bioRxiv · 10.1101/168963
Avoidance of toxic misfolding does not explain the sequence constrains of highly expressed proteins across organisms
Abstract
The avoidance of cytotoxic effects associated with protein misfolding has been proposed as a dominant constraint on the sequence evolution and molecular clock of highly expressed proteins. Recently, Leuenberger et al. developed an elegant experimental approach to measure protein thermal stability at the proteome scale. The collected data allow us to rigorously test the predictions of the misfolding avoidance hypothesis that highly expressed proteins have evolved to be more stable, and that maintaining thermodynamic stability significantly constrains their evolution. Notably, careful re-analysis of the Leuenberger et al. data across four different organisms reveals no substantial correlation between protein stability and protein abundance. Therefore, the key predictions of the misfolding toxicity and related hypotheses are not supported by available empirical data. The data also suggest that, regardless of protein expression, protein stability does not substantially affect the protein molecular clock across organisms.
Source connections
Explore related subjects
Keep this discovery
Plata, G., Vitkup, D.. 2017-07-26. Avoidance of toxic misfolding does not explain the sequence constrains of highly expressed proteins across organisms. https://doi.org/10.1101/168963
Cite the original work for its findings. Save a collection to share your selection of sources.