A substantial fraction of biomolecular processes occurs at interfaces. Interactions of proteins with lipid membranes at the membrane/water interface present a critical example. Understanding these interactions enables us to unravel the origin of diseases, develop effective drugs, reveal principles for biomimetic material design, and, in general, understand bases of life. However, the immense complexity of a cell and, all the more, of living organisms overcomplicates interpretation of observed effects. At the same time, to get insight into vital (sub)cellular processes, molecular-scale information on the organization of lipids and proteins and their interactions is necessary. For this reason, simple models are helpful to employ. For instance...
The analysis how proteins interact or assemble with each other in time and space is of central inter...
The modern molecular understanding of biological systems relies on integration of principles, practi...
The molecular organization of streptavidin (SA) bound to aqueous surface monolayers of biotin-functi...
It is clear that the interface is a highly complex region of the bilayer. In summary: (i) anionic li...
Lipid membranes provide diverse and essential functions in our cells relating to transport, energy h...
Despite the importance of lipid/protein interactions in the folding, assembly, stability, and functi...
The nonspecific binding of proteins to various biological and non-biological surfaces has limited th...
The lipid membranes of cells are complex structural and functional landscapes. Beyond being a select...
In the past five years the Max Planck Research Group for Nonlinear spectroscopy of bio-interfaces ha...
The molecular organization of streptavidin (SA) bound to aqueous surface monolayers of biotin-functi...
Biological membranes are complex composites of lipids, proteins and sugars, which catalyze a myriad ...
Biological compounds such as lipids and proteins are building blocks of all living species and there...
Understanding of biomacromolecule interactions at the molecular level raises certain difficulties ho...
Cellular membranes are complex structures and simplified analogues in the form of model membranes or...
Surfaces and interfaces are important and ubiquitous in the biological world. It is difficult to inv...
The analysis how proteins interact or assemble with each other in time and space is of central inter...
The modern molecular understanding of biological systems relies on integration of principles, practi...
The molecular organization of streptavidin (SA) bound to aqueous surface monolayers of biotin-functi...
It is clear that the interface is a highly complex region of the bilayer. In summary: (i) anionic li...
Lipid membranes provide diverse and essential functions in our cells relating to transport, energy h...
Despite the importance of lipid/protein interactions in the folding, assembly, stability, and functi...
The nonspecific binding of proteins to various biological and non-biological surfaces has limited th...
The lipid membranes of cells are complex structural and functional landscapes. Beyond being a select...
In the past five years the Max Planck Research Group for Nonlinear spectroscopy of bio-interfaces ha...
The molecular organization of streptavidin (SA) bound to aqueous surface monolayers of biotin-functi...
Biological membranes are complex composites of lipids, proteins and sugars, which catalyze a myriad ...
Biological compounds such as lipids and proteins are building blocks of all living species and there...
Understanding of biomacromolecule interactions at the molecular level raises certain difficulties ho...
Cellular membranes are complex structures and simplified analogues in the form of model membranes or...
Surfaces and interfaces are important and ubiquitous in the biological world. It is difficult to inv...
The analysis how proteins interact or assemble with each other in time and space is of central inter...
The modern molecular understanding of biological systems relies on integration of principles, practi...
The molecular organization of streptavidin (SA) bound to aqueous surface monolayers of biotin-functi...