Cells must be able to sense and adapt to their surroundings to thrive in a dynamic environment. Key to adapting to a low nutrient environment is the Integrated Stress Response (ISR), a short-lived pathway that allows cells to either regain cellular homeostasis or facilitate apoptosis during periods of stress. Central to the ISR is the protein kinase General Control Non-depressible 2 (GCN2), which is responsible for sensing starvation. Upon amino acid deficiency, GCN2 is activated and initiates the ISR by phosphorylating the translation initiation factor eIF2α, stalling protein translation, and activating the transcription factor ATF4, which in turn up-regulates autophagy and biosynthesis pathways. A key outstanding question is how GCN2 is a...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells must be able to sense and adapt to their surroundings to thrive in a dynamic environment. Key ...
Cells must be able to sense and adapt to their surroundings to thrive in a dynamic environment. Key ...
Cells must be able to sense and adapt to their surroundings to thrive in a dynamic environment. Key ...
Cells must be able to sense and adapt to their surroundings to thrive in a dynamic environment. Key ...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
The eukaryotic translation initiation factor 2α (eIF2α) kinase GCN2 is activated by amino acid starv...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
The eukaryotic translation initiation factor 2α (eIF2α) kinase GCN2 is activated by amino acid starv...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells must be able to sense and adapt to their surroundings to thrive in a dynamic environment. Key ...
Cells must be able to sense and adapt to their surroundings to thrive in a dynamic environment. Key ...
Cells must be able to sense and adapt to their surroundings to thrive in a dynamic environment. Key ...
Cells must be able to sense and adapt to their surroundings to thrive in a dynamic environment. Key ...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
The eukaryotic translation initiation factor 2α (eIF2α) kinase GCN2 is activated by amino acid starv...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
The eukaryotic translation initiation factor 2α (eIF2α) kinase GCN2 is activated by amino acid starv...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...
Cells dynamically adjust their protein translation profile to maintain homeostasis in changing envir...