULD BE A POTENTIAL THERAPEUTIC TARGET FOR MYELOID LEUKEMIA TREATMENT. 2021 4 1000 33 CHRONIC T CELL RECEPTOR STIMULATION UNMASKS NK RECEPTOR SIGNALING IN PERIPHERAL T CELL LYMPHOMAS VIA EPIGENETIC REPROGRAMMING. PERIPHERAL T CELL LYMPHOMAS (PTCLS) REPRESENT A SIGNIFICANT UNMET MEDICAL NEED WITH DISMAL CLINICAL OUTCOMES. THE T CELL RECEPTOR (TCR) IS EMERGING AS A KEY DRIVER OF T LYMPHOCYTE TRANSFORMATION. HOWEVER, THE ROLE OF CHRONIC TCR ACTIVATION IN LYMPHOMAGENESIS AND IN LYMPHOMA CELL SURVIVAL IS STILL POORLY UNDERSTOOD. USING A MOUSE MODEL, WE REPORT THAT CHRONIC TCR STIMULATION DROVE T CELL LYMPHOMAGENESIS, WHEREAS TCR SIGNALING DID NOT CONTRIBUTE TO PTCL SURVIVAL. THE COMBINATION OF KINOME, TRANSCRIPTOME, AND EPIGENOME ANALYSES OF MOUSE PTCLS REVEALED A NK CELL-LIKE REPROGRAMMING OF PTCL CELLS WITH EXPRESSION OF NK RECEPTORS (NKRS) AND DOWNSTREAM SIGNALING MOLECULES SUCH AS TYROBP AND SYK. ACTIVATING NKRS WERE FUNCTIONAL IN PTCLS AND DEPENDENT ON SYK ACTIVITY. IN VIVO BLOCKADE OF NKR SIGNALING PROLONGED MOUSE SURVIVAL, DEMONSTRATING THE ADDICTION OF PTCLS TO NKRS AND DOWNSTREAM SYK/MTOR ACTIVITY FOR THEIR SURVIVAL. WE STUDIED A LARGE COLLECTION OF HUMAN PRIMARY SAMPLES AND IDENTIFIED SEVERAL PTCLS RECAPITULATING THE PHENOTYPE DESCRIBED IN THIS MODEL BY THEIR EXPRESSION OF SYK AND THE NKR, SUGGESTING A SIMILAR MECHANISM OF LYMPHOMAGENESIS AND ESTABLISHING A RATIONALE FOR CLINICAL STUDIES TARGETING SUCH MOLECULES. 2021 5 493 24 ASSESSMENT OF P53 AND ATM FUNCTIONALITY IN CHRONIC LYMPHOCYTIC LEUKEMIA BY MULTIPLEX LIGATION-DEPENDENT PROBE AMPLIFICATION. THE ATM-P53 DNA-DAMAGE RESPONSE (DDR) PATHWAY HAS A CRUCIAL ROLE IN CHEMORESISTANCE IN CLL, AS INDICATED BY THE ADVERSE PROGNOSTIC IMPACT OF GENETIC ABERRATIONS OF TP53 AND ATM. IDENTIFYING AND DISTINGUISHING TP53 AND ATM FUNCTIONAL DEFECTS HAS BECOME RELEVANT AS EPIGENETIC AND POSTTRANSCRIPTIONAL DYSREGULATION OF THE ATM/P53 AXIS IS INCREASINGLY BEING RECOGNIZED AS THE UNDERLYING CAUSE OF CHEMORESISTANCE. ALSO, SPECIFIC TREATMENTS SENSITIZING TP53- OR ATM-DEFICIENT CLL CELLS ARE EMERGING. WE THEREFORE DEVELOPED A NEW ATM-P53 FUNCTIONAL ASSAY WITH THE AIM TO (I) IDENTIFY AND (II) DISTINGUISH ABNORMALITIES OF TP53 VERSUS ATM AND (III) ENABLE THE IDENTIFICATION OF ADDITIONAL DEFECTS IN THE ATM-P53 PATHWAY. REVERSED TRANSCRIPTASE MULTIPLEX LIGATION-DEPENDENT PROBE AMPLIFICATION (RT-MLPA) WAS USED TO MEASURE ATM AND/OR P53-DEPENDENT GENES AT THE RNA LEVEL FOLLOWING DNA DAMAGE USING IRRADIATION. HERE, WE SHOWED THAT THIS ASSAY IS ABLE TO IDENTIFY AND DISTINGUISH THREE SUBGROUPS OF CLL TUMORS (I.E., TP53-DEFECTIVE, ATM-DEFECTIVE AND WT) AND IS ALSO ABLE TO DETECT ADDITIONAL SAMPLES WITH A DEFECTIVE DDR, WITHOUT MOLECULAR ABERRATIONS IN TP53 AND/OR ATM. THESE FINDINGS MAKE THE ATM-P53 RT-MLPA FUNCTIONAL ASSAY A PROMISING PROGNOSTIC TOOL FOR PREDICTING TREATMENT RESPONSES IN CLL. 2015 6 5004 29 PERIPHERAL B CELLS FROM PATIENTS WITH HEPATITIS C VIRUS-ASSOCIATED LYMPHOMA EXHIBIT CLONAL EXPANSION AND AN ANERGIC-LIKE TRANSCRIPTIONAL PROFILE. CHRONIC HCV INFECTION REMAINS A GLOBAL HEALTH CONCERN DUE TO ITS INVOLVEMENT IN HEPATIC AND EXTRAHEPATIC DISEASES, INCLUDING B CELL NON-HODGKIN LYMPHOMA (BNHL). CLINICAL AND EPIDEMIOLOGICAL EVIDENCE SUPPORT A CAUSAL ROLE FOR HCV IN BNHL DEVELOPMENT, ALTHOUGH MECHANISTIC INSIGHT IS LACKING. WE PERFORMED RNA-SEQUENCING ON PERIPHERAL B CELLS FROM PATIENTS WITH HCV ALONE, BNHL ALONE, AND HCV-ASSOCIATED BNHL TO IDENTIFY UNIQUE AND SHARED TRANSCRIPTIONAL PROFILES ASSOCIATED WITH TRANSFORMATION. IN PATIENTS WITH HCV-ASSOCIATED BNHL, WE OBSERVED THE ENRICHMENT OF AN ANERGIC-LIKE GENE SIGNATURE AND EVIDENCE OF CLONAL EXPANSION THAT WAS CORRELATED WITH THE EXPRESSION OF EPIGENETIC REGULATORY GENES. OUR DATA SUPPORT A ROLE FOR VIRAL-MEDIATED CLONAL EXPANSION OF ANERGIC-LIKE B CELLS IN HCV-ASSOCIATED BNHL DEVELOPMENT AND SUGGEST EPIGENETIC DYSREGULATION AS A POTENTIAL MECHANISM DRIVING EXPANSION. WE PROPOSE EPIGENETIC MECHANISMS MAY BE INVOLVED IN BOTH HCV-ASSOCIATED LYMPHOMA AND REGULATION OF B CELL ANERGY, REPRESENTING AN ATTRACTIVE TARGET FOR CLINICAL INTERVENTIONS. 2023 7 2763 28 EXPRESSION OF THE LEUKEMIC PROGNOSTIC MARKER CD7 IS LINKED TO EPIGENETIC MODIFICATIONS IN CHRONIC MYELOID LEUKEMIA. BACKGROUND: EXPRESSION LEVELS OF THE CELL SURFACE GLYCOPROTEIN, CD7, AND THE SERINE PROTEASE, ELASTASE 2 (ELA2), IN THE LEUKEMIC CELLS OF PATIENTS WITH CHRONIC MYELOID LEUKEMIA (CML) HAVE BEEN ASSOCIATED WITH CLINICAL OUTCOME. HOWEVER, LITTLE IS KNOWN ABOUT THE MECHANISMS THAT UNDERLIE THE VARIABLE EXPRESSION OF THESE GENES IN THE LEUKEMIC CELLS. RESULTS: TO ADDRESS THIS QUESTION, WE COMPARED THE LEVEL OF THEIR EXPRESSION WITH THE DNA METHYLATION AND HISTONE ACETYLATION STATUS OF 5' SEQUENCES OF BOTH GENES IN LEUKEMIC CELL LINES AND PRIMITIVE (LIN-CD34+) LEUKEMIC CELLS FROM CHRONIC PHASE CML PATIENTS. DNA METHYLATION OF THE ELA2 GENE PROMOTER DID NOT CORRELATE WITH ITS EXPRESSION PATTERN IN LIN-CD34+ CELLS FROM CHRONIC PHASE CML PATIENT SAMPLES EVEN THOUGH THERE WAS CLEAR DIFFERENTIAL DNA METHYLATION OF THIS LOCUS IN ELA2-EXPRESSING AND NON-EXPRESSING CELL LINES. IN CONTRAST, WE FOUND A STRONG RELATION BETWEEN CD7 EXPRESSION AND TRANSCRIPTION-PERMISSIVE CHROMATIN MODIFICATIONS, BOTH AT THE LEVEL OF DNA METHYLATION AND HISTONE ACETYLATION WITH EVIDENCE OF HYPOMETHYLATION OF THE CD7 PROMOTER REGION IN THE LIN-CD34+ CELLS FROM CML PATIENTS WITH HIGH CD7 EXPRESSION. CONCLUSION: THESE FINDINGS INDICATE A LINK BETWEEN EPIGENETIC MODIFICATIONS AND CD7 EXPRESSION IN PRIMITIVE CML CELLS. 2010 8 5608 35 RUNX1-EVI1 DISRUPTS LINEAGE DETERMINATION AND THE CELL CYCLE BY INTERFERING WITH RUNX1 AND EVI1 DRIVEN GENE REGULATORY NETWORKS. HEMATOLOGICAL MALIGNANCIES ARE CHARACTERISED BY A BLOCK IN DIFFERENTIATION, WHICH IN MANY CASES IS CAUSED BY RECURRENT MUTATIONS AFFECTING THE ACTIVITY OF HEMATOPOIETIC TRANSCRIPTION FACTORS. RUNX1-EVI1 IS A FUSION PROTEIN FORMED BY THE T(3;21) TRANSLOCATION LINKING TWO TRANSCRIPTION FACTORS REQUIRED FOR NORMAL HEMATOPOIESIS. RUNX1-EVI1 EXPRESSION IS FOUND IN MYELODYSPLASTIC SYNDROME, SECONDARY ACUTE MYELOID LEUKEMIA, AND BLAST CRISIS OF CHRONIC MYELOID LEUKEMIA; WITH CLINICAL OUTCOMES BEING WORSE THAN IN PATIENTS WITH RUNX1-ETO, RUNX1 OR EVI1 MUTATIONS ALONE. RUNX1-EVI1 IS USUALLY FOUND AS A SECONDARY MUTATION, THEREFORE THE MOLECULAR MECHANISMS UNDERLYING HOW RUNX1-EVI1 ALONE