International audienceStructural and functional characterization of integral membrane proteins requires milligram amounts of purified sample. Unless the protein you are studying is abundant in native membranes, it will be critical to overexpress the protein of interest in a homologous or heterologous way, and in sufficient quantities for further purification. The situation may become even more complicated if you chose to investigate the structure and function of a complex of two or more membrane proteins. Here, we describe the overexpression of a yeast lipid flippase complex, namely the P4-ATPase Drs2p and its associated subunit Cdc50p, in a coordinated manner. Moreover, we can take advantage of the fact that P4-ATPases, like most other P-t...
Les membranes plasmiques et les membranes du trans-Golgi des cellules eucaryotes présentent une asym...
Maintenance of phospholipid asymmetry in eukaryotic cell membranes is essential for cellular integri...
International audienceMembrane proteins (MPs) are challenging to study from a biochemical standpoint...
International audienceP-type ATPases from the P4 subfamily (P4-ATPases) are energy-dependent transpo...
Les membranes plasmiques et les membranes du trans-Golgi des cellules eucaryotes présentent une asym...
Trans-Golgi membranes and plasma membranes of eukaryotic cells are asymmetric, with their cytosolic ...
Type 4 P-type ATPases (P4-ATPases) catalyze phospholipid transport to create lipid asymmetry across ...
Members of the P4 subfamily of P-type ATPases are believed to catalyze transport of phospholipids ac...
International audienceType 4 P-type ATPases (P4-ATPases) are lipid flippases that drive the active t...
Mechanism of P-type ATPase-catalyzed phospholipid transport: tackling the giant substrate problem Af...
AbstractP4 ATPases are integral transmembrane proteins implicated in phospholipid translocation from...
Les ATPases-P4 sont des transporteurs membranaires couplant l'hydrolyse de l'ATP au transport de lip...
Members of the P4 subfamily of P-type ATPases catalyze phospholipid transport and create membrane li...
Flippases (type 4 P-type ATPases) are believed to translocate phospholipids from the exoplasmic to t...
High-throughput analysis of protein-protein interactions can provide unprecedented insight into how ...
Les membranes plasmiques et les membranes du trans-Golgi des cellules eucaryotes présentent une asym...
Maintenance of phospholipid asymmetry in eukaryotic cell membranes is essential for cellular integri...
International audienceMembrane proteins (MPs) are challenging to study from a biochemical standpoint...
International audienceP-type ATPases from the P4 subfamily (P4-ATPases) are energy-dependent transpo...
Les membranes plasmiques et les membranes du trans-Golgi des cellules eucaryotes présentent une asym...
Trans-Golgi membranes and plasma membranes of eukaryotic cells are asymmetric, with their cytosolic ...
Type 4 P-type ATPases (P4-ATPases) catalyze phospholipid transport to create lipid asymmetry across ...
Members of the P4 subfamily of P-type ATPases are believed to catalyze transport of phospholipids ac...
International audienceType 4 P-type ATPases (P4-ATPases) are lipid flippases that drive the active t...
Mechanism of P-type ATPase-catalyzed phospholipid transport: tackling the giant substrate problem Af...
AbstractP4 ATPases are integral transmembrane proteins implicated in phospholipid translocation from...
Les ATPases-P4 sont des transporteurs membranaires couplant l'hydrolyse de l'ATP au transport de lip...
Members of the P4 subfamily of P-type ATPases catalyze phospholipid transport and create membrane li...
Flippases (type 4 P-type ATPases) are believed to translocate phospholipids from the exoplasmic to t...
High-throughput analysis of protein-protein interactions can provide unprecedented insight into how ...
Les membranes plasmiques et les membranes du trans-Golgi des cellules eucaryotes présentent une asym...
Maintenance of phospholipid asymmetry in eukaryotic cell membranes is essential for cellular integri...
International audienceMembrane proteins (MPs) are challenging to study from a biochemical standpoint...