AbstractATP-binding cassette superfamily of periplasmic metal transporters are known to be vital for maintaining ion homeostasis in several pathogenic and non-pathogenic bacteria. We have determined crystal structure of the high-affinity zinc transporter ZnuA from Escherichia coli at 1.8 Å resolution. This structure represents the first native (non-recombinant) protein structure of a periplasmic metal binding protein. ZnuA reveals numerous conformational features, which occur either in Zn2+ or in Mn2+ transporters, and presents a unique conformational state. A comprehensive comparison of ZnuA with other periplasmic ligand binding protein structures suggests vital mechanistic differences between bound and release states of metal transporters...
Zinc is an essential micronutrient for all living organisms. It is required for signalling and prope...
ZntA from Escherichia coli belongs to the P1B-ATPase family and mediates resistance to toxic levels ...
Zinc is an essential element in all domains of life. Nonetheless, how prokaryotes achieve selective ...
AbstractATP-binding cassette superfamily of periplasmic metal transporters are known to be vital for...
ZnuA is the soluble component of the high-affinity ZnuABC zinc transporter belonging to the cluster ...
ZnuA is the soluble component of the high-affinity ZnuABC zinc transporter belonging to the cluster ...
ZnuA is the soluble component of the high-affinity ZnuABC zinc transporter belonging to the cluster ...
ZnuA is the soluble component of the high-affinity ZnuABC zinc transporter belonging to the cluster ...
ZnuA is the periplasmic Zn2+-binding protein associated with the high-affinity ATP-binding cassette ...
AbstractZn2+ is an essential transition metal required in trace amounts by all living organisms. How...
Zinc transporters play critical roles in cellular zinc homeostatic control. The 2.9-Å resolution str...
ZnuA is the soluble component of the high-affinity ZnuABC zinc transporter belonging to the ATP-bind...
YiiP is a membrane transporter that catalyzes Zn2+/H+ exchange across the inner membrane of Escheric...
In bacteria, ATP binding cassette transporters (ABC) of cluster A-I exist for the acquisition of an ...
Zinc is a potent antimicrobial component of the innate immune response at the host-pathogen interfac...
Zinc is an essential micronutrient for all living organisms. It is required for signalling and prope...
ZntA from Escherichia coli belongs to the P1B-ATPase family and mediates resistance to toxic levels ...
Zinc is an essential element in all domains of life. Nonetheless, how prokaryotes achieve selective ...
AbstractATP-binding cassette superfamily of periplasmic metal transporters are known to be vital for...
ZnuA is the soluble component of the high-affinity ZnuABC zinc transporter belonging to the cluster ...
ZnuA is the soluble component of the high-affinity ZnuABC zinc transporter belonging to the cluster ...
ZnuA is the soluble component of the high-affinity ZnuABC zinc transporter belonging to the cluster ...
ZnuA is the soluble component of the high-affinity ZnuABC zinc transporter belonging to the cluster ...
ZnuA is the periplasmic Zn2+-binding protein associated with the high-affinity ATP-binding cassette ...
AbstractZn2+ is an essential transition metal required in trace amounts by all living organisms. How...
Zinc transporters play critical roles in cellular zinc homeostatic control. The 2.9-Å resolution str...
ZnuA is the soluble component of the high-affinity ZnuABC zinc transporter belonging to the ATP-bind...
YiiP is a membrane transporter that catalyzes Zn2+/H+ exchange across the inner membrane of Escheric...
In bacteria, ATP binding cassette transporters (ABC) of cluster A-I exist for the acquisition of an ...
Zinc is a potent antimicrobial component of the innate immune response at the host-pathogen interfac...
Zinc is an essential micronutrient for all living organisms. It is required for signalling and prope...
ZntA from Escherichia coli belongs to the P1B-ATPase family and mediates resistance to toxic levels ...
Zinc is an essential element in all domains of life. Nonetheless, how prokaryotes achieve selective ...