CONTRIBUTES TO POOR PROGNOSIS ARE UNKNOWN. TO ADDRESS THIS QUESTION, WE INDUCED EXPRESSION OF RUNX1-EVI1 IN HEMATOPOIETIC CELLS DERIVED FROM AN EMBRYONIC STEM CELL DIFFERENTIATION MODEL. INDUCTION RESULTED IN DISRUPTION OF THE RUNX1-DEPENDENT ENDOTHELIAL-HEMATOPOIETIC TRANSITION, BLOCKED THE CELL CYCLE AND UNDERMINED CELL FATE DECISIONS IN MULTIPOTENT HEMATOPOIETIC PROGENITOR CELLS. INTEGRATIVE ANALYSES OF GENE EXPRESSION WITH CHROMATIN AND TRANSCRIPTION FACTOR BINDING DATA DEMONSTRATED THAT RUNX1-EVI1 BINDING CAUSED THE RE-DISTRIBUTION OF ENDOGENOUS RUNX1 WITHIN THE GENOME AND INTERFERED WITH BOTH RUNX1 AND EVI1 REGULATED GENE EXPRESSION PROGRAMS. IN SUMMARY, RUNX1-EVI1 EXPRESSION ALONE LEADS TO EXTENSIVE EPIGENETIC REPROGRAMMING WHICH IS INCOMPATIBLE WITH HEALTHY BLOOD PRODUCTION. 2021 9 2432 34 EPIGENETIC SILENCING OF MIR-708 ENHANCES NF-KAPPAB SIGNALING IN CHRONIC LYMPHOCYTIC LEUKEMIA. MICRORNAS (MIRNAS) ARE POST-TRANSCRIPTIONAL REGULATORS OF GENE EXPRESSION AND THEIR DEREGULATION IS INVOLVED IN TUMOR DEVELOPMENT. EPIGENETIC GENE SILENCING IN CANCER BY DNA METHYLATION CONTRIBUTES TO THE SILENCING OF TUMOR-SUPPRESSOR GENES, INCLUDING MIRNAS. WE HAVE RECENTLY SHOWN THAT THE PROMOTER OF MIR-708 IS ABERRANTLY METHYLATED IN CHRONIC LYMPHOCYTIC LEUKEMIA (CLL). TO CHARACTERIZE THE MOLECULAR SIGNALING NETWORKS THAT ARE INFLUENCED BY MIR-708, WE PERFORMED A LUCIFERASE-BASED SCREEN EVALUATING THE EFFECTS OF ECTOPIC MIR-708 EXPRESSION ON LEUKEMIA-RELEVANT SIGNALING PATHWAYS. WE FOUND THAT MIR-708 STRONGLY REPRESSED NF-KAPPAB SIGNALING, A PATHWAY KNOWN TO BE DEREGULATED IN CLL. AMONG THE PREDICTED MIR-708 TARGETS WAS IKKBETA (INHIBITOR OF KAPPA LIGHT POLYPEPTIDE GENE ENHANCER IN B CELLS, KINASE-BETA/IKBKB), A KEY KINASE FACILITATING NF-KAPPAB SIGNALING. WE VALIDATED THE INTERACTION OF MIR-708 WITH THE 3'-UNTRANSLATED REGION OF IKKBETA AND FOUND THAT MIR-708 OVEREXPRESSION REPRESSES ENDOGENOUS IKKBETA. PHOSPHORYLATION OF THE IKKBETA TARGET IKAPPABALPHA AND EXPRESSION OF KNOWN NF-KAPPAB TARGET GENES WERE IMPAIRED BY MIR-708. FURTHERMORE, WE IDENTIFIED AN ENHANCER REGION DOWNSTREAM OF THE MIR-708 PROMOTER THAT DISPLAYS A DISTINCT DNA METHYLATION STATUS IN CLL. HIGH ENHANCER METHYLATION IS SIGNIFICANTLY CORRELATED WITH LOWER MIR-708 EXPRESSION AND IS PREDOMINANTLY FOUND IN PATIENTS WITH POOR PROGNOSIS AND SHORTER TIME TO TREATMENT. THESE RESULTS DEMONSTRATE THAT MIR-708 REGULATES THE NF-KAPPAB PATHWAY BY TARGETING IKKBETA, AND THAT METHYLATION OF A KEY ENHANCER REGION CONTRIBUTES TO ITS SUPPRESSION IN CLL. 2015 10 5433 24 REL/NF-KAPPA B/I KAPPA B SIGNAL TRANSDUCTION IN THE GENERATION AND TREATMENT OF HUMAN CANCER. THE REL/NF-KAPPA B FAMILY IS A GROUP OF STRUCTURALLY-RELATED, TIGHTLY-REGULATED TRANSCRIPTION FACTORS THAT CONTROL THE EXPRESSION OF A MULTITUDE OF GENES INVOLVED IN KEY CELLULAR AND ORGANISMAL PROCESSES. THE REL/NF-KAPPA B SIGNAL TRANSDUCTION PATHWAY IS MISREGULATED IN A VARIETY OF HUMAN CANCERS, ESPECIALLY ONES OF LYMPHOID CELL ORIGIN, DUE EITHER TO GENETIC CHANGES (SUCH AS CHROMOSOMAL REARRANGEMENTS, AMPLIFICATIONS, AND MUTATIONS) OR TO CHRONIC ACTIVATION OF THE PATHWAY BY EPIGENETIC MECHANISMS. CONSTITUTIVE ACTIVATION OF THE REL/NF-KAPPA B PATHWAY CAN CONTRIBUTE TO THE ONCOGENIC STATE IN SEVERAL WAYS, FOR EXAMPLE, BY DRIVING PROLIFERATION, BY ENHANCING CELL SURVIVAL, OR BY PROMOTING ANGIOGENESIS OR METASTASIS. IN MANY CASES, INHIBITION OF REL/NF-KAPPA B ACTIVITY REVERSES ALL OR PART OF THE MALIGNANT STATE. THUS, THE REL/NF-KAPPA B PATHWAY HAS RECEIVED MUCH ATTENTION AS A FOCAL POINT FOR CLINICAL INTERVENTION. 