Search Results - "Togher, Susan"
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Cancer-associated ASXL1 mutations may act as gain-of-function mutations of the ASXL1–BAP1 complex
Published in Nature communications (22-06-2015)“…ASXL1 is the obligate regulatory subunit of a deubiquitinase complex whose catalytic subunit is BAP1. Heterozygous mutations of ASXL1 that result in premature…”
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TET proteins regulate the lineage specification and TCR-mediated expansion of iNKT cells
Published in Nature immunology (01-01-2017)“…TET proteins regulate 5-methylcytosine epigenetic marks, and thereby regulate chromatin accessibility. Rao and colleagues show that the combined loss of TET2…”
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Selective inhibition of CD4⁺ T-cell cytokine production and autoimmunity by BET protein and c-Myc inhibitors
Published in Proceedings of the National Academy of Sciences - PNAS (04-09-2012)“…Bromodomain-containing proteins bind acetylated lysine residues on histone tails and are involved in the recruitment of additional factors that mediate histone…”
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Transcription factor Nr4a1 couples sympathetic and inflammatory cues in CNS-recruited macrophages to limit neuroinflammation
Published in Nature immunology (01-12-2015)“…Stress can induce expression of norepinephrine, which can enhance neuroinflammation. Shaked, Hedrick and colleagues show that the transcriptional repressor…”
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TET2 Regulates Mast Cell Differentiation and Proliferation through Catalytic and Non-catalytic Activities
Published in Cell reports (Cambridge) (17-05-2016)“…Dioxygenases of the TET family impact genome functions by converting 5-methylcytosine (5mC) in DNA to 5-hydroxymethylcytosine (5hmC). Here, we identified TET2…”
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Immune Adjuvant Efficacy of CpG Oligonucleotide in Cancer Treatment Is Founded Specifically upon TLR9 Function in Plasmacytoid Dendritic Cells
Published in Cancer research (Chicago, Ill.) (15-10-2011)“…The differences in function, location, and migratory pattern of conventional dendritic cells (cDC) and plasmacytoid DCs (pDC) not only point to specialized…”
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TET2 Regulates Mast Cell Differentiation and Proliferation through Catalytic and Non-catalytic Activities
Published in Cell reports (Cambridge) (15-08-2017)Get full text
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Autocrine IL-2 is required for secondary population expansion of CD8+ memory T cells
Published in Nature immunology (01-09-2011)“…The generation of CD8 + T cell memory requires both CD4 + T cells and dendritic cells. Schoenberger et al . show that autocrine production of interleukin 2 by…”
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Exhaustion-associated regulatory regions in CD8⁺ tumor-infiltrating T cells
Published in Proceedings of the National Academy of Sciences - PNAS (28-03-2017)“…T-cell exhaustion is a progressive loss of effector function and memory potential due to persistent antigen exposure, which occurs in chronic viral infections…”
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The transcription factor NFAT promotes exhaustion of activated CD8⁺ T cells
Published in Immunity (Cambridge, Mass.) (17-02-2015)“…During persistent antigen stimulation, CD8(+) T cells show a gradual decrease in effector function, referred to as exhaustion, which impairs responses in the…”
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Cutting Edge: NFAT Transcription Factors Promote the Generation of Follicular Helper T Cells in Response to Acute Viral Infection
Published in The Journal of immunology (1950) (01-03-2016)“…Follicular CD4(+) Th (Tfh) cells provide B cell help in germinal center reactions that support class switching, somatic hypermutation, and the generation of…”
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FoxO3 is a negative regulator of primary CD8+ T‐cell expansion but not of memory formation
Published in Immunology and cell biology (01-02-2015)“…The generation of CD8+ T cells by vaccination represents an important goal for protective immunity to infectious pathogens. It is thus of utmost importance to…”
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NFAT transcription factors promote the generation of follicular helper T cells in response to acute viral infection
Published in The Journal of immunology (1950) (01-05-2016)“…Abstract Follicular helper T (Tfh) cells provide B cell help in germinal center reactions that support class switching, somatic hypermutation, and the…”
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TET2 and 3 proteins control iNKT cell lineage specification and TCR mediated expansion
Published in The Journal of immunology (1950) (01-05-2017)“…Abstract TET proteins are 2-oxoglutarate- and Fe(II) dependent dioxygenases that catalyze the hydroxylation of 5-methylcytosine (5mC) to…”
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Exhaustion-associated regulatory regions in CD8^sup +^ tumor-infiltrating T cells
Published in Proceedings of the National Academy of Sciences - PNAS (28-03-2017)“…T-cell exhaustion is a progressive loss of effector function and memory potential due to persistent antigen exposure, which occurs in chronic viral infections…”
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NFAT transcription factors promote the generation of follicular helper T cells in response to acute viral infection
Published in The Journal of immunology (1950) (05-02-2016)“…Follicular helper T (Tfh) cells provide B cell help in germinal center reactions that support class switching, somatic hypermutation, and the generation of…”
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Exhaustion-associated regulatory regions in CD8 super( +) tumor-infiltrating T cells
Published in Proceedings of the National Academy of Sciences - PNAS (01-03-2017)“…T-cell exhaustion is a progressive loss of effector function and memory potential due to persistent antigen exposure, which occurs in chronic viral infections…”
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Autocrine IL-2 is required for secondary population expansion of [CD8.sup.+] memory T cells
Published in Nature immunology (01-09-2011)“…Two competing theories have been put forward to explain the role of [CD4.sup.+] T cells in priming [CD8.sup.+] memory T cells: one proposes paracrine secretion…”
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Autocrine IL-2 is required for secondary population expansion of CD8 super(+) memory T cells
Published in Nature immunology (01-09-2011)“…Two competing theories have been put forward to explain the role of CD4 super(+) T cells in priming CD8 super(+) memory T cells: one proposes paracrine…”
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The orphan nuclear receptor Nr4a1 couples sympathetic and inflammatory cues in CNS-recruited macrophages to limit neuroinflammation
Published in Nature immunology (02-11-2015)“…Molecular mechanisms linking the sympathetic stress response and inflammation remain enigmatic. Here we demonstrate that the transcription factor Nr4a1…”
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