Please use this identifier to cite or link to this item: https://doi.org/10.1182/blood-2007-12-130138
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dc.titleSTAT3-And STAT5-dependent pathways competitively regulate the pan-differentiation of CD34 pos cells into tumor-competent dendritic cells
dc.contributor.authorCohen, P.A
dc.contributor.authorKoski, G.K
dc.contributor.authorCzerniecki, B.J
dc.contributor.authorBunting, K.D
dc.contributor.authorFu, X.-Y
dc.contributor.authorWang, Z
dc.contributor.authorZhang, W.-J
dc.contributor.authorCarter, C.S
dc.contributor.authorAwad, M
dc.contributor.authorDistel, C.A
dc.contributor.authorNagem, H
dc.contributor.authorPaustian, C.C
dc.contributor.authorJohnson, T.D
dc.contributor.authorTisdale, J.F
dc.contributor.authorShu, S
dc.date.accessioned2020-11-23T09:02:46Z
dc.date.available2020-11-23T09:02:46Z
dc.date.issued2008
dc.identifier.citationCohen, P.A, Koski, G.K, Czerniecki, B.J, Bunting, K.D, Fu, X.-Y, Wang, Z, Zhang, W.-J, Carter, C.S, Awad, M, Distel, C.A, Nagem, H, Paustian, C.C, Johnson, T.D, Tisdale, J.F, Shu, S (2008). STAT3-And STAT5-dependent pathways competitively regulate the pan-differentiation of CD34 pos cells into tumor-competent dendritic cells. Blood 112 (5) : 1832-1843. ScholarBank@NUS Repository. https://doi.org/10.1182/blood-2007-12-130138
dc.identifier.issn0006-4971
dc.identifier.urihttps://scholarbank.nus.edu.sg/handle/10635/183926
dc.description.abstractThe clinical outcomes of dendritic cell (DC)-based immunotherapy remain disappointing, with DCs often displaying a tenuous capacity to complete maturation and DC1 polarization in the tumor host. Surprisingly, we observed that the capacity for successful DC1 polarization, including robust IL12p70 production, could be regulated by STAT-dependent events even prior to DC differentiation. Exposure of CD34 pos cells to single-agent granulocyte-macrophage colony-stimulating factor (GMCSF) induced multilineage, STAT5-dependent differentiation, including DCs that failed to mature in the absence of further exogenous signals. In contrast, Flt3L induced nearly global differentiation of CD34 Pos cells into spontaneously maturing DCs. IL-6 synergized with Flt3L to produce explosive, STAT3-dependent proliferation of phenotypically undifferentiated cells that nevertheless functioned as committed DC1 precursors. Such precursors not only resisted many tumor-associated immunosuppressants, but also responded to tumor contact or TGF? with facilitated DC maturation and IL12p70 production, and displayed a superior capacity to reverse tumor-induced T-cell tolerance. GMCSF preempted Flt3L or Flt3L plus IL-6 licensing by blocking STAT3 activation and promoting STAT5-dependent differentiation. Paradoxically, following overt DC differentiation, STAT5 enhanced whereas STAT3 inhibited DC1 polarization. Therefore, nonoverlapping, sequential activation of STAT3 and STAT5, achievable by sequenced exposure to Flt3L plus IL-6, then GMCSF, selects for multilog expansion, programming, and DC1 polarization of tumor-competent DCs from CD34 Pos cells.
dc.publisherAmerican Society of Hematology
dc.rightsAttribution 4.0 International
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.sourceUnpaywall 20201031
dc.subjectCD135 antigen
dc.subjectCD34 antigen
dc.subjectinterferon regulatory factor
dc.subjectinterleukin 12p70
dc.subjectinterleukin 6
dc.subjectSTAT3 protein
dc.subjectSTAT5 protein
dc.subjecttoll like receptor
dc.subjecttransforming growth factor beta
dc.subjectCD34 antigen
dc.subjectflt3 ligand protein
dc.subjectinterleukin 6
dc.subjectmembrane protein
dc.subjectrecombinant granulocyte macrophage colony stimulating factor
dc.subjectSTAT3 protein
dc.subjectStat3 protein, mouse
dc.subjectSTAT5 protein
dc.subjectanimal cell
dc.subjectanimal experiment
dc.subjectanimal model
dc.subjectarticle
dc.subjectcell differentiation
dc.subjectcell function
dc.subjectcell maturation
dc.subjectcell polarity
dc.subjectcell proliferation
dc.subjectcontrolled study
dc.subjectcytokine production
dc.subjectdendritic cell
dc.subjectenzyme activation
dc.subjectenzyme inhibition
dc.subjectenzyme regulation
dc.subjectin vivo study
dc.subjectmouse
dc.subjectnonhuman
dc.subjectpriority journal
dc.subjectprotein interaction
dc.subjectsignal transduction
dc.subjectadoptive immunotherapy
dc.subjectanimal
dc.subjectBagg albino mouse
dc.subjectbone marrow cell
dc.subjectC3H mouse
dc.subjectC57BL mouse
dc.subjectcytology
dc.subjectdendritic cell
dc.subjectdrug effect
dc.subjectexperimental neoplasm
dc.subjectfemale
dc.subjectgenetics
dc.subjectimmunology
dc.subjectmetabolism
dc.subjectmouse mutant
dc.subjectphysiology
dc.subjectAnimals
dc.subjectAntigens, CD34
dc.subjectBone Marrow Cells
dc.subjectCell Differentiation
dc.subjectDendritic Cells
dc.subjectFemale
dc.subjectGranulocyte Macrophage Colony-Stimulating Factors, Recombinant
dc.subjectImmunotherapy, Adoptive
dc.subjectInterleukin-6
dc.subjectMembrane Proteins
dc.subjectMice
dc.subjectMice, Inbred BALB C
dc.subjectMice, Inbred C3H
dc.subjectMice, Inbred C57BL
dc.subjectMice, Knockout
dc.subjectNeoplasms, Experimental
dc.subjectSTAT3 Transcription Factor
dc.subjectSTAT5 Transcription Factor
dc.typeArticle
dc.contributor.departmentBIOCHEMISTRY
dc.description.doi10.1182/blood-2007-12-130138
dc.description.sourcetitleBlood
dc.description.volume112
dc.description.issue5
dc.description.page1832-1843
dc.published.statepublished
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