This information is current as Monocytes / Dendritic Cells RNA To Upregulate CD 1 a Molecules on Epigenetically Suppressive PIWI-Interacting IL-4 Inhibits the Biogenesis
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Jun Liu | Xin He | T. Pan | Xu Zhang | Bingfeng Liu | Hui Zhang | Yiwen Zhang | Xue Zhang | Xiaobing Duan | Qifei Hu | Hai-hua Luo | Chao Liu | Jingliang Chen | J. Zhang | Xingru Ma | Jingliang Zhang
[1] Shangqin Guo,et al. Piwi Genes Are Dispensable for Normal Hematopoiesis in Mice , 2013, PloS one.
[2] Xun Lan,et al. Amplification of distant estrogen response elements deregulates target genes associated with tamoxifen resistance in breast cancer. , 2013, Cancer cell.
[3] Li Mao,et al. Novel dimensions of piRNAs in cancer. , 2013, Cancer letters.
[4] Julius Brennecke,et al. Transcriptional Silencing of Transposons by Piwi and Maelstrom and Its Impact on Chromatin State and Gene Expression , 2012, Cell.
[5] Ansuman T. Satpathy,et al. Re(de)fining the dendritic cell lineage , 2012, Nature Immunology.
[6] Liang-Hu Qu,et al. RTL-P: a sensitive approach for detecting sites of 2′-O-methylation in RNA molecules , 2012, Nucleic acids research.
[7] Chris Sander,et al. A Role for Neuronal piRNAs in the Epigenetic Control of Memory-Related Synaptic Plasticity , 2012, Cell.
[8] Steven P Gygi,et al. Angiogenin-induced tRNA fragments inhibit translation initiation. , 2011, Molecular cell.
[9] Mohammad M. Karimi,et al. DNA methylation and SETDB1/H3K9me3 regulate predominantly distinct sets of genes, retroelements, and chimeric transcripts in mESCs. , 2011, Cell stem cell.
[10] A. Aravin,et al. PIWI-interacting small RNAs: the vanguard of genome defence , 2011, Nature Reviews Molecular Cell Biology.
[11] Anthony Boureux,et al. Maternal mRNA deadenylation and decay by the piRNA pathway in the early Drosophila embryo , 2010, Nature.
[12] J. Casanova,et al. Human CD14dim Monocytes Patrol and Sense Nucleic Acids and Viruses via TLR7 and TLR8 Receptors , 2010, Immunity.
[13] R. Roeder,et al. Cell growth- and differentiation-dependent regulation of RNA polymerase III transcription , 2010, Cell cycle.
[14] A. Hopper,et al. tRNA biology charges to the front. , 2010, Genes & development.
[15] S. Anderson,et al. Cutting Edge: KIR Antisense Transcripts Are Processed into a 28-Base PIWI-Like RNA in Human NK Cells , 2010, The Journal of Immunology.
[16] D. Haussecker,et al. Human tRNA-derived small RNAs in the global regulation of RNA silencing. , 2010, RNA.
[17] Steffen Jung,et al. Development of Monocytes, Macrophages, and Dendritic Cells , 2010, Science.
[18] A. Malhotra,et al. A novel class of small RNAs: tRNA-derived RNA fragments (tRFs). , 2009, Genes & development.
[19] Haifan Lin,et al. The biogenesis and function of PIWI proteins and piRNAs: progress and prospect. , 2009, Annual review of cell and developmental biology.
[20] J. Mattick,et al. Small RNAs derived from snoRNAs. , 2009, RNA.
[21] Julius Brennecke,et al. Specialized piRNA Pathways Act in Germline and Somatic Tissues of the Drosophila Ovary , 2009, Cell.
[22] S. Yamasaki,et al. Angiogenin cleaves tRNA and promotes stress-induced translational repression , 2009, The Journal of cell biology.
[23] J. Workman,et al. The heterochromatin protein 1 (HP1) family: put away a bias toward HP1. , 2008, Molecules and cells.
[24] Michael B. Brenner,et al. CD1 antigen presentation: how it works , 2007, Nature Reviews Immunology.
[25] Jack Benner,et al. Automethylation of G9a and its implication in wider substrate specificity and HP1 binding , 2007, Nucleic acids research.
[26] Seth D Findley,et al. Drosophila PIWI associates with chromatin and interacts directly with HP1a. , 2007, Genes & development.
[27] Š. Vaňáčová,et al. The exosome and RNA quality control in the nucleus , 2007, EMBO reports.
[28] C. Sander,et al. A novel class of small RNAs bind to MILI protein in mouse testes , 2006, Nature.
[29] N. Pace,et al. RNase P: interface of the RNA and protein worlds. , 2006, Trends in biochemical sciences.
[30] I. Wilson,et al. T cell activation by lipopeptide antigens. , 2005, Science.
[31] Steffen Jung,et al. Blood monocytes consist of two principal subsets with distinct migratory properties. , 2003, Immunity.
[32] J. Milner,et al. p53 represses RNA polymerase III transcription by targeting TBP and inhibiting promoter occupancy by TFIIIB , 2003, The EMBO journal.
[33] M. Nashimoto,et al. A candidate prostate cancer susceptibility gene encodes tRNA 3' processing endoribonuclease. , 2003, Nucleic acids research.
[34] M. Awad,et al. CD1 expression in psoriatic and rheumatoid arthritis. , 2000, Rheumatology.
[35] K. Bottomly. T Cells and Dendritic Cells Get Intimate , 1999, Science.
[36] Azuma,et al. Expression of B7 co‐stimulatory molecules and CD1a antigen by alveolar macrophages in allergic bronchial asthma , 1998, Clinical and experimental allergy : journal of the British Society for Allergy and Clinical Immunology.
[37] P. Allavena,et al. IL‐10 prevents the differentiation of monocytes to dendritic cells but promotes their maturation to macrophages , 1998, European journal of immunology.
[38] Marianne Ekman,et al. Differentiation of human dendritic cells from monocytes in vitro , 1997, European journal of immunology.
[39] Liangji Zhou,et al. CD14+ blood monocytes can differentiate into functionally mature CD83+ dendritic cells. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[40] N. Savage,et al. Induction of the CD1a Langerhans cell marker on human monocytes. , 1995, Archives of oral biology.
[41] 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.
[42] P. Rigby,et al. Regulation of RNA polymerase III transcription in response to F9 embryonal carcinoma stem cell differentiation , 1989, Cell.
[43] J. Bonner,et al. Differentiation , 1968, Nature.
[44] Haifan Lin,et al. A novel epigenetic mechanism in Drosophila somatic cells mediated by Piwi and piRNAs. , 2008, Cold Spring Harbor symposia on quantitative biology.
[45] T. Jenuwein,et al. Epigenetic regulation of telomere length in mammalian cells by the Suv39h1 and Suv39h2 histone methyltransferases , 2004, Nature Genetics.
[46] E. Grant,et al. CD1-restricted microbial lipid antigen-specific recognition found in the CD8+ alpha beta T cell pool. , 1999, Journal of immunology.
[47] S. Porcelli,et al. The CD1 system: antigen-presenting molecules for T cell recognition of lipids and glycolipids. , 1999, Annual review of immunology.