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1.
Stem Cells ; 32(12): 3232-44, 2014 Dec.
Article in English | MEDLINE | ID: mdl-25100642

ABSTRACT

Maintenance of myeloid progenitor cells is controlled by complex regulatory mechanisms and is orchestrated by multiple different transcription factors. Here, we report that the activation of the transcription factor nuclear factor of activated T cells (NFAT) by calcium-sensing protein calcineurin inhibits the proliferation of myeloid granulocyte-monocyte progenitors (GMPs). Myeloid progenitor subtypes exhibit variable sensitivity to induced Ca(2+) entry and consequently display differential engagement of the calcineurin-NFAT pathway. This study shows that inhibition of the calcineurin-NFAT pathway enhances the proliferation of GMPs both in vitro and in vivo and demonstrates that calcineurin-NFAT signaling in GMPs is initiated by Flt3-L. Inhibition of the calcineurin-NFAT pathway modified expression of the cell cycle regulation genes Cdk4, Cdk6, and Cdkn1a (p21), thus enabling rapid cell cycle progression specifically in GMPs. NFAT inhibitor drugs are extensively used in the clinic to restrict the pathological activation of lymphoid cells, and our data reveal for the first time that these therapies also exert potent effects on maintenance of the myeloid cell compartment through specific regulation of GMP proliferation.


Subject(s)
Calcineurin/metabolism , Calcium/metabolism , Membrane Proteins/metabolism , Monocytes/metabolism , NFATC Transcription Factors/metabolism , Signal Transduction , Stem Cells/metabolism , Animals , Granulocytes/metabolism , Mice, Inbred C57BL , Myeloid Cells/metabolism , Signal Transduction/physiology
2.
EMBO Mol Med ; 4(4): 269-82, 2012 Apr.
Article in English | MEDLINE | ID: mdl-22311511

ABSTRACT

Nuclear factor of activated T cells (NFAT) comprises a family of transcription factors that regulate T cell development, activation and differentiation. NFAT signalling can also mediate granulocyte and dendritic cell (DC) activation, but it is unknown whether NFAT influences their development from progenitors. Here, we report a novel role for calcineurin/NFAT signalling as a negative regulator of myeloid haematopoiesis. Reconstituting lethally irradiated mice with haematopoietic stem cells expressing an NFAT-inhibitory peptide resulted in enhanced development of the myeloid compartment. Culturing bone marrow cells in media supplemented with Flt3-L in the presence of the calcineurin/NFAT inhibitor Cyclosporin A increased numbers of differentiated DC. Global gene expression analysis of untreated DC and NFAT-inhibited DC revealed differential expression of transcripts that regulate cell cycle and apoptosis. In conclusion, these results provide evidence that calcineurin/NFAT signalling negatively regulates myeloid lineage development. The finding that inhibition of NFAT enhances myeloid development provides a novel insight into understanding how the treatment with drugs targeting calcineurin/NFAT signalling influence the homeostasis of the innate immune system.


Subject(s)
Calcineurin/metabolism , Hematopoiesis , Myeloid Cells/cytology , NFATC Transcription Factors/metabolism , Signal Transduction , Animals , Cyclosporine/pharmacology , Dendritic Cells/cytology , Dendritic Cells/metabolism , Hematopoietic Stem Cells/cytology , Hematopoietic Stem Cells/metabolism , Immunosuppressive Agents/pharmacology , Mice , Mice, Inbred C57BL , Myeloid Cells/metabolism , NFATC Transcription Factors/genetics , Up-Regulation
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