Segmental isotopic labeling can facilitate NMR studies of large proteins, multi-domain proteins, and proteins with repetitive sequences by alleviating NMR signal overlaps. Segmental isotopic labeling also allows us to investigate an individual domain in the context of a full-length protein by NMR. Several established methods are available for segmental isotopic labeling such as intein-mediated ligation, but each has specific requirements and limitations. Here, we report an enzymatic approach using bacterially produced asparagine endopeptidase from Oldenlandia affinis for segmental isotopic labeling of a protein with repetitive sequences, a designed armadillo repeat protein, by overcoming some of the shortcomings of enzymatic ligation for se...
Isotope labelling is a very powerful tool in NMR studies of proteins and has been employed in variou...
We report a cost efficient approach for amino-acid-type selective isotope labeling of proteins expre...
Selective isotope labeling is central in NMR experiments and often allows to push the limits on the ...
Segmental isotopic labeling can facilitate NMR studies of large proteins, multi-domain proteins, and...
NMR studies of multi-domain protein complexes provide unique insight into their molecular interactio...
A significant number of proteins possess sizable intrinsically disordered regions (IDRs). Due to the...
We are set to utilize sortase enzymes to engineer segmentally labeled (15N, 13C) fragments into intr...
Segmental isotope labelling enables the NMR study of an individual domain within a multidomain prote...
Introducing biophysical labels into specific regions of large and dynamic multidomain proteins great...
The physiological role of proteins is frequently linked to interactions with non-protein ligands or ...
The study of protein structure, dynamics and function by NMR spectroscopy commonly requires samples ...
In the last 15years substantial advances have been made to place isotope labels in native and glycos...
The size of macromolecular structures that can be solved by nuclear magnetic resonance (NMR) spectro...
International audienceNuclear magnetic resonance (NMR) studies of large biomolecular machines and hi...
Isotopic labeling is widely used in various fields like proteomics, metabolomics, fluxomics, as well...
Isotope labelling is a very powerful tool in NMR studies of proteins and has been employed in variou...
We report a cost efficient approach for amino-acid-type selective isotope labeling of proteins expre...
Selective isotope labeling is central in NMR experiments and often allows to push the limits on the ...
Segmental isotopic labeling can facilitate NMR studies of large proteins, multi-domain proteins, and...
NMR studies of multi-domain protein complexes provide unique insight into their molecular interactio...
A significant number of proteins possess sizable intrinsically disordered regions (IDRs). Due to the...
We are set to utilize sortase enzymes to engineer segmentally labeled (15N, 13C) fragments into intr...
Segmental isotope labelling enables the NMR study of an individual domain within a multidomain prote...
Introducing biophysical labels into specific regions of large and dynamic multidomain proteins great...
The physiological role of proteins is frequently linked to interactions with non-protein ligands or ...
The study of protein structure, dynamics and function by NMR spectroscopy commonly requires samples ...
In the last 15years substantial advances have been made to place isotope labels in native and glycos...
The size of macromolecular structures that can be solved by nuclear magnetic resonance (NMR) spectro...
International audienceNuclear magnetic resonance (NMR) studies of large biomolecular machines and hi...
Isotopic labeling is widely used in various fields like proteomics, metabolomics, fluxomics, as well...
Isotope labelling is a very powerful tool in NMR studies of proteins and has been employed in variou...
We report a cost efficient approach for amino-acid-type selective isotope labeling of proteins expre...
Selective isotope labeling is central in NMR experiments and often allows to push the limits on the ...