2002 11 102 18 A REGULATORY ROLE FOR CHD2 IN MYELOPOIESIS. THE TRANSCRIPTIONAL PROGRAM THAT DICTATES HAEMATOPOIETIC CELL FATE AND DIFFERENTIATION REQUIRES AN EPIGENETIC REGULATORY AND MEMORY FUNCTION, PROVIDED BY A NETWORK OF EPIGENETIC FACTORS THAT REGULATE DNA METHYLATION, POST-TRANSLATIONAL HISTONE MODIFICATIONS AND CHROMATIN STRUCTURE. DISTURBED EPIGENETIC REGULATION CAUSES PERTURBATIONS IN THE BLOOD CELL DIFFERENTIATION PROGRAM THAT RESULTS IN VARIOUS TYPES OF HAEMATOPOIETIC DISORDERS. THUS, ACCURATE EPIGENETIC REGULATION IS ESSENTIAL FOR FUNCTIONAL HAEMATOPOIESIS. IN THIS STUDY, WE USED A CRISPR-CAS9 SCREENING APPROACH TO IDENTIFY NEW EPIGENETIC REGULATORS IN MYELOID DIFFERENTIATION. WE DESIGNED A CHROMATIN-UMI CRISPR GUIDE LIBRARY TARGETING 1092 EPIGENETIC REGULATORS. PHORBOL 12-MYRISTATE 13-ACETATE (PMA) TREATMENT OF THE CHRONIC MYELOID LEUKAEMIA CELL LINE K-562 WAS USED AS A MEGAKARYOCYTIC MYELOID DIFFERENTIATION MODEL. BOTH PREVIOUSLY DESCRIBED DEVELOPMENTAL EPIGENETIC REGULATORS AND NOVEL FACTORS WERE IDENTIFIED IN OUR SCREEN. IN THIS STUDY, WE VALIDATED AND CHARACTERIZED A ROLE FOR THE CHROMATIN REMODELLER CHD2 IN MYELOID PROLIFERATION AND MEGAKARYOCYTIC DIFFERENTIATION. 2020 12 4837 23 ONCOGENIC GENE EXPRESSION AND EPIGENETIC REMODELING OF CIS-REGULATORY ELEMENTS IN ASXL1-MUTANT CHRONIC MYELOMONOCYTIC LEUKEMIA. MYELOID NEOPLASMS ARE CLONAL HEMATOPOIETIC STEM CELL DISORDERS DRIVEN BY THE SEQUENTIAL ACQUISITION OF RECURRENT GENETIC LESIONS. TRUNCATING MUTATIONS IN THE CHROMATIN REMODELER ASXL1 (ASXL1(MT)) ARE ASSOCIATED WITH A HIGH-RISK DISEASE PHENOTYPE WITH INCREASED PROLIFERATION, EPIGENETIC THERAPEUTIC RESISTANCE, AND POOR SURVIVAL OUTCOMES. WE PERFORMED A MULTI-OMICS INTERROGATION TO DEFINE GENE EXPRESSION AND CHROMATIN REMODELING ASSOCIATED WITH ASXL1(MT) IN CHRONIC MYELOMONOCYTIC LEUKEMIA (CMML). ASXL1(MT) ARE ASSOCIATED WITH A LOSS OF REPRESSIVE HISTONE METHYLATION AND INCREASE IN PERMISSIVE HISTONE METHYLATION AND ACETYLATION IN PROMOTER REGIONS. ASXL1(MT) ARE FURTHER ASSOCIATED WITH DE NOVO ACCESSIBILITY OF DISTAL ENHANCERS BINDING ETS TRANSCRIPTION FACTORS, TARGETING IMPORTANT LEUKEMOGENIC DRIVER GENES. CHROMATIN REMODELING OF PROMOTERS AND ENHANCERS IS STRONGLY ASSOCIATED WITH GENE EXPRESSION AND HETEROGENOUS AMONG OVEREXPRESSED GENES. THESE RESULTS PROVIDE A COMPREHENSIVE MAP OF THE TRANSCRIPTOME AND CHROMATIN LANDSCAPE OF ASXL1(MT) CMML, FORMING AN IMPORTANT FRAMEWORK FOR THE DEVELOPMENT OF NOVEL THERAPEUTIC STRATEGIES TARGETING ONCOGENIC CIS INTERACTIONS. 