Search Results - "Gringhuis, Sonja I."
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Fungal Engagement of the C-Type Lectin Mincle Suppresses Dectin-1-Induced Antifungal Immunity
Published in Cell host & microbe (09-04-2014)“…Recognition of fungal pathogens by C-type lectin receptor (CLR) dectin-1 on human dendritic cells is essential for triggering protective antifungal TH1 and…”
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Carbohydrate-specific signaling through the DC-SIGN signalosome tailors immunity to Mycobacterium tuberculosis , HIV-1 and Helicobacter pylori
Published in Nature immunology (01-10-2009)“…Different pathogens induce different cytokine production via the C-type lectin DC-SIGN. Geijtenbeek and colleagues show that distinct carbohydrates on the…”
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Antagonism of the Phosphatase PP1 by the Measles Virus V Protein Is Required for Innate Immune Escape of MDA5
Published in Cell host & microbe (09-07-2014)“…The cytosolic sensor MDA5 is crucial for antiviral innate immune defense against various RNA viruses including measles virus; as such, many viruses…”
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DDX3 in HIV-1 infection and sensing: A paradox
Published in Cytokine & growth factor reviews (01-04-2018)“…•Following HIV-1 infection of dendritic cells, viral DNA and RNA are sensed by different host immune sensors.•The RNA helicase DDX3 is indispensable for…”
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HIV-1 exploits innate signaling by TLR8 and DC-SIGN for productive infection of dendritic cells
Published in Nature immunology (01-05-2010)“…HIV-1 replication requires proviral production of full-length transcripts. Geijtenbeek and colleagues show that early Tat-independent HIV-1 replication coopts…”
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HIV-1 blocks the signaling adaptor MAVS to evade antiviral host defense after sensing of abortive HIV-1 RNA by the host helicase DDX3
Published in Nature immunology (01-02-2017)“…Gringhuis, Geijtenbeek and colleagues show that the RNA helicase DDX3 binds abortive HIV-1 RNA and induces type I interferon in dendritic cells, a process that…”
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RIG-I-like receptor activation by dengue virus drives follicular T helper cell formation and antibody production
Published in PLoS pathogens (01-11-2017)“…Follicular T helper cells (TFH) are fundamental in orchestrating effective antibody-mediated responses critical for immunity against viral infections and…”
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RIG-I–like Receptor Triggering by Dengue Virus Drives Dendritic Cell Immune Activation and TH1 Differentiation
Published in The Journal of immunology (1950) (15-06-2017)“…Abstract Dengue virus (DENV) causes 400 million infections annually and is one of several viruses that can cause viral hemorrhagic fever, which is…”
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Production and glyco-engineering of immunomodulatory helminth glycoproteins in plants
Published in Scientific reports (10-04-2017)“…Helminth parasites control host-immune responses by secreting immunomodulatory glycoproteins. Clinical trials and mouse model studies have demonstrated the…”
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Selective C-Rel Activation via Malt1 Controls Anti-Fungal TH-17 Immunity by Dectin-1 and Dectin-2
Published in PLoS pathogens (20-01-2011)“…C-type lectins dectin-1 and dectin-2 on dendritic cells elicit protective immunity against fungal infections through induction of TH1 and TH-17 cellular…”
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Reactive oxygen species alter brain endothelial tight junction dynamics via RhoA, PI3 kinase, and PKB signaling
Published in The FASEB journal (01-11-2007)“…The blood-brain barrier (BBB) prevents the entrance of circulating molecules and immune cells into the central nervous system. The barrier is formed by…”
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An evolutionary perspective on C-type lectins in infection and immunity
Published in Annals of the New York Academy of Sciences (01-04-2012)“…Host–pathogen interactions have coevolved for many years. On the one hand, the human immune system consists of innate and adaptive immune cells that function…”
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Innate signaling by the C-type lectin DC-SIGN dictates immune responses
Published in Cancer Immunology, Immunotherapy (01-07-2009)“…Effective immune responses depend on the recognition of pathogens by dendritic cells (DCs) through pattern recognition receptors (PRRs). These receptors induce…”
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Synthetic Abortive HIV-1 RNAs Induce Potent Antiviral Immunity
Published in Frontiers in immunology (23-01-2020)“…Strong innate and adaptive immune responses are paramount in combating viral infections. Dendritic cells (DCs) detect viral infections via cytosolic RIG-I like…”
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Salp15 binding to DC-SIGN inhibits cytokine expression by impairing both nucleosome remodeling and mRNA stabilization
Published in PLoS pathogens (01-02-2008)“…Ixodes ticks are major vectors for human pathogens, such as Borrelia burgdorferi, the causative agent of Lyme disease. Tick saliva contains immunosuppressive…”
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MAVS Genetic Variation Is Associated with Decreased HIV-1 Replication In Vitro and Reduced CD4 + T Cell Infection in HIV-1-Infected Individuals
Published in Viruses (16-07-2020)“…The mitochondrial antiviral protein MAVS is a key player in the induction of antiviral responses; however, human immunodeficiency virus 1 (HIV-1) is able to…”
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C-type lectin receptors in the control of T helper cell differentiation
Published in Nature reviews. Immunology (01-07-2016)“…Key Points C-type lectin receptors (CLRs) are efficient pattern-recognition receptors (PRRs) that interact with pathogens via carbohydrate structures, leading…”
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Measles Virus Suppresses RIG-I-like Receptor Activation in Dendritic Cells via DC-SIGN-Mediated Inhibition of PP1 Phosphatases
Published in Cell host & microbe (09-07-2014)“…Dendritic cells (DCs) are targets of measles virus (MV) and play central roles in viral dissemination. However, DCs express the RIG-I-like receptors (RLRs)…”
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Dectin-1 is an extracellular pathogen sensor for the induction and processing of IL-1β via a noncanonical caspase-8 inflammasome
Published in Nature immunology (01-03-2012)“…Production of the proinflammatory cytokine IL-1β is crucial in host defense. Geijtenbeek and colleagues show that dectin-1 signaling in response to fungi and…”
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Signalling through C-type lectin receptors: shaping immune responses
Published in Nature reviews. Immunology (01-07-2009)“…Key Points Crosstalk between pattern recognition receptors (PRRs) expressed by dendritic cells orchestrates T helper (T H ) cell differentiation through the…”
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