The signal recognition particle (SRP) and its receptor compose a universally conserved and essential cellular machinery that couples the synthesis of nascent proteins to their proper membrane localization. The past decade has witnessed an explosion in in-depth mechanistic investigations of this targeting machine at increasingly higher resolutions. In this review, we summarize recent work that elucidates how the SRP and SRP receptor interact with the cargo protein and the target membrane, respectively, and how these interactions are coupled to a novel GTPase cycle in the SRP·SRP receptor complex to provide the driving force and enhance the fidelity of this fundamental cellular pathway. We also discuss emerging frontiers in which im...
Efficient and accurate protein localization is essential to cells and requires protein-targeting ma...
Secretory and transmembrane proteins are delivered to the ER membrane or eukaryotic cells or the pla...
Two GTPases in the signal recognition particle (SRP) and its receptor (SR) control the delivery of n...
The signal recognition particle (SRP) and its receptor compose a universally conserved and essentia...
The signal recognition particle (SRP) is a key component of the cellular machinery that couples the ...
AbstractThe signal recognition particle (SRP) and its membrane-bound receptor (SR) deliver membrane ...
Signal recognition particle (SRP) is a universally conserved targeting machine that mediates the tar...
In all three kingdoms of life, co-translational targeting of secretory and membrane proteins to the ...
Signal recognition particle (SRP) is a universally conserved targeting machine that mediates the tar...
AbstractThe signal recognition particle (SRP) mediates the co-translational targeting of nascent pro...
AbstractCo-translational protein targeting by the Signal Recognition Particle (SRP) is an essential ...
The signal recognition particle (SRP) is a universally conserved cellular machinery responsible for ...
In all three kingdoms of life, co-translational targeting of secretory and membrane proteins to the ...
The signal recognition particle (SRP) targets membrane and secretory proteins to their correct cellu...
AbstractThe signal recognition particle (SRP) and its membrane-bound receptor (SR) deliver membrane ...
Efficient and accurate protein localization is essential to cells and requires protein-targeting ma...
Secretory and transmembrane proteins are delivered to the ER membrane or eukaryotic cells or the pla...
Two GTPases in the signal recognition particle (SRP) and its receptor (SR) control the delivery of n...
The signal recognition particle (SRP) and its receptor compose a universally conserved and essentia...
The signal recognition particle (SRP) is a key component of the cellular machinery that couples the ...
AbstractThe signal recognition particle (SRP) and its membrane-bound receptor (SR) deliver membrane ...
Signal recognition particle (SRP) is a universally conserved targeting machine that mediates the tar...
In all three kingdoms of life, co-translational targeting of secretory and membrane proteins to the ...
Signal recognition particle (SRP) is a universally conserved targeting machine that mediates the tar...
AbstractThe signal recognition particle (SRP) mediates the co-translational targeting of nascent pro...
AbstractCo-translational protein targeting by the Signal Recognition Particle (SRP) is an essential ...
The signal recognition particle (SRP) is a universally conserved cellular machinery responsible for ...
In all three kingdoms of life, co-translational targeting of secretory and membrane proteins to the ...
The signal recognition particle (SRP) targets membrane and secretory proteins to their correct cellu...
AbstractThe signal recognition particle (SRP) and its membrane-bound receptor (SR) deliver membrane ...
Efficient and accurate protein localization is essential to cells and requires protein-targeting ma...
Secretory and transmembrane proteins are delivered to the ER membrane or eukaryotic cells or the pla...
Two GTPases in the signal recognition particle (SRP) and its receptor (SR) control the delivery of n...