2022 13 1629 20 DNMT3A ARG882 MUTATION DRIVES CHRONIC MYELOMONOCYTIC LEUKEMIA THROUGH DISTURBING GENE EXPRESSION/DNA METHYLATION IN HEMATOPOIETIC CELLS. THE GENE ENCODING DNA METHYLTRANSFERASE 3A (DNMT3A) IS MUTATED IN APPROXIMATELY 20% OF ACUTE MYELOID LEUKEMIA CASES, WITH ARG882 (R882) AS THE HOTSPOT. HERE, WE ADDRESSED THE TRANSFORMATION ABILITY OF THE DNMT3A-ARG882HIS (R882H) MUTANT BY USING A RETROVIRAL TRANSDUCTION AND BONE MARROW TRANSPLANTATION (BMT) APPROACH AND FOUND THAT THE MUTANT GENE CAN INDUCE ABERRANT PROLIFERATION OF HEMATOPOIETIC STEM/PROGENITOR CELLS. AT 12 MO POST-BMT, ALL MICE DEVELOPED CHRONIC MYELOMONOCYTIC LEUKEMIA WITH THROMBOCYTOSIS. RNA MICROARRAY ANALYSIS REVEALED ABNORMAL EXPRESSIONS OF SOME HEMATOPOIESIS-RELATED GENES, AND THE DNA METHYLATION ASSAY IDENTIFIED CORRESPONDING CHANGES IN METHYLATION PATTERNS IN GENE BODY REGIONS. MOREOVER, DNMT3A-R882H INCREASED THE CDK1 PROTEIN LEVEL AND ENHANCED CELL-CYCLE ACTIVITY, THEREBY CONTRIBUTING TO LEUKEMOGENESIS. 2014 14 6659 31 UPREGULATION OF AKT3 CONFERS RESISTANCE TO THE AKT INHIBITOR MK2206 IN BREAST CANCER. ACQUIRED RESISTANCE TO MOLECULAR TARGETED THERAPY REPRESENTS A MAJOR CHALLENGE FOR THE EFFECTIVE TREATMENT OF CANCER. HYPERACTIVATION OF THE PI3K/AKT PATHWAY IS FREQUENTLY OBSERVED IN VIRTUALLY ALL HUMAN MALIGNANCIES, AND NUMEROUS PI3K AND AKT INHIBITORS ARE CURRENTLY UNDER CLINICAL EVALUATION. HOWEVER, MECHANISMS OF ACQUIRED RESISTANCE TO AKT INHIBITORS HAVE YET TO BE DESCRIBED. HERE, WE USE A BREAST CANCER PRECLINICAL MODEL TO IDENTIFY RESISTANCE MECHANISMS TO A SMALL MOLECULE ALLOSTERIC AKT INHIBITOR, MK2206. USING A STEP-WISE AND CHRONIC HIGH-DOSE EXPOSURE, BREAST CANCER CELL LINES HARBORING ONCOGENIC PI3K RESISTANT TO MK2206 WERE ESTABLISHED. USING THIS MODEL, WE REVEAL THAT AKT3 EXPRESSION IS MARKEDLY UPREGULATED IN AKT INHIBITOR-RESISTANT CELLS. INDUCTION OF AKT3 IS REGULATED EPIGENETICALLY BY THE BROMODOMAIN AND EXTRA TERMINAL DOMAIN PROTEINS. IMPORTANTLY, KNOCKDOWN OF AKT3, BUT NOT AKT1 OR AKT2, IN RESISTANT CELLS RESTORES SENSITIVITY TO MK2206. AKT INHIBITOR-RESISTANT CELLS ALSO DISPLAY AN EPITHELIAL TO MESENCHYMAL TRANSITION PHENOTYPE AS ASSESSED BY ALTERATIONS IN THE LEVELS OF E-CADHERIN, N-CADHERIN, AND VIMENTIN, AS WELL AS ENHANCED INVASIVENESS OF TUMOR SPHEROIDS. NOTABLY, THE INVASIVE MORPHOLOGY OF RESISTANT SPHEROIDS IS DIMINISHED UPON AKT3 DEPLETION. WE ALSO SHOW THAT RESISTANCE TO MK2206 IS REVERSIBLE BECAUSE UPON DRUG REMOVAL RESISTANT CELLS REGAIN SENSITIVITY TO AKT INHIBITION, ACCOMPANIED BY REEXPRESSION OF EPITHELIAL MARKERS AND REDUCTION OF AKT3 EXPRESSION, IMPLYING THAT EPIGENETIC REPROGRAMMING CONTRIBUTES TO ACQUISITION OF RESISTANCE. THESE FINDINGS PROVIDE A RATIONALE FOR DEVELOPING THERAPEUTICS TARGETING AKT3 TO CIRCUMVENT ACQUIRED RESISTANCE IN BREAST CANCER. MOL CANCER THER; 15(8); 1964-74. (C)2016 AACR. 2016 15 4867 26 OSSIFYING FIBROMA TUMOR STEM CELLS ARE MAINTAINED BY EPIGENETIC REGULATION OF A TSP1/TGF-BETA/SMAD3 AUTOCRINE LOOP. ABNORMAL STEM CELL FUNCTION MAKES A KNOWN CONTRIBUTION TO MANY MALIGNANT TUMORS, BUT THE ROLE OF STEM CELLS IN BENIGN TUMORS IS NOT WELL UNDERSTOOD. HERE, WE SHOW THAT OSSIFYING FIBROMA (OF) CONTAINS A STEM CELL POPULATION THAT RESEMBLES MESENCHYMAL STEM CELLS (OFMSCS) AND IS CAPABLE OF GENERATING OF-LIKE TUMOR XENOGRAFTS. MECHANISTICALLY, OFMSCS SHOW ENHANCED TGF-BETA SIGNALING THAT INDUCES ABERRANT PROLIFERATION AND DEFICIENT OSTEOGENESIS VIA