The twin-arginine protein translocation (Tat) system has been characterized in bacteria, archaea and the chloroplast thylakoidal membrane. This system is distinct from other protein transport systems with respect to two key features. Firstly, it accepts cargo proteins with an N-terminal signal peptide that carries the canonical twin-arginine motif, which is essential for transport. Second, the Tat system only accepts and translocates fully folded cargo proteins across the respective membrane. Here, we review the core essential features of folded protein transport via the bacterial Tat system, using the three-component TatABC system of Escherichia coli and the two-component TatAC systems of Bacillus subtilis as the main examples. In particul...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
The twin-arginine protein translocation (Tat) system has been characterized in bacteria, archaea and...
The twin-arginine protein translocation (Tat) system has been characterized in bacteria, archaea and...
The twin-arginine protein translocation (Tat) system has been characterized in bacteria, archaea and...
The twin-arginine protein translocation (Tat) system has been characterized in bacteria, archaea and...
AbstractThe twin-arginine translocation (Tat) system accomplishes the remarkable feat of translocati...
The twin-arginine translocation (Tat) pathway is found in bacteria, archaea, and plant chloroplasts,...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
AbstractThe twin-arginine translocation (Tat) system operates in plant thylakoid membranes and the p...
The twin-arginine translocation (Tat) system operates in plant thylakoid membranes and the plasma me...
AbstractThe twin-arginine protein translocation (Tat) system has a unique ability to translocate fol...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
The twin-arginine protein translocation (Tat) system has been characterized in bacteria, archaea and...
The twin-arginine protein translocation (Tat) system has been characterized in bacteria, archaea and...
The twin-arginine protein translocation (Tat) system has been characterized in bacteria, archaea and...
The twin-arginine protein translocation (Tat) system has been characterized in bacteria, archaea and...
AbstractThe twin-arginine translocation (Tat) system accomplishes the remarkable feat of translocati...
The twin-arginine translocation (Tat) pathway is found in bacteria, archaea, and plant chloroplasts,...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
AbstractThe twin-arginine translocation (Tat) system operates in plant thylakoid membranes and the p...
The twin-arginine translocation (Tat) system operates in plant thylakoid membranes and the plasma me...
AbstractThe twin-arginine protein translocation (Tat) system has a unique ability to translocate fol...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...
The twin-arginine protein transport (Tat pathway) is found in prokaryotes and plant organelles and t...