The central pore of the SecYEG preprotein-conducting channel is closed at the periplasmic face of the membrane by a plug domain. To study its conformational dynamics, the plug was labeled site-specifically with an environment-sensitive fluorophore. In the presence of a stable preprotein translocation intermediate, the SecY plug showed an enhanced solvent exposure consistent with a displacement from the hydrophobic central pore region. In contrast, binding and insertion of a ribosome-bound nascent membrane protein did not alter the plug conformation. These data indicate different plug dynamics depending on the ligand bound state of the SecYEG channel.
Protein translocation in Escherichia coli is mediated by the translocase that in its minimal form co...
Every form of life requires the presence of a lipid membrane to separate the interior aqueous compa...
SecY is the central channel protein of the SecYEbeta translocon, the structure of which has been det...
The central pore of the SecYEG preprotein-conducting channel is closed at the periplasmic face of th...
The SecYEG complex forms a protein-conducting channel in the inner membrane of Escherichia coli to s...
SummaryThe Sec complex forms the core of a conserved machinery coordinating the passage of proteins ...
International audienceProtein translocation occurs across the energy-conserving bacterial membrane a...
AbstractA short helix in the centre of the SecY subunit serves as a ‘plug’ blocking the protein chan...
The protein-conducting channel, or translocon, is an evolutionarily conserved complex which allows n...
AbstractIn bacteria, the translocase mediates the translocation of proteins into or across the cytos...
International audiencePrevious studies have shown that the SecY plug is displaced from the center of...
Hydrophobic signal sequences target secretory polypeptides to a protein-conducting channel formed by...
Previous studies have shown that the SecY plug is displaced from the center of the SecYEG channel du...
SummaryMany proteins are translocated across the bacterial plasma membrane by the interplay of the c...
AbstractSecYEG functions as a membrane channel for protein export. SecY constitutes the protein-cond...
Protein translocation in Escherichia coli is mediated by the translocase that in its minimal form co...
Every form of life requires the presence of a lipid membrane to separate the interior aqueous compa...
SecY is the central channel protein of the SecYEbeta translocon, the structure of which has been det...
The central pore of the SecYEG preprotein-conducting channel is closed at the periplasmic face of th...
The SecYEG complex forms a protein-conducting channel in the inner membrane of Escherichia coli to s...
SummaryThe Sec complex forms the core of a conserved machinery coordinating the passage of proteins ...
International audienceProtein translocation occurs across the energy-conserving bacterial membrane a...
AbstractA short helix in the centre of the SecY subunit serves as a ‘plug’ blocking the protein chan...
The protein-conducting channel, or translocon, is an evolutionarily conserved complex which allows n...
AbstractIn bacteria, the translocase mediates the translocation of proteins into or across the cytos...
International audiencePrevious studies have shown that the SecY plug is displaced from the center of...
Hydrophobic signal sequences target secretory polypeptides to a protein-conducting channel formed by...
Previous studies have shown that the SecY plug is displaced from the center of the SecYEG channel du...
SummaryMany proteins are translocated across the bacterial plasma membrane by the interplay of the c...
AbstractSecYEG functions as a membrane channel for protein export. SecY constitutes the protein-cond...
Protein translocation in Escherichia coli is mediated by the translocase that in its minimal form co...
Every form of life requires the presence of a lipid membrane to separate the interior aqueous compa...
SecY is the central channel protein of the SecYEbeta translocon, the structure of which has been det...