In-cell NMR spectroscopy is a unique tool for characterizing biological macromolecules in their physiological environment at atomic resolution. Recent progress in NMR instruments and sample preparation methods allows functional processes, such as metal uptake, disulfide-bond formation and protein folding, to be analyzed by NMR in living, cultured human cells. This protocol describes the necessary steps to overexpress one or more proteins of interest inside human embryonic kidney 293T (HEK293T) cells, and it explains how to set up in-cell NMR experiments. The cDNA is transiently transfected as a complex with a cationic polymer (DNA:PEI (polyethylenimine)), and protein expression is carried on for 2-3 d, after which the NMR sample is prepared...
In-cell NMR can investigate protein conformational changes at atomic resolution, such as those chang...
In-cell NMR is a powerful technique to investigate proteins in living human cells at atomic resoluti...
In-cell nuclear magnetic resonance (NMR) spectroscopy offers the possibility to study proteins and o...
In-cell NMR spectroscopy is a unique tool for characterizing biological macromolecules in their phys...
Cellular structural biology methods are needed to characterize biological processes at atomic resolu...
Conventional structural and chemical biology approaches are applied to macromolecules extrapolated f...
A detailed knowledge of the complex processes that make cells and organisms alive is fundamental in ...
Direct protein expression has been developed for in-cell NMR applications in several types of eukary...
In-cell NMR is a unique approach to observe the structural and dynamic properties of biological macr...
Classical structural biology approaches allow structural characterization of biological macromolecul...
In-cell NMR, i.e., NMR spectroscopy applied to studying specific macromolecules within living cells,...
Classical structural biology approaches allow structural characterization of biological macromolecul...
In-cell nuclear magnetic resonance (NMR) is a method to provide the structural information of a targ...
The inside of the cell is a complex environment that is difficult to simulate when studying proteins...
In-cell nuclear magnetic resonance spectroscopy is a tool for studying proteins under physiologicall...
In-cell NMR can investigate protein conformational changes at atomic resolution, such as those chang...
In-cell NMR is a powerful technique to investigate proteins in living human cells at atomic resoluti...
In-cell nuclear magnetic resonance (NMR) spectroscopy offers the possibility to study proteins and o...
In-cell NMR spectroscopy is a unique tool for characterizing biological macromolecules in their phys...
Cellular structural biology methods are needed to characterize biological processes at atomic resolu...
Conventional structural and chemical biology approaches are applied to macromolecules extrapolated f...
A detailed knowledge of the complex processes that make cells and organisms alive is fundamental in ...
Direct protein expression has been developed for in-cell NMR applications in several types of eukary...
In-cell NMR is a unique approach to observe the structural and dynamic properties of biological macr...
Classical structural biology approaches allow structural characterization of biological macromolecul...
In-cell NMR, i.e., NMR spectroscopy applied to studying specific macromolecules within living cells,...
Classical structural biology approaches allow structural characterization of biological macromolecul...
In-cell nuclear magnetic resonance (NMR) is a method to provide the structural information of a targ...
The inside of the cell is a complex environment that is difficult to simulate when studying proteins...
In-cell nuclear magnetic resonance spectroscopy is a tool for studying proteins under physiologicall...
In-cell NMR can investigate protein conformational changes at atomic resolution, such as those chang...
In-cell NMR is a powerful technique to investigate proteins in living human cells at atomic resoluti...
In-cell nuclear magnetic resonance (NMR) spectroscopy offers the possibility to study proteins and o...