The signal recognition particle (SRP) is a universally conserved cellular machinery responsible for delivering membrane and secretory proteins to the proper cellular destination. The precise mechanism by which fidelity is achieved by the SRP pathway within the in vivo environment is yet to be understood. Previous studies have focused on the SRP pathway in isolation. Here we describe another important factor that modulates substrate selection by the SRP pathway: the ongoing synthesis of the nascent polypeptide chain by the ribosome. A slower translation elongation rate rescues the targeting defect of substrate proteins bearing mutant, suboptimal signal sequences both in vitro and in vivo. Consistent with a kinetic origin of this effect, simi...
During cotranslational protein targeting by the Signal Recognition Particle (SRP), the correct cargo...
SummaryThe signal recognition particle (SRP) binds to ribosomes that synthesize nascent chains beari...
Proper protein localization is essential for all cells. However, the precise mechanism by which high...
The signal recognition particle (SRP) is a key component of the cellular machinery that couples the ...
SummarySRP is essential for targeting nascent chains to the endoplasmic reticulum, and it delays nas...
Accurate folding, assembly, localization, and maturation of newly synthesized proteins are essential...
Accurate folding, assembly, localization, and maturation of newly synthesized proteins are essential...
Accurate folding, assembly, localization, and maturation of newly synthesized proteins are essential...
The signal recognition particle (SRP) and its receptor compose a universally conserved and essentia...
AbstractCo-translational protein targeting by the Signal Recognition Particle (SRP) is an essential ...
The signal recognition particle (SRP) and its receptor compose a universally conserved and essentia...
Proper protein localization is essential for all cells. However, the precise mechanism by which high...
The bacterial signal recognition particle (SRP) is part of the machinery that targets ribosomes synt...
AbstractThe signal recognition particle (SRP) mediates the co-translational targeting of nascent pro...
During cotranslational protein targeting by the Signal Recognition Particle (SRP), the correct cargo...
During cotranslational protein targeting by the Signal Recognition Particle (SRP), the correct cargo...
SummaryThe signal recognition particle (SRP) binds to ribosomes that synthesize nascent chains beari...
Proper protein localization is essential for all cells. However, the precise mechanism by which high...
The signal recognition particle (SRP) is a key component of the cellular machinery that couples the ...
SummarySRP is essential for targeting nascent chains to the endoplasmic reticulum, and it delays nas...
Accurate folding, assembly, localization, and maturation of newly synthesized proteins are essential...
Accurate folding, assembly, localization, and maturation of newly synthesized proteins are essential...
Accurate folding, assembly, localization, and maturation of newly synthesized proteins are essential...
The signal recognition particle (SRP) and its receptor compose a universally conserved and essentia...
AbstractCo-translational protein targeting by the Signal Recognition Particle (SRP) is an essential ...
The signal recognition particle (SRP) and its receptor compose a universally conserved and essentia...
Proper protein localization is essential for all cells. However, the precise mechanism by which high...
The bacterial signal recognition particle (SRP) is part of the machinery that targets ribosomes synt...
AbstractThe signal recognition particle (SRP) mediates the co-translational targeting of nascent pro...
During cotranslational protein targeting by the Signal Recognition Particle (SRP), the correct cargo...
During cotranslational protein targeting by the Signal Recognition Particle (SRP), the correct cargo...
SummaryThe signal recognition particle (SRP) binds to ribosomes that synthesize nascent chains beari...
Proper protein localization is essential for all cells. However, the precise mechanism by which high...