Cellular Differentiation of Human Monocytes Is Regulated by Time-Dependent Interleukin-4 Signaling and the Transcriptional Regulator NCOR2

[1]  P. Agostinis,et al.  Integrating Next-Generation Dendritic Cell Vaccines into the Current Cancer Immunotherapy Landscape. , 2017, Trends in immunology.

[2]  Evan W. Newell,et al.  Mapping the human DC lineage through the integration of high-dimensional techniques , 2017, Science.

[3]  T. Appenzeller An unprecedented march for science. , 2017, Science.

[4]  F. Ginhoux,et al.  Tissue-Resident Macrophage Ontogeny and Homeostasis. , 2016, Immunity.

[5]  H. Stockinger,et al.  Differentiation of human monocytes and derived subsets of macrophages and dendritic cells by the HLDA10 monoclonal antibody panel , 2016, Clinical & translational immunology.

[6]  L. van de Laar,et al.  A Hitchhiker’s Guide to Myeloid Cell Subsets: Practical Implementation of a Novel Mononuclear Phagocyte Classification System , 2015, Front. Immunol..

[7]  P. Chakravarty,et al.  GM-CSF Mouse Bone Marrow Cultures Comprise a Heterogeneous Population of CD11c(+)MHCII(+) Macrophages and Dendritic Cells. , 2015, Immunity.

[8]  Michael Poidinger,et al.  Identification of cDC1- and cDC2-committed DC progenitors reveals early lineage priming at the common DC progenitor stage in the bone marrow , 2015, Nature Immunology.

[9]  F. Rosenbauer,et al.  Batf3 maintains Irf8 autoactivation for commitment of a CD8α+ cDC clonogenic progenitor , 2015, Nature Immunology.

[10]  N. McGovern,et al.  Dendritic cells and monocyte-derived cells: Two complementary and integrated functional systems. , 2015, Seminars in cell & developmental biology.

[11]  Steffen Jung,et al.  Macrophages: development and tissue specialization. , 2015, Annual review of immunology.

[12]  J. Barrett,et al.  Susceptibility to tuberculosis is associated with variants in the ASAP1 gene encoding a regulator of dendritic cell migration , 2015, Nature Genetics.

[13]  Ash A. Alizadeh,et al.  Robust enumeration of cell subsets from tissue expression profiles , 2015, Nature Methods.

[14]  M. Nussenzweig,et al.  Circulating precursors of human CD1c+ and CD141+ dendritic cells , 2015, The Journal of experimental medicine.

[15]  D. Rückerl,et al.  Macrophage proliferation, provenance, and plasticity in macroparasite infection , 2014, Immunological reviews.

[16]  Florent Ginhoux,et al.  Dendritic cells, monocytes and macrophages: a unified nomenclature based on ontogeny , 2014, Nature Reviews Immunology.

[17]  Tom C. Freeman,et al.  Transcriptome-Based Network Analysis Reveals a Spectrum Model of Human Macrophage Activation , 2014, Immunity.

[18]  S. Gygi,et al.  Identification of a Unique TGF-β Dependent Molecular and Functional Signature in Microglia , 2013, Nature Neuroscience.

[19]  M. Komatsu,et al.  Autophagy regulates phagocytosis by modulating the expression of scavenger receptors. , 2013, Immunity.

[20]  F. Buss,et al.  Myosin VI and its cargo adaptors – linking endocytosis and autophagy , 2013, Journal of Cell Science.

[21]  J. Auwerx,et al.  Emerging roles of the corepressors NCoR1 and SMRT in homeostasis. , 2013, Genes & development.

[22]  Miriam Merad,et al.  The dendritic cell lineage: ontogeny and function of dendritic cells and their subsets in the steady state and the inflamed setting. , 2013, Annual review of immunology.

[23]  V. Soumelis,et al.  Human inflammatory dendritic cells induce Th17 cell differentiation. , 2013, Immunity.

[24]  L. Nagy,et al.  Identification of novel markers of alternative activation and potential endogenous PPARγ ligand production mechanisms in human IL-4 stimulated differentiating macrophages. , 2012, Immunobiology.

[25]  Michael Poidinger,et al.  Human Tissues Contain CD141hi Cross-Presenting Dendritic Cells with Functional Homology to Mouse CD103+ Nonlymphoid Dendritic Cells , 2012, Immunity.

[26]  J. Hamilton,et al.  Defining GM-CSF– and Macrophage-CSF–Dependent Macrophage Responses by In Vitro Models , 2012, The Journal of Immunology.

[27]  M. Fehlings,et al.  Comparative Analysis of the Interaction of Helicobacter pylori with Human Dendritic Cells, Macrophages, and Monocytes , 2012, Infection and Immunity.

[28]  V. Vullo,et al.  In vitro effect of anti‐human immunodeficiency virus CCR5 antagonist maraviroc on chemotactic activity of monocytes, macrophages and dendritic cells , 2011, Clinical and experimental immunology.

[29]  F. Hu,et al.  Nuclear receptor corepressor SMRT regulates mitochondrial oxidative metabolism and mediates aging-related metabolic deterioration. , 2010, Cell metabolism.

