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TBK1 recruitment to STING activates both IRF3 and NF-κB that mediate immune  defense against tumors and viral infections | PNAS
TBK1 recruitment to STING activates both IRF3 and NF-κB that mediate immune defense against tumors and viral infections | PNAS

Frontiers | STING1 in Different Organelles: Location Dictates Function
Frontiers | STING1 in Different Organelles: Location Dictates Function

Targeting Stimulator of Interferon Genes (STING): A Medicinal Chemistry  Perspective | Journal of Medicinal Chemistry
Targeting Stimulator of Interferon Genes (STING): A Medicinal Chemistry Perspective | Journal of Medicinal Chemistry

Modular Architecture of the STING C-Terminal Tail Allows Interferon and  NF-κB Signaling Adaptation
Modular Architecture of the STING C-Terminal Tail Allows Interferon and NF-κB Signaling Adaptation

TBK1 recruitment to STING activates both IRF3 and NF-κB that mediate immune  defense against tumors and viral infections | PNAS
TBK1 recruitment to STING activates both IRF3 and NF-κB that mediate immune defense against tumors and viral infections | PNAS

Modular Architecture of the STING C-Terminal Tail Allows Interferon and  NF-κB Signaling Adaptation - ScienceDirect
Modular Architecture of the STING C-Terminal Tail Allows Interferon and NF-κB Signaling Adaptation - ScienceDirect

Modular Architecture of the STING C-Terminal Tail Allows Interferon and  NF-κB Signaling Adaptation - ScienceDirect
Modular Architecture of the STING C-Terminal Tail Allows Interferon and NF-κB Signaling Adaptation - ScienceDirect

Innate immune response orchestrates phosphoribosyl pyrophosphate  synthetases to support DNA repair - ScienceDirect
Innate immune response orchestrates phosphoribosyl pyrophosphate synthetases to support DNA repair - ScienceDirect

Modular Architecture of the STING C-Terminal Tail Allows Interferon and  NF-κB Signaling Adaptation - ScienceDirect
Modular Architecture of the STING C-Terminal Tail Allows Interferon and NF-κB Signaling Adaptation - ScienceDirect

miniCTT, a functional domain of STING distinct from TBK1 and IRF3... |  Download Scientific Diagram
miniCTT, a functional domain of STING distinct from TBK1 and IRF3... | Download Scientific Diagram

Modular Architecture of the STING C-Terminal Tail Allows Interferon and  NF-κB Signaling Adaptation - ScienceDirect
Modular Architecture of the STING C-Terminal Tail Allows Interferon and NF-κB Signaling Adaptation - ScienceDirect

Modular Architecture of the STING C-Terminal Tail Allows Interferon and  NF-κB Signaling Adaptation - ScienceDirect
Modular Architecture of the STING C-Terminal Tail Allows Interferon and NF-κB Signaling Adaptation - ScienceDirect

TBK1 recruitment to STING activates both IRF3 and NF-κB that mediate immune  defense against tumors and viral infections | PNAS
TBK1 recruitment to STING activates both IRF3 and NF-κB that mediate immune defense against tumors and viral infections | PNAS

The cGAS–STING pathway as a therapeutic target in inflammatory diseases |  Nature Reviews Immunology
The cGAS–STING pathway as a therapeutic target in inflammatory diseases | Nature Reviews Immunology

Targeting Stimulator of Interferon Genes (STING): A Medicinal Chemistry  Perspective | Journal of Medicinal Chemistry
Targeting Stimulator of Interferon Genes (STING): A Medicinal Chemistry Perspective | Journal of Medicinal Chemistry

Modular Architecture of the STING C-Terminal Tail Allows Interferon and  NF-κB Signaling Adaptation
Modular Architecture of the STING C-Terminal Tail Allows Interferon and NF-κB Signaling Adaptation

miniCTT mediates activation of DCs. (A) BFP and CD86 expression in DCs... |  Download Scientific Diagram
miniCTT mediates activation of DCs. (A) BFP and CD86 expression in DCs... | Download Scientific Diagram

Transcription-independent regulation of STING activation and innate immune  responses by IRF8 in monocytes | Nature Communications
Transcription-independent regulation of STING activation and innate immune responses by IRF8 in monocytes | Nature Communications

Modular Architecture of the STING C-Terminal Tail Allows Interferon and  NF-κB Signaling Adaptation
Modular Architecture of the STING C-Terminal Tail Allows Interferon and NF-κB Signaling Adaptation

GRA15 promotes activation of STING. A, Diagram detailing STING domains... |  Download Scientific Diagram
GRA15 promotes activation of STING. A, Diagram detailing STING domains... | Download Scientific Diagram

Modular Architecture of the STING C-Terminal Tail Allows Interferon and  NF-κB Signaling Adaptation
Modular Architecture of the STING C-Terminal Tail Allows Interferon and NF-κB Signaling Adaptation

Engineering the Immune Adaptor Protein STING as a Functional Carrier - Sun  - 2021 - Advanced Therapeutics - Wiley Online Library
Engineering the Immune Adaptor Protein STING as a Functional Carrier - Sun - 2021 - Advanced Therapeutics - Wiley Online Library

Activation of STING by targeting a pocket in the transmembrane domain |  Nature
Activation of STING by targeting a pocket in the transmembrane domain | Nature