S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK

Por um escritor misterioso
Last updated 16 junho 2024
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Regulation of Mammalian Autophagy in Physiology and Pathophysiology
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Selective autophagy of intracellular organelles: recent research advances
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
IJMS, Free Full-Text
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
Therapeutic Targeting of Autophagy in Disease: Biology and Pharmacology
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
SIRT1 Inhibits Apoptosis by Promoting Autophagic Flux in Human Nucleus Pulposus Cells in the Key Stage of Degeneration via ERK Signal Pathway
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
Post-translational lysine ac(et)ylation in health, ageing and disease
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Autophagy-modulated biomaterial
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Selective autophagy of intracellular organelles: recent research advances
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
Sirtuin 1 (SIRT1) Deacetylase Activity and NAD+/NADH Ratio Are Imperative for Capsaicin-Mediated Programmed Cell Death
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Quarter-Century Explorations of Bioactive Polyphenols: Diverse Health Benefits
S. Typhimurium evades autophagy by disrupting Sirt1-dependent AMPK
Salmonella Interacts With Autophagy to Offense or Defense. - Abstract - Europe PMC

© 2014-2024 zilvitismazeikiai.lt. All rights reserved.