AbstractMany proteins synthesized in the cytoplasm ultimately function in non-cytoplasmic locations. In Escherichia coli, the general secretory (Sec) pathway transports the vast majority of these proteins. Two fundamental components of the Sec transport pathway are the SecYEG heterotrimeric complex that forms the channel through the cytoplasmic membrane, and SecA, the ATPase that drives the preprotein to and across the membrane. This review focuses on what is known about the oligomeric states of these core Sec components and how the oligomeric state might change during the course of the translocation of a preprotein
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
AbstractMany proteins synthesized in the cytoplasm ultimately function in non-cytoplasmic locations....
The multimeric membrane protein complex translocase mediates the transport of preproteins across and...
The multimeric membrane protein complex translocase mediates the transport of preproteins across and...
The Sec translocase mediates the post-translational translocation of a number of preproteins through...
Proteins designated to be secreted by Escherichia coli are synthesized with an amino-terminal signal...
SummaryMany proteins are translocated across the bacterial plasma membrane by the interplay of the c...
Translocase mediates preprotein translocation across the Escherichia coli inner membrane. It consist...
The ATPase SecA provides the driving force for the transport of secretory proteins across the cytopl...
The ATPase SecA provides the driving force for the transport of secretory proteins across the cytopl...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
AbstractMany proteins synthesized in the cytoplasm ultimately function in non-cytoplasmic locations....
The multimeric membrane protein complex translocase mediates the transport of preproteins across and...
The multimeric membrane protein complex translocase mediates the transport of preproteins across and...
The Sec translocase mediates the post-translational translocation of a number of preproteins through...
Proteins designated to be secreted by Escherichia coli are synthesized with an amino-terminal signal...
SummaryMany proteins are translocated across the bacterial plasma membrane by the interplay of the c...
Translocase mediates preprotein translocation across the Escherichia coli inner membrane. It consist...
The ATPase SecA provides the driving force for the transport of secretory proteins across the cytopl...
The ATPase SecA provides the driving force for the transport of secretory proteins across the cytopl...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...
The heterotrimeric SecYEG complex comprises a protein-conducting channel in the bacterial cytoplasmi...