← BioTransfer GEO Dataset Finder
GEO series

Coordination of protein synthesis and decay in mammalian cells

GSE278929 Mus musculus Expression profiling by high throughput sequencing 30 samples 2025/10/07 GPL34475
Summary
Protein synthesis and decay rates must be tightly coordinated to ensure proteome homeostasis. How this coordination is established is unknown. Here we use quantitative live cell imaging combined with computational inference and proteomics to determine how changes in global protein synthesis rates alter protein decay rates. A passive adaptation of protein degradation and dilution rates operates in cells tightly coupling proliferation rate to protein synthesis rates, allowing to partially buffer changes in proteome concentrations with increased loss of short-lived proteins. In contrast, the proliferation rate of Mus musculus embryonic stem cells (mESCs) is hyposensitive to moderate changes in protein synthesis. mESCs uncouple protein degradation and dilution rates and robustly maintain their protein levels. Finally, we also show that terminally differentiated human glial cells strongly adapt protein degradation rates to altered protein synthesis. Our work illuminates the complex interplay between protein synthesis, degradation, and cell division to regulate proteome homeostasis.
Download
NCBI GEO page ↗ {# Names what the click gives you. "Open in finder" meant nothing to a visitor who arrived from a search engine and has never seen the tool. #} Find more mouse RNA-seq datasets →
Similar datasets

Search all mouse RNA-seq datasets in GEO →

Share this dataset

Metadata from NCBI GEO, cached and refreshed periodically — the NCBI page above is authoritative. Downloads link straight to NCBI/ENA; nothing is proxied through BioTransfer.