SummaryIn bacteria, most secretory proteins are translocated across the plasma membrane by the interplay of the SecA ATPase and the SecY channel. How SecA moves a broad range of polypeptide substrates is only poorly understood. Here we show that SecA moves polypeptides through the SecY channel by a “push and slide” mechanism. In its ATP-bound state, SecA interacts through a two-helix finger with a subset of amino acids in a substrate, pushing them into the channel. A polypeptide can also passively slide back and forth when SecA is in the predominant ADP-bound state or when SecA encounters a poorly interacting amino acid in its ATP-bound state. SecA performs multiple rounds of ATP hydrolysis before dissociating from SecY. The proposed push a...
The universally conserved Sec system is the primary method cells utilise totransport proteins across...
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, most secretory proteins are translocated across the plasma membrane by the interplay of...
An important step in the biosynthesis of many proteins is their partial or complete translocation ac...
An important step in the biosynthesis of many proteins is their partial or complete translocation ac...
The essential process of protein secretion is achieved by the ubiquitous Sec machinery. In 21 prokar...
The ATPase SecA mediates the posttranslational translocation of a wide range of polypeptide substrat...
The Sec61/SecY channel allows the translocation of many proteins across the eukaryotic endoplasmic r...
The ATPase SecA mediates the posttranslational translocation of a wide range of polypeptide substrat...
The Sec61/SecY channel allows the translocation of many proteins across the eukaryotic endoplasmic r...
The Sec translocon is a highly conserved membrane assembly for polypeptide transport across, or into...
SummaryMany proteins are translocated across the bacterial plasma membrane by the interplay of the c...
Protein translocation across cell membranes is a ubiquitous process required for protein secretion a...
SecA is the ATPase that provides energy for translocation of precursor polypeptides through the SecY...
The universally conserved Sec system is the primary method cells utilise totransport proteins across...
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, most secretory proteins are translocated across the plasma membrane by the interplay of...
An important step in the biosynthesis of many proteins is their partial or complete translocation ac...
An important step in the biosynthesis of many proteins is their partial or complete translocation ac...
The essential process of protein secretion is achieved by the ubiquitous Sec machinery. In 21 prokar...
The ATPase SecA mediates the posttranslational translocation of a wide range of polypeptide substrat...
The Sec61/SecY channel allows the translocation of many proteins across the eukaryotic endoplasmic r...
The ATPase SecA mediates the posttranslational translocation of a wide range of polypeptide substrat...
The Sec61/SecY channel allows the translocation of many proteins across the eukaryotic endoplasmic r...
The Sec translocon is a highly conserved membrane assembly for polypeptide transport across, or into...
SummaryMany proteins are translocated across the bacterial plasma membrane by the interplay of the c...
Protein translocation across cell membranes is a ubiquitous process required for protein secretion a...
SecA is the ATPase that provides energy for translocation of precursor polypeptides through the SecY...
The universally conserved Sec system is the primary method cells utilise totransport proteins across...
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...