S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK

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S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
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S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Toll‐like receptor signalling cross‐activates the autophagic pathway to restrict Salmonella Typhimurium growth in macrophages - Liu - 2019 - Cellular Microbiology - Wiley Online Library
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
ER-phagy: mechanisms, regulation, and diseases connected to the lysosomal clearance of the endoplasmic reticulum
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Autophagy in intracellular bacterial infection - ScienceDirect
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Corilagin alleviates intestinal ischemia/reperfusion injury by relieving oxidative stress and apoptosis via AMPK/Sirt1-autophagy pathway - Bin Li, Wenlian Li, Meiling Zheng, Yunxiang Wang, Yunpeng Diao, Xiaojuan Mou, Jing Liu, 2023
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Beclin 1 Forms Two Distinct Phosphatidylinositol 3-Kinase Complexes with Mammalian Atg14 and UVRAG
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Frontiers The role of SIRT1 in the process of Toxoplasma gondii infection of RAW 264.7 macrophages
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Full article: Regulation and repurposing of nutrient sensing and autophagy in innate immunity
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Host sirtuin 2 as an immunotherapeutic target against tuberculosis
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Research Progress on the Role of Sirtuin 1 in Cerebral Ischemia
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Metabolic regulation of inflammasomes in inflammation - Yang - 2019 - Immunology - Wiley Online Library
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Activation of TGF-β-activated kinase 1 (TAK1) restricts Salmonella Typhimurium growth by inducing AMPK activation and autophagy
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Evidence and speculation: the response of Salmonella confronted by autophagy in macrophages
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