AbstractThe twin-arginine protein translocation (Tat) system has a unique ability to translocate folded and co-factor-containing proteins across lipid bilayers. The Tat pathway is present in bacteria, archaea and in the thylakoid membranes of chloroplasts and, depending on the organism and environmental conditions, it can be deemed important for cell survival, virulence or bioproduction. This review provides an overview of the current understanding of the Tat system with specific focus on Gram-positive bacteria. The ‘universal minimal Tat system’ is composed of a TatA and a TatC protein. However, this pathway is more commonly composed of two TatA-like proteins and one TatC protein. Often the TatA-like proteins have diverged to have two diff...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
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 a unique ability to translocate folded and ...
The twin-arginine protein translocation (Tat) system has a unique ability to translocate folded and ...
AbstractThe twin-arginine protein translocation (Tat) system has a unique ability to translocate fol...
The twin-arginine protein translocation (Tat) system has a unique ability to translocate folded and ...
The twin-arginine protein translocation (Tat) system has a unique ability to translocate folded and ...
The twin-arginine protein translocation (Tat) system has a unique ability to translocate folded and ...
The twin-arginine protein translocation (Tat) system has a unique ability to translocate folded and ...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
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 a unique ability to translocate folded and ...
The twin-arginine protein translocation (Tat) system has a unique ability to translocate folded and ...
AbstractThe twin-arginine protein translocation (Tat) system has a unique ability to translocate fol...
The twin-arginine protein translocation (Tat) system has a unique ability to translocate folded and ...
The twin-arginine protein translocation (Tat) system has a unique ability to translocate folded and ...
The twin-arginine protein translocation (Tat) system has a unique ability to translocate folded and ...
The twin-arginine protein translocation (Tat) system has a unique ability to translocate folded and ...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
Twin-arginine protein translocation systems (Tat) translocate fully folded and co-factor-containing ...
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...