NOTCH AND BMP SIGNALING PATHWAYS, RESPECTIVELY. THE ELEVATED TGF-BETA ACTIVITY IS TIGHTLY REGULATED BY JHDM1D-MEDIATED EPIGENETIC REGULATION OF THROMBOSPONDIN-1 (TSP1), FORMING A JHDM1D/TSP1/TGF-BETA/SMAD3 AUTOCRINE LOOP. INHIBITION OF TGF-BETA SIGNALING IN OFMSCS CAN RESCUE THEIR ABNORMAL OSTEOGENIC DIFFERENTIATION AND ELEVATED PROLIFERATION RATE. FURTHERMORE, CHRONIC ACTIVATION OF TGF-BETA CAN CONVERT NORMAL MSCS INTO OF-LIKE MSCS VIA ESTABLISHMENT OF THIS JHDM1D/TSP1/TGF-BETA/SMAD3 AUTOCRINE LOOP. THESE RESULTS REVEAL THAT EPIGENETIC REGULATION OF TGF-BETA SIGNALING IN MSCS GOVERNS THE BENIGN TUMOR PHENOTYPE IN OF AND HIGHLIGHT TGF-BETA SIGNALING AS A CANDIDATE THERAPEUTIC TARGET. 2013 16 2431 33 EPIGENETIC SILENCING OF MIR-26A1 IN CHRONIC LYMPHOCYTIC LEUKEMIA AND MANTLE CELL LYMPHOMA: IMPACT ON EZH2 EXPRESSION. DOWNREGULATION OF MIR26A1 HAS BEEN REPORTED IN VARIOUS B-CELL MALIGNANCIES; HOWEVER, THE MECHANISM BEHIND ITS DEREGULATION REMAINS LARGELY UNKNOWN. WE INVESTIGATED MIR26A1 METHYLATION AND EXPRESSION LEVELS IN A WELL-CHARACTERIZED SERIES OF CHRONIC LYMPHOCYTIC LEUKEMIA (CLL) AND MANTLE CELL LYMPHOMA (MCL). FROM 450K METHYLATION ARRAYS, WE FIRST OBSERVED MIR26A1 (CG26054057) AS UNIFORMLY HYPERMETHYLATED IN MCL (N = 24) (ALL >75%), WHILE CLL (N = 18) SHOWED DIFFERENTIAL METHYLATION BETWEEN PROGNOSTIC SUBGROUPS. EXTENDED ANALYSIS USING PYROSEQUENCING CONFIRMED OUR FINDINGS AND REAL-TIME QUANTITATIVE PCR VERIFIED LOW MIR26A1 EXPRESSION IN BOTH CLL (N = 70) AND MCL (N = 38) COMPARED TO NORMAL B-CELLS. NOTABLY, THE LEVEL OF MIR26A1 METHYLATION PREDICTED OUTCOME IN CLL, WITH HIGHER LEVELS SEEN IN POOR-PROGNOSTIC, IGHV-UNMUTATED CLL. SINCE EZH2 WAS RECENTLY REPORTED AS A TARGET FOR MIR26A1, WE ANALYZED THE EXPRESSION LEVELS OF BOTH MIR26A1 AND EZH2 IN PRIMARY CLL SAMPLES AND OBSERVED AN INVERSE CORRELATION. BY OVEREXPRESSION OF MIR26A1 IN CLL AND MCL CELL LINES, REDUCED EZH2 PROTEIN LEVELS WERE OBSERVED USING BOTH WESTERN BLOT AND FLOW CYTOMETRY. IN CONTRAST, METHYL-INHIBITOR TREATMENT LED TO UPREGULATED MIR26A1 EXPRESSION WITH A PARALLEL DECREASE OF EZH2 EXPRESSION. FINALLY, INCREASED LEVELS OF APOPTOSIS WERE OBSERVED IN MIR26A1-OVEREXPRESSING CELL LINES, FURTHER UNDERSCORING THE FUNCTIONAL RELEVANCE OF MIR26A1. IN SUMMARY, WE PROPOSE THAT EPIGENETIC SILENCING OF MIR26A1 IS REQUIRED FOR THE MAINTENANCE OF INCREASED LEVELS OF EZH2, WHICH IN TURN TRANSLATE INTO A WORSE OUTCOME, AS SHOWN IN CLL, HIGHLIGHTING MIR26A1 AS A TUMOR SUPPRESSOR MIRNA. 2016 17 4545 25 MUTANT P53 GAIN OF FUNCTION AND CHEMORESISTANCE: THE ROLE OF MUTANT P53 IN RESPONSE TO CLINICAL CHEMOTHERAPY. PURPOSE: TO REVIEW MECHANISMS UNDERLYING MUTANT P53 (MUTP53) GAIN OF FUNCTION (GOF) AND MUTP53-INDUCED CHEMORESISTANCE, AND TO INVESTIGATE THE ROLE OF MUTP53 IN RESPONSE TO CLINICAL CHEMOTHERAPY. METHODS: WE SEARCHED THE PUBMED DATABASE FOR CLINICAL STUDIES FROM THE PAST DECADE, INCLUDING DATA EVALUATING THE IMPACT OF MUTP53 IN CLINICAL CHEMOTHERAPY RESPONSE. RESULTS: INTERACTIONS BETWEEN MUTP53 AND TRANSCRIPTIONAL FACTORS, PROTEINS OR DNA STRUCTURES, AS WELL AS EPIGENETIC REGULATION, CONTRIBUTE TO MUTP53 GOF. MAJOR MECHANISMS OF MUTP53-INDUCED CHEMORESISTANCE INCLUDE