In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translocon. While the dynamic interplay between SecA and SecYEG in translocation is widely appreciated, it is not clear how SecA associates with the translocon in the crowded cellular environment. We use super-resolution microscopy to directly visualize the dynamics of SecA in Escherichia coli at the single-molecule level. We find that SecA is predominantly associated with and evenly distributed along the cytoplasmic membrane as a homodimer, with only a minor cytosolic fraction. SecA moves along the cell membrane as three distinct but interconvertible diffusional populations: (1) A state loosely associated with the membrane, (2) an integral membrane...
In bacteria, more than one-third of the proteins synthesized in the cell accomplish their function o...
In bacteria, more than one-third of the proteins synthesized in the cell accomplish their function o...
In bacteria, more than one-third of the proteins synthesized in the cell accomplish their function o...
In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translo...
In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translo...
In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translo...
In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translo...
In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translo...
In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translo...
Translocase mediates the transport of preproteins across the inner membrane of Escherichia coli. Sec...
Translocase mediates the transport of preproteins across the inner membrane of Escherichia coli. Sec...
Translocase mediates the transport of preproteins across the inner membrane of Escherichia coli. Sec...
Translocase mediates the transport of preproteins across the inner membrane of Escherichia coli. Sec...
More than 30% of proteins in any organism are transported from the site of synthesis into or through...
In bacteria, more than one-third of the proteins synthesized in the cell accomplish their function o...
In bacteria, more than one-third of the proteins synthesized in the cell accomplish their function o...
In bacteria, more than one-third of the proteins synthesized in the cell accomplish their function o...
In bacteria, more than one-third of the proteins synthesized in the cell accomplish their function o...
In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translo...
In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translo...
In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translo...
In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translo...
In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translo...
In bacteria, the SecA ATPase provides the driving force for protein secretion via the SecYEG translo...
Translocase mediates the transport of preproteins across the inner membrane of Escherichia coli. Sec...
Translocase mediates the transport of preproteins across the inner membrane of Escherichia coli. Sec...
Translocase mediates the transport of preproteins across the inner membrane of Escherichia coli. Sec...
Translocase mediates the transport of preproteins across the inner membrane of Escherichia coli. Sec...
More than 30% of proteins in any organism are transported from the site of synthesis into or through...
In bacteria, more than one-third of the proteins synthesized in the cell accomplish their function o...
In bacteria, more than one-third of the proteins synthesized in the cell accomplish their function o...
In bacteria, more than one-third of the proteins synthesized in the cell accomplish their function o...
In bacteria, more than one-third of the proteins synthesized in the cell accomplish their function o...