Constituents of multiprotein complexes are required at well-defined levels relative to each other. However, it remains unknown whether eukaryotic cells typically produce precise amounts of subunits, or instead rely on degradation to mitigate imprecise production. Here, we quantified the production rates of multiprotein complexes in unicellular and multicellular eukaryotes using ribosome profiling. By resolving read-mapping ambiguities, which occur for a large fraction of ribosome footprints and distort quantitation accuracy in eukaryotes, we found that obligate components of multiprotein complexes are produced in proportion to their stoichiometry, indicating that their abundances are already precisely tuned at the synthesis level. By system...
Summary: Protein degradation is known to be a key component of expression regulation for individual ...
All living cells contain ribosomes, complex macromolecular assemblies of ribonucleic acid (RNA) and ...
Protein synthesis is the most energetically expensive process in prokaryotes. Understanding how pro...
BACKGROUND. Cell function necessitates the assemblage of proteins into complexes, a process which re...
BACKGROUND. Cell function necessitates the assemblage of proteins into complexes, a process which re...
SummaryQuantitative views of cellular functions require precise measures of rates of biomolecule pro...
Quantitative views of cellular functions require precise measures of rates of biomolecule production...
How do cells maintain relative proportions of protein complex components? Advances in quantitative, ...
© 2020 The Authors How do cells maintain relative proportions of protein complex components? Advance...
Understanding the regulation and structure of ribosomes is essential to understanding protein synthe...
Understanding the regulation and structure of ribosomes is essential to understanding protein synthe...
Translation in baker’s yeast involves the coordinated interaction of 200 000 ribosomes, 3 000 000 tR...
Understanding the regulation and structure of ribosomes is essential to understanding protein synthe...
Understanding the regulation and structure of ribosomes is essential to understanding protein synthe...
SummaryUnderstanding the regulation and structure of ribosomes is essential to understanding protein...
Summary: Protein degradation is known to be a key component of expression regulation for individual ...
All living cells contain ribosomes, complex macromolecular assemblies of ribonucleic acid (RNA) and ...
Protein synthesis is the most energetically expensive process in prokaryotes. Understanding how pro...
BACKGROUND. Cell function necessitates the assemblage of proteins into complexes, a process which re...
BACKGROUND. Cell function necessitates the assemblage of proteins into complexes, a process which re...
SummaryQuantitative views of cellular functions require precise measures of rates of biomolecule pro...
Quantitative views of cellular functions require precise measures of rates of biomolecule production...
How do cells maintain relative proportions of protein complex components? Advances in quantitative, ...
© 2020 The Authors How do cells maintain relative proportions of protein complex components? Advance...
Understanding the regulation and structure of ribosomes is essential to understanding protein synthe...
Understanding the regulation and structure of ribosomes is essential to understanding protein synthe...
Translation in baker’s yeast involves the coordinated interaction of 200 000 ribosomes, 3 000 000 tR...
Understanding the regulation and structure of ribosomes is essential to understanding protein synthe...
Understanding the regulation and structure of ribosomes is essential to understanding protein synthe...
SummaryUnderstanding the regulation and structure of ribosomes is essential to understanding protein...
Summary: Protein degradation is known to be a key component of expression regulation for individual ...
All living cells contain ribosomes, complex macromolecular assemblies of ribonucleic acid (RNA) and ...
Protein synthesis is the most energetically expensive process in prokaryotes. Understanding how pro...