ENHANCED DRUG EFFLUX AND METABOLISM, PROMOTING SURVIVAL, INHIBITING APOPTOSIS, UPREGULATING DNA REPAIR, SUPPRESSING AUTOPHAGY, ELEVATING MICROENVIRONMENTAL RESISTANCE AND INDUCING A STEM-LIKE PHENOTYPE. CLINICALLY, MUTP53 PREDICTED RESISTANCE TO CHEMOTHERAPY IN DIFFUSE LARGE B-CELL LYMPHOMA, AND ESOPHAGEAL AND OROPHARYNGEAL CANCERS, BUT ITS IMPACT ON CHRONIC LYMPHOCYTIC LEUKEMIA WAS UNCLEAR. IN BLADDER CANCER, MUTP53 DID NOT PREDICT RESISTANCE, WHEREAS IN SOME BREAST AND OVARIAN CANCERS, IT WAS ASSOCIATED WITH SENSITIVITY TO CERTAIN CHEMOTHERAPEUTIC AGENTS. CONCLUSION: MUTP53 HAS AN INTRICATE ROLE IN THE RESPONSE TO CLINICAL CHEMOTHERAPY AND SHOULD NOT BE INTERPRETED IN ISOLATION. FURTHERMORE, WHEN PREDICTING TUMOR RESPONSE TO CHEMOTHERAPY BASED ON THE P53 STATUS, THE DRUGS USED SHOULD ALSO BE TAKEN INTO CONSIDERATION. THESE CONCEPTS REQUIRE FURTHER INVESTIGATION. 2017 18 4866 32 ORTHOGONAL CRISPR SCREENS TO IDENTIFY TRANSCRIPTIONAL AND EPIGENETIC REGULATORS OF HUMAN CD8 T CELL FUNCTION. THE CLINICAL RESPONSE TO ADOPTIVE T CELL THERAPIES IS STRONGLY ASSOCIATED WITH TRANSCRIPTIONAL AND EPIGENETIC STATE. THUS, TECHNOLOGIES TO DISCOVER REGULATORS OF T CELL GENE NETWORKS AND THEIR CORRESPONDING PHENOTYPES HAVE GREAT POTENTIAL TO IMPROVE THE EFFICACY OF T CELL THERAPIES. WE DEVELOPED POOLED CRISPR SCREENING APPROACHES WITH COMPACT EPIGENOME EDITORS TO SYSTEMATICALLY PROFILE THE EFFECTS OF ACTIVATION AND REPRESSION OF 120 TRANSCRIPTION FACTORS AND EPIGENETIC MODIFIERS ON HUMAN CD8+ T CELL STATE. THESE SCREENS NOMINATED KNOWN AND NOVEL REGULATORS OF T CELL PHENOTYPES WITH BATF3 EMERGING AS A HIGH CONFIDENCE GENE IN BOTH SCREENS. WE FOUND THAT BATF3 OVEREXPRESSION PROMOTED SPECIFIC FEATURES OF MEMORY T CELLS SUCH AS INCREASED IL7R EXPRESSION AND GLYCOLYTIC CAPACITY, WHILE ATTENUATING GENE PROGRAMS ASSOCIATED WITH CYTOTOXICITY, REGULATORY T CELL FUNCTION, AND T CELL EXHAUSTION. IN THE CONTEXT OF CHRONIC ANTIGEN STIMULATION, BATF3 OVEREXPRESSION COUNTERED PHENOTYPIC AND EPIGENETIC SIGNATURES OF T CELL EXHAUSTION. CAR T CELLS OVEREXPRESSING BATF3 SIGNIFICANTLY OUTPERFORMED CONTROL CAR T CELLS IN BOTH IN VITRO AND IN VIVO TUMOR MODELS. MOREOVER, WE FOUND THAT BATF3 PROGRAMMED A TRANSCRIPTIONAL PROFILE THAT CORRELATED WITH POSITIVE CLINICAL RESPONSE TO ADOPTIVE T CELL THERAPY. FINALLY, WE PERFORMED CRISPR KNOCKOUT SCREENS WITH AND WITHOUT BATF3 OVEREXPRESSION TO DEFINE CO-FACTORS AND DOWNSTREAM FACTORS OF BATF3, AS WELL AS OTHER THERAPEUTIC TARGETS. THESE SCREENS POINTED TO A MODEL WHERE BATF3 INTERACTS WITH JUNB AND IRF4 TO REGULATE GENE EXPRESSION AND ILLUMINATED SEVERAL OTHER NOVEL TARGETS FOR FURTHER INVESTIGATION. 2023 19 1806 33 EFFECT OF TRANSCRIPTION INHIBITION AND GENERATION OF SUPPRESSIVE VIRAL NON-CODING RNAS. BACKGROUND: HIV-1 PATIENTS RECEIVING COMBINATION ANTIRETROVIRAL THERAPY (CART) SURVIVE INFECTION BUT REQUIRE LIFE-LONG ADHERENCE AT HIGH EXPENSE. IN CHRONIC CART-TREATED PATIENTS WITH UNDETECTABLE VIRAL TITERS, CELL-ASSOCIATED VIRAL RNA IS STILL DETECTABLE, POINTING TO LOW-LEVEL VIRAL TRANSCRIPTIONAL LEAKINESS. TO DATE, THERE ARE NO FDA-APPROVED DRUGS AGAINST HIV-1 TRANSCRIPTION. WE HAVE PREVIOUSLY SHOWN THAT F07#13, A