[30]  P. Kloetzel,et al.  Superior antigen cross-presentation and XCR1 expression define human CD11c+CD141+ cells as homologues of mouse CD8+ dendritic cells , 2010, The Journal of experimental medicine.

[31]  Carla M. P. Cardoso,et al.  Rab10 Regulates Phagosome Maturation and Its Overexpression Rescues Mycobacterium‐Containing Phagosomes Maturation , 2010, Traffic.

[32]  E. Nelson,et al.  C1q Differentially Modulates Phagocytosis and Cytokine Responses during Ingestion of Apoptotic Cells by Human Monocytes, Macrophages, and Dendritic Cells1 , 2009, The Journal of Immunology.

[33]  F. Geissmann,et al.  Blood monocytes: development, heterogeneity, and relationship with dendritic cells. , 2009, Annual review of immunology.

[34]  Debra L. Fulton,et al.  TFCat: the curated catalog of mouse and human transcription factors , 2009, Genome Biology.

[35]  G. Watts,et al.  CD1a expression defines an interleukin‐12 producing population of human dendritic cells , 2009, Clinical and experimental immunology.

[36]  O. Hermanson,et al.  SMRT-mediated repression of an H3K27 demethylase in progression from neural stem cell to neuron , 2007, Nature.

[37]  F. Kishi,et al.  Functional heterogeneity of colony‐stimulating factor‐induced human monocyte‐derived macrophages , 2006, International journal of hematology.

[38]  Amir Gamliel,et al.  A SUMOylation-dependent pathway mediates transrepression of inflammatory response genes by PPAR-γ , 2005, Nature.

[39]  V. Brower Cancer vaccine field gets shot of optimism from positive results , 2005, Nature Network Boston.

[40]  T. Bieber,et al.  Transforming Growth Factor-β1 Regulates the Expression of the High-Affinity Receptor for IgE on CD34+ Stem Cell-Derived CD1a+ Dendritic Cells In Vitro , 2004 .

[41]  C. Reilly,et al.  Genome-wide analysis of mRNA decay in resting and activated primary human T lymphocytes. , 2002, Nucleic acids research.

[42]  P. Allavena,et al.  Macrophage polarization: tumor-associated macrophages as a paradigm for polarized M2 mononuclear phagocytes. , 2002, Trends in immunology.

[43]  S. Gordon,et al.  B Cells Control the Migration of a Subset of Dendritic Cells into B Cell Follicles Via CXC Chemokine Ligand 13 in a Lymphotoxin-Dependent Fashion1 , 2002, The Journal of Immunology.

[44]  J. Galon,et al.  Stat4 Is Expressed in Activated Peripheral Blood Monocytes, Dendritic Cells, and Macrophages at Sites of Th1-Mediated Inflammation1 , 2000, The Journal of Immunology.

[45]  C. Figdor,et al.  Identification of DC-SIGN, a Novel Dendritic Cell–Specific ICAM-3 Receptor that Supports Primary Immune Responses , 2000, Cell.

[46]  A. D'amico,et al.  RelB Is Essential for the Development of Myeloid-Related CD8α− Dendritic Cells but Not of Lymphoid-Related CD8α+ Dendritic Cells , 1998 .

[47]  J. Delcros,et al.  Human monocyte‐derived macrophages and dendritic cells are comparably effective in vitro in presenting HLA class I‐restricted exogenous peptides , 1997, Immunology.

[48]  Manfred Brockhaus,et al.  A Novel Inhibitory Receptor (ILT3) Expressed on Monocytes, Macrophages, and Dendritic Cells Involved in Antigen Processing , 1997, The Journal of experimental medicine.

[49]  P. Allavena,et al.  Human Macrophage–derived Chemokine (mdc), a Novel Chemoattractant for Monocytes, Monocyte-derived Dendritic Cells, and Natural Killer Cells , 1997 .

[50]  Hao Li,et al.  Production of the novel C-C chemokine MCP-4 by airway cells and comparison of its biological activity to other C-C chemokines. , 1997, The Journal of clinical investigation.

[51]  F. Sallusto,et al.  Efficient presentation of soluble antigen by cultured human dendritic cells is maintained by granulocyte/macrophage colony-stimulating factor plus interleukin 4 and downregulated by tumor necrosis factor alpha , 1994, The Journal of experimental medicine.

[52]  L. Ohno-Machado,et al.  SurfaceomeDB: a cancer-orientated database for genes encoding cell surface proteins. , 2012, Cancer immunity.

[53]  Geoffrey E. Hinton,et al.  Visualizing Data using t-SNE , 2008 .

[54]  T. Bieber,et al.  Transforming growth factor-beta1 regulates the expression of the high-affinity receptor for IgE on CD34 stem cell-derived CD1a dendritic cells in vitro. , 2004, The Journal of investigative dermatology.

[55]  A. D'amico,et al.  RelB is essential for the development of myeloid-related CD8alpha- dendritic cells but not of lymphoid-related CD8alpha+ dendritic cells. , 1998, Immunity.