The twin arginine protein transport (Tat) system transports folded proteins across cytoplasmic membranes of bacteria and thylakoid membranes of plants, and in Escherichia coli it comprises TatA, TatB and TatC components. In this study we show that the membrane extrinsic domain of TatB forms parallel contacts with at least one other TatB protein. Truncation of the C-terminal two thirds of TatB still allows complex formation with TatC, although protein transport is severely compromised. We were unable to isolate transport-inactive single codon substitution mutations in tatB suggesting that the precise amino acid sequence of TatB is not critical to its function.Structured summary:TatA physically interacts with TatA by two hybrid (View interact...
The twin arginine transport (Tat) system transports folded proteins across the prokaryotic cytoplasm...
The twin arginine transport (Tat) system transports folded proteins across the prokaryotic cytoplasm...
The twin-arginine translocation (Tat) system transports folded proteins across the bacterial plasma ...
The twin arginine protein transport (Tat) system transports folded proteins across cytoplasmic membr...
AbstractThe twin arginine protein transport (Tat) system transports folded proteins across cytoplasm...
The twin arginine protein transport (Tat) system transports folded proteins across cytoplasmic membr...
The twin arginine protein transport (Tat) system transports folded proteins across cytoplasmic membr...
AbstractThe twin arginine protein transport (Tat) system transports folded proteins across cytoplasm...
The Escherichia coli Tat system serves to export folded proteins harbouring an N-terminal twin-argin...
The twin-arginine translocation (Tat) system catalyzes the transport of folded proteins across the b...
The Escherichia coli Tat system serves to export folded proteins harbouring an N-terminal twin-argin...
AbstractThe twin-arginine translocation (Tat) system catalyzes the transport of folded proteins acro...
AbstractThe Escherichia coli Tat system serves to export folded proteins harbouring an N-terminal tw...
The twin-arginine translocation (Tat) pathway is found in bacteria, archaea, and plant chloroplasts,...
The twin arginine transport (Tat) system transports folded proteins across the prokaryotic cytoplasm...
The twin arginine transport (Tat) system transports folded proteins across the prokaryotic cytoplasm...
The twin arginine transport (Tat) system transports folded proteins across the prokaryotic cytoplasm...
The twin-arginine translocation (Tat) system transports folded proteins across the bacterial plasma ...
The twin arginine protein transport (Tat) system transports folded proteins across cytoplasmic membr...
AbstractThe twin arginine protein transport (Tat) system transports folded proteins across cytoplasm...
The twin arginine protein transport (Tat) system transports folded proteins across cytoplasmic membr...
The twin arginine protein transport (Tat) system transports folded proteins across cytoplasmic membr...
AbstractThe twin arginine protein transport (Tat) system transports folded proteins across cytoplasm...
The Escherichia coli Tat system serves to export folded proteins harbouring an N-terminal twin-argin...
The twin-arginine translocation (Tat) system catalyzes the transport of folded proteins across the b...
The Escherichia coli Tat system serves to export folded proteins harbouring an N-terminal twin-argin...
AbstractThe twin-arginine translocation (Tat) system catalyzes the transport of folded proteins acro...
AbstractThe Escherichia coli Tat system serves to export folded proteins harbouring an N-terminal tw...
The twin-arginine translocation (Tat) pathway is found in bacteria, archaea, and plant chloroplasts,...
The twin arginine transport (Tat) system transports folded proteins across the prokaryotic cytoplasm...
The twin arginine transport (Tat) system transports folded proteins across the prokaryotic cytoplasm...
The twin arginine transport (Tat) system transports folded proteins across the prokaryotic cytoplasm...
The twin-arginine translocation (Tat) system transports folded proteins across the bacterial plasma ...