THIRD GENERATION TAT PEPTIDE MIMETIC WITH COMPETITIVE ACTIVITY AGAINST CDK9/T1-TAT BINDING SITES, INHIBITS HIV-1 TRANSCRIPTION IN VITRO AND IN VIVO. RESULTS: HERE, WE DEMONSTRATE THAT INCREASING CONCENTRATIONS OF F07#13 (0.01, 0.1, 1 MICROM) CAUSE A DECREASE IN TAT LEVELS IN A DOSE-DEPENDENT MANNER BY INHIBITING THE CDK9/T1-TAT COMPLEX FORMATION AND SUBSEQUENT UBIQUITIN-MEDIATED TAT SEQUESTRATION AND DEGRADATION. OUR DATA INDICATE THAT COMPLEXES I AND IV CONTAIN DISTINCT PATTERNS OF UBIQUITINATED TAT AND THAT TRANSCRIPTIONAL INHIBITION INDUCED BY F07#13 CAUSES AN OVERALL REDUCTION IN TAT LEVELS. THIS REDUCTION MAY BE TRIGGERED BY F07#13 BUT ULTIMATELY IS MEDIATED BY TAR-GAG VIRAL RNAS THAT BIND SUPPRESSIVE TRANSCRIPTION FACTORS (SIMILAR TO 7SK, NRON, HOTAIR, AND XIST LNCRNAS) TO ENHANCE TRANSCRIPTIONAL GENE SILENCING AND LATENCY. THESE RNAS COMPLEX WITH PRC2, SIN3A, AND CUL4B, RESULTING IN EPIGENETIC MODIFICATIONS. FINALLY, WE OBSERVED AN F07#13-MEDIATED DECREASE OF VIRAL BURDEN BY TARGETING THE R REGION OF THE LONG TERMINAL REPEAT (HIV-1 PROMOTER REGION, LTR), PROMOTING BOTH PAUSED POLYMERASES AND INCREASED EFFICIENCY OF CRISPR/CAS9 EDITING IN INFECTED CELLS. THIS IMPLIES THAT GENE EDITING MAY BE BEST PERFORMED UNDER A REPRESSED TRANSCRIPTIONAL STATE. CONCLUSIONS: COLLECTIVELY, OUR RESULTS INDICATE THAT F07#13, WHICH CAN TERMINATE RNA POLYMERASE II AT DISTINCT SITES, CAN GENERATE SCAFFOLD RNAS, WHICH MAY ASSEMBLE INTO SPECIFIC SETS OF "RNA MACHINES" THAT CONTRIBUTE TO GENE REGULATION. IT REMAINS TO BE SEEN WHETHER THESE EFFECTS CAN ALSO BE SEEN IN VARIOUS CLADES THAT HAVE VARYING PROMOTER STRENGTH, MUTANT LTRS, AND IN PATIENT SAMPLES. 2019 20 628 32 BIOLOGICAL AND CLINICAL INSIGHT FROM ANALYSIS OF THE TUMOR B-CELL RECEPTOR STRUCTURE AND FUNCTION IN CHRONIC LYMPHOCYTIC LEUKEMIA. THE B-CELL RECEPTOR (BCR) IS ESSENTIAL TO THE BEHAVIOR OF THE MAJORITY OF NORMAL AND NEOPLASTIC MATURE B CELLS. THE IDENTIFICATION IN 1999 OF THE TWO MAJOR CLL SUBSETS EXPRESSING UNMUTATED IMMUNOGLOBULIN (IG) VARIABLE REGION GENES (U-IGHV, U-CLL) OF PRE-GERMINAL CENTER ORIGIN AND POOR PROGNOSIS, AND MUTATED IGHV (M-CLL) OF POST-GERMINAL CENTER ORIGIN AND GOOD PROGNOSIS, IGNITED INTENSIVE INVESTIGATIONS ON STRUCTURE AND FUNCTION OF THE TUMOR BCR. THESE INVESTIGATIONS HAVE PROVIDED FUNDAMENTAL INSIGHT INTO CLL BIOLOGY AND EVENTUALLY THE MECHANISTIC RATIONALE FOR THE DEVELOPMENT OF SUCCESSFUL THERAPIES TARGETING BCR SIGNALING. U-CLL AND M-CLL ARE CHARACTERIZED BY VARIABLE LOW SURFACE IGM (SIGM) EXPRESSION AND SIGNALING CAPACITY. VARIABILITY OF SIGM CAN IN PART BE EXPLAINED BY CHRONIC ENGAGEMENT WITH (AUTO)ANTIGEN AT TISSUE SITES. HOWEVER, OTHER ENVIRONMENTAL ELEMENTS, GENETIC CHANGES, AND EPIGENETIC SIGNATURES ALSO CONTRIBUTE TO THE SIGM VARIABILITY. THE VARIABLE LEVELS HAVE CONSEQUENCES ON THE BEHAVIOR OF CLL, WHICH IS IN A STATE OF ANERGY WITH AN INDOLENT CLINICAL COURSE WHEN SIGM EXPRESSION IS LOW, OR PUSHED TOWARDS PROLIFERATION AND A MORE AGGRESSIVE CLINICAL COURSE WHEN SIGM EXPRESSION IS HIGH. EFFICACY OF THERAPIES THAT TARGET BTK MAY ALSO BE AFFECTED BY THE VARIABLE SIGM LEVELS AND SIGNALING AND, IN PART, EXPLAIN THE DEVELOPMENT OF RESISTANCE. 2022