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Molecular Therapy : the Journal of the American Society of Gene Therapy
|
August 2, 2017
RIG-I Activation Protects and Rescues from Lethal Influenza Virus Infection and Bacterial Superinfection
Christoph Coch, Jan Phillip Stümpel, Vanessa Lilien-Waldau, et al.
Nature
|
August 15, 2014
Antiviral immunity via RIG-I-mediated recognition of RNA bearing 5'-diphosphates
Delphine Goubau, Martin Schlee, Safia Deddouche, et al.
Cancer Immunology Research
|
May 5, 2017
RIG-I Resists Hypoxia-Induced Immunosuppression and Dedifferentiation
Christina Engel, Grethe Brügmann, Silke Lambing, et al.
Immunity
|
July 7, 2009
Recognition of 5' triphosphate by RIG-I helicase requires short blunt double-stranded RNA as contained in panhandle of negative-strand virus
Martin Schlee, Andreas Roth, Veit Hornung, et al.
Stem Cells (Dayton, Ohio)
|
February 8, 2013
Targeting the cytosolic innate immune receptors RIG-I and MDA5 effectively counteracts cancer cell heterogeneity in glioblastoma
Martin Glas, Christoph Coch, Daniel Trageser, et al.
Immunity
|
July 19, 2015
A Conserved Histidine in the RNA Sensor RIG-I Controls Immune Tolerance to N1-2'O-Methylated Self RNA
Christine Schuberth-Wagner, Janos Ludwig, Ann Kristin Bruder, et al.
Nucleic Acids Research
|
October 13, 2023
A conserved isoleucine in the binding pocket of RIG-I controls immune tolerance to mitochondrial RNA
Ann Kristin de Regt, Kanchan Anand, Katrin Ciupka, et al.
Nature Immunology
|
September 8, 2015
Sequence-specific activation of the DNA sensor cGAS by Y-form DNA structures as found in primary HIV-1 cDNA
Anna-Maria Herzner, Cristina Amparo Hagmann, Marion Goldeck, et al.
Nature Communications
|
February 20, 2024
Chronic endoplasmic reticulum stress in myotonic dystrophy type 2 promotes autoimmunity via mitochondrial DNA release
Sarah Rösing, Fabian Ullrich, Susann Meisterfeld, et al.
Immunity
|
April 16, 2020
Immune Sensing of Synthetic, Bacterial, and Protozoan RNA by Toll-like Receptor 8 Requires Coordinated Processing by RNase T2 and RNase 2
Thomas Ostendorf, Thomas Zillinger, Katarzyna Andryka, et al.
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Showing results (51-60 of 63) with videos related to
Sort By:
Page
of 7
Molecular Therapy : the Journal of the American Society of Gene Therapy
|
August 2, 2017
RIG-I Activation Protects and Rescues from Lethal Influenza Virus Infection and Bacterial Superinfection
Christoph Coch, Jan Phillip Stümpel, Vanessa Lilien-Waldau, et al.
Nature
|
August 15, 2014
Antiviral immunity via RIG-I-mediated recognition of RNA bearing 5'-diphosphates
Delphine Goubau, Martin Schlee, Safia Deddouche, et al.
Cancer Immunology Research
|
May 5, 2017
RIG-I Resists Hypoxia-Induced Immunosuppression and Dedifferentiation
Christina Engel, Grethe Brügmann, Silke Lambing, et al.
Immunity
|
July 7, 2009
Recognition of 5' triphosphate by RIG-I helicase requires short blunt double-stranded RNA as contained in panhandle of negative-strand virus
Martin Schlee, Andreas Roth, Veit Hornung, et al.
Stem Cells (Dayton, Ohio)
|
February 8, 2013
Targeting the cytosolic innate immune receptors RIG-I and MDA5 effectively counteracts cancer cell heterogeneity in glioblastoma
Martin Glas, Christoph Coch, Daniel Trageser, et al.
Immunity
|
July 19, 2015
A Conserved Histidine in the RNA Sensor RIG-I Controls Immune Tolerance to N1-2'O-Methylated Self RNA
Christine Schuberth-Wagner, Janos Ludwig, Ann Kristin Bruder, et al.
Nucleic Acids Research
|
October 13, 2023
A conserved isoleucine in the binding pocket of RIG-I controls immune tolerance to mitochondrial RNA
Ann Kristin de Regt, Kanchan Anand, Katrin Ciupka, et al.
Nature Immunology
|
September 8, 2015
Sequence-specific activation of the DNA sensor cGAS by Y-form DNA structures as found in primary HIV-1 cDNA
Anna-Maria Herzner, Cristina Amparo Hagmann, Marion Goldeck, et al.
Nature Communications
|
February 20, 2024
Chronic endoplasmic reticulum stress in myotonic dystrophy type 2 promotes autoimmunity via mitochondrial DNA release
Sarah Rösing, Fabian Ullrich, Susann Meisterfeld, et al.
Immunity
|
April 16, 2020
Immune Sensing of Synthetic, Bacterial, and Protozoan RNA by Toll-like Receptor 8 Requires Coordinated Processing by RNase T2 and RNase 2
Thomas Ostendorf, Thomas Zillinger, Katarzyna Andryka, et al.
Page
of 7