2023
Negative feedback regulation of MAPK signaling is an important driver of chronic lymphocytic leukemia progression
Ecker V, Brandmeier L, Stumpf M, Giansanti P, Moreira A, Pfeuffer L, Fens M, Lu J, Kuster B, Engleitner T, Heidegger S, Rad R, Ringshausen I, Zenz T, Wendtner C, Müschen M, Jellusova J, Ruland J, Buchner M. Negative feedback regulation of MAPK signaling is an important driver of chronic lymphocytic leukemia progression. Cell Reports 2023, 42: 113017. PMID: 37792532, DOI: 10.1016/j.celrep.2023.113017.Peer-Reviewed Original ResearchConceptsMitogen-activated protein kinaseChronic lymphocytic leukemiaCLL cellsMitochondrial reactive oxygen speciesChronic lymphocytic leukemia progressionApoptotic cell deathPoor clinical prognosisCLL cell survivalSmall molecule inhibitorsNegative feedback regulationProtein kinaseReactive oxygen speciesMAPK signalingMAPK activityPromising treatment conceptClinical prognosisClinical challengeLymphocytic leukemiaCell survivalAcute activationCell deathDNA damageDUSP6Treatment conceptFeedback regulation
2021
Developmental partitioning of SYK and ZAP70 prevents autoimmunity and cancer
Sadras T, Martin M, Kume K, Robinson ME, Saravanakumar S, Lenz G, Chen Z, Song JY, Siddiqi T, Oksa L, Knapp AM, Cutler J, Cosgun KN, Klemm L, Ecker V, Winchester J, Ghergus D, Soulas-Sprauel P, Kiefer F, Heisterkamp N, Pandey A, Ngo V, Wang L, Jumaa H, Buchner M, Ruland J, Chan WC, Meffre E, Martin T, Müschen M. Developmental partitioning of SYK and ZAP70 prevents autoimmunity and cancer. Molecular Cell 2021, 81: 2094-2111.e9. PMID: 33878293, PMCID: PMC8239336, DOI: 10.1016/j.molcel.2021.03.043.Peer-Reviewed Original ResearchMeSH KeywordsAnimalsAntigens, CD19AutoimmunityB-LymphocytesCalciumCell DifferentiationCell Transformation, NeoplasticEnzyme ActivationHumansImmune ToleranceLymphoma, B-CellMiceModels, GeneticNeoplasm ProteinsNeoplasmsNFATC Transcription FactorsPhosphatidylinositol 3-KinasesProtein BindingReceptors, Antigen, B-CellSignal TransductionSyk KinaseZAP-70 Protein-Tyrosine Kinase
2015
PP2A Is Required for B Cell Survival and Represents a Therapeutic Target in Acute Lymphoblastic Leukemia
Gang X, Geng H, Chan L, Chen Z, Jiang X, Muschen M. PP2A Is Required for B Cell Survival and Represents a Therapeutic Target in Acute Lymphoblastic Leukemia. Blood 2015, 126: 902. DOI: 10.1182/blood.v126.23.902.902.Peer-Reviewed Original ResearchLB-100B cell survivalCell deathH2AX phosphorylationSer/Thr protein phosphatase 2ACell lineagesCell-specific vulnerabilityCell survivalFunction of PP2AEarly B cell developmentProtein phosphatase 2AB-cell lineageCatalytic subunit CGlycolytic fluxAnti-oxidant gene expressionTumor suppressor functionRapid cell deathS6 ribosomal proteinHigh glycolytic fluxB cell developmentImportant tumor suppressorPro-survival roleHigher reactive oxygen species (ROS) levelsCre-mediated deletionPP2A subunitsIdentification of FOXM1 as a therapeutic target in B-cell lineage acute lymphoblastic leukaemia
Buchner M, Park E, Geng H, Klemm L, Flach J, Passegué E, Schjerven H, Melnick A, Paietta E, Kopanja D, Raychaudhuri P, Müschen M. Identification of FOXM1 as a therapeutic target in B-cell lineage acute lymphoblastic leukaemia. Nature Communications 2015, 6: 6471. PMID: 25753524, PMCID: PMC4366523, DOI: 10.1038/ncomms7471.Peer-Reviewed Original ResearchMeSH KeywordsAdultAnimalsAntineoplastic AgentsB-LymphocytesCell ProliferationCell SurvivalChildClinical Trials as TopicCyclin-Dependent Kinase Inhibitor p16Drug Resistance, NeoplasmForkhead Box Protein M1Forkhead Box Protein O3Forkhead Transcription FactorsGene Expression Regulation, LeukemicHumansMicePeptidesPrecursor Cell Lymphoblastic Leukemia-LymphomaSignal TransductionSurvival AnalysisThiostreptonXenograft Model Antitumor AssaysConceptsAcute lymphoblastic leukemiaLymphoblastic leukemiaTherapeutic targetB-cell lineage acute lymphoblastic leukemiaFOXM1 levelsAggressive clinical coursePre-B cell receptor checkpointNovel therapeutic targetB cell populationsNormal B cell populationsClinical coursePoor outcomeCure rateNormal B cell developmentFOXM1 inhibitionB cell developmentDrug resistanceFoxm1 deletionFOXM1Colony formationPatientsLeukemiaCell survivalPrognosisTranscriptional inactivation