<div><p>Membrane proteins play key roles in many biological processes, from acquisition of nutrients to neurotransmission, and are targets for more than 50% of current therapeutic drugs. However, their investigation is hampered by difficulties in their production and purification on a scale suitable for structural studies. In particular, the nature and location of affinity tags introduced for the purification of recombinant membrane proteins can greatly influence their expression levels by affecting their membrane insertion. The extent of such effects typically depends on the transmembrane topologies of the proteins, which for proteins of unknown structure are usually uncertain. For example, attachment of oligohistidine tags to the periplas...
AbstractMembrane transporter proteins play critical physiological roles in the cell and constitute 5...
A general strategy for the expression of bacterial membrane transport and receptor genes in Escheric...
A major obstacle to studying membrane proteins by biophysical techniques is the difficulty in produc...
Membrane proteins play key roles in many biological processes, from acquisition of nutrients to neur...
Membrane proteins play key roles in many biological processes, from acquisition of nutrients to neur...
Membrane proteins play key roles in many biological processes, from acquisition of nutrients to neur...
Membrane proteins play key roles in many biological processes, from acquisition of nutrients to neur...
Membrane proteins play key roles in many biological processes, from acquisition of nutrients to neu...
Integral membrane proteins are essential for many activities within a cell but the structure of only...
Challenges in the production of integral membrane proteins for structural studies include low expres...
Nucleoside transporters play critical biological roles in humans, and to understand the molecular me...
AbstractMembrane transporter proteins play critical physiological roles in the cell and constitute 5...
A general strategy for the expression of bacterial membrane transport and receptor genes in Escheric...
A major obstacle to studying membrane proteins by biophysical techniques is the difficulty in produc...
Membrane proteins play key roles in many biological processes, from acquisition of nutrients to neur...
Membrane proteins play key roles in many biological processes, from acquisition of nutrients to neur...
Membrane proteins play key roles in many biological processes, from acquisition of nutrients to neur...
Membrane proteins play key roles in many biological processes, from acquisition of nutrients to neur...
Membrane proteins play key roles in many biological processes, from acquisition of nutrients to neu...
Integral membrane proteins are essential for many activities within a cell but the structure of only...
Challenges in the production of integral membrane proteins for structural studies include low expres...
Nucleoside transporters play critical biological roles in humans, and to understand the molecular me...
AbstractMembrane transporter proteins play critical physiological roles in the cell and constitute 5...
A general strategy for the expression of bacterial membrane transport and receptor genes in Escheric...
A major obstacle to studying membrane proteins by biophysical techniques is the difficulty in produc...