AbstractArtificial membrane systems allow researchers to study the structure and function of membrane proteins in a matrix that approximates their natural environment and to integrate these proteins in ex vivo devices such as electronic biosensors, thin-film protein arrays, or biofuel cells. Given that most membrane proteins have vectorial functions, both functional studies and applications require effective control over protein orientation within a lipid bilayer. In this work, we explored the role of the bilayer surface charge in determining transmembrane protein orientation and functionality during formation of proteoliposomes. We reconstituted a model vectorial ion pump, proteorhodopsin, in liposomes of opposite charges and varying charg...
Membrane proteins are vital to life and major therapeutic targets. Yet, understanding how they funct...
One major objective of synthetic biology is the bottom-up assembly of minimalistic nanocells consist...
Supported lipid membranes provide the natural environment for cell membrane constituents such as tra...
Artificial membrane systems allow researchers to study the structure and function of membrane protei...
After synthesis of transmembrane proteins (TMPs), they are transferred and inserted into plasma memb...
The trans-membrane protein – proteorhodopsin (pR) has been incorporated into supported lipid bilayer...
Membrane protein interactions with lipids are crucial for their native biological behavior, yet trad...
For functional studies, membrane proteins (MPs) are often purified and integrated (reconstituted) in...
Supported lipid bilayers (SLBs) are attractive model systems for studying lipid behaviour, membrane ...
Membrane proteins act as a central interface between the extracellular environment and the intracell...
Biological membranes consist of two leaflets of phospholipid molecules that form a bilayer, each lea...
As a surrogate of the life cell, proteo-lipobeads are presented, encapsulating functional membrane p...
Functional studies of membrane proteins (MP) in their native environment (the cellular membrane) is ...
Membrane proteins (MPs) are the gatekeepers between different biological compartments separated by l...
Light-driven proton pumps, such as proteorhodopsin, have been proposed as an energy source in the fi...
Membrane proteins are vital to life and major therapeutic targets. Yet, understanding how they funct...
One major objective of synthetic biology is the bottom-up assembly of minimalistic nanocells consist...
Supported lipid membranes provide the natural environment for cell membrane constituents such as tra...
Artificial membrane systems allow researchers to study the structure and function of membrane protei...
After synthesis of transmembrane proteins (TMPs), they are transferred and inserted into plasma memb...
The trans-membrane protein – proteorhodopsin (pR) has been incorporated into supported lipid bilayer...
Membrane protein interactions with lipids are crucial for their native biological behavior, yet trad...
For functional studies, membrane proteins (MPs) are often purified and integrated (reconstituted) in...
Supported lipid bilayers (SLBs) are attractive model systems for studying lipid behaviour, membrane ...
Membrane proteins act as a central interface between the extracellular environment and the intracell...
Biological membranes consist of two leaflets of phospholipid molecules that form a bilayer, each lea...
As a surrogate of the life cell, proteo-lipobeads are presented, encapsulating functional membrane p...
Functional studies of membrane proteins (MP) in their native environment (the cellular membrane) is ...
Membrane proteins (MPs) are the gatekeepers between different biological compartments separated by l...
Light-driven proton pumps, such as proteorhodopsin, have been proposed as an energy source in the fi...
Membrane proteins are vital to life and major therapeutic targets. Yet, understanding how they funct...
One major objective of synthetic biology is the bottom-up assembly of minimalistic nanocells consist...
Supported lipid membranes provide the natural environment for cell membrane constituents such as tra...