Many peptides and proteins are attached to or immersed in a biological membrane. In order to understand their function not only the structure but also their topology in the membrane is important. Solution NMR spectroscopy is one of the most often used approaches to determine the orientation and localization of membrane-bound peptides and proteins. Here we give an application-oriented overview on the use of paramagnetic probes for the investigation of membrane-bound peptides and proteins. The examples discussed range from the large pool of antimicrobial peptides, bacterial toxins, cell penetrating peptides to domains of larger proteins or the calcium regulating protein phospholamban. Topological information is obtained in all these examples ...
Membrane proteins are of particular interest to structural biologists since it is believed that thes...
AbstractStructural models of membrane proteins can be refined with sets of multiple orientation cons...
Alternative methods for describing molecular detail for large integral membrane proteins are require...
Membrane proteins are responsible for many significant biological functions including those of enzym...
The limitations on the structural studies of membrane proteins prevent the elucidation of the mechan...
A large portion of proteins in living organisms are membrane proteins which play critical roles in t...
Viele Peptide, Proteine Natur- und Wirkstoffe binden an biologische Membranen. Um deren Funktion auf...
Detailed atomic scale structural information on proteins and other biomolecules is needed to underst...
The fact that membrane proteins are notoriously difficult to analyse using standard protocols for at...
Solid-state NMR is emerging as a method for resolving structural information for large biomolecular ...
Kleine membrangebundene Proteine oder Peptide sind in eine Vielzahl essentieller biologischer Prozes...
The use of paramagnetic constraints in protein NMR is an active area of research because of the bene...
Abstract: Paramagnetism causes broadening of the NMR lines and therefore makes dif®cult the detectio...
Advances in solution nuclear magnetic resonance (NMR) methodology that enable studies of very large ...
AbstractTransportan is a chimeric cell-penetrating peptide constructed from the peptides galanin and...
Membrane proteins are of particular interest to structural biologists since it is believed that thes...
AbstractStructural models of membrane proteins can be refined with sets of multiple orientation cons...
Alternative methods for describing molecular detail for large integral membrane proteins are require...
Membrane proteins are responsible for many significant biological functions including those of enzym...
The limitations on the structural studies of membrane proteins prevent the elucidation of the mechan...
A large portion of proteins in living organisms are membrane proteins which play critical roles in t...
Viele Peptide, Proteine Natur- und Wirkstoffe binden an biologische Membranen. Um deren Funktion auf...
Detailed atomic scale structural information on proteins and other biomolecules is needed to underst...
The fact that membrane proteins are notoriously difficult to analyse using standard protocols for at...
Solid-state NMR is emerging as a method for resolving structural information for large biomolecular ...
Kleine membrangebundene Proteine oder Peptide sind in eine Vielzahl essentieller biologischer Prozes...
The use of paramagnetic constraints in protein NMR is an active area of research because of the bene...
Abstract: Paramagnetism causes broadening of the NMR lines and therefore makes dif®cult the detectio...
Advances in solution nuclear magnetic resonance (NMR) methodology that enable studies of very large ...
AbstractTransportan is a chimeric cell-penetrating peptide constructed from the peptides galanin and...
Membrane proteins are of particular interest to structural biologists since it is believed that thes...
AbstractStructural models of membrane proteins can be refined with sets of multiple orientation cons...
Alternative methods for describing molecular detail for large integral membrane proteins are require...