In-cell NMR allows characterizing the folding state of a protein as well as posttranslational events at molecular level, in the cellular context. Here, the initial maturation steps of human copper, zinc superoxide dismutase 1 are characterized in the E. coli cytoplasm by in-cell NMR: from the apo protein, which is partially unfolded, to the zinc binding which causes its final quaternary structure. The protein selectively binds only one zinc ion, whereas in vitro also the copper site binds a non-physiological zinc ion. However, no intramolecular disulfide bridge formation occurs, nor copper uptake, suggesting the need of a specific chaperone for those purposes
The redox properties of cellular environments are critical to many functional processes, and are str...
In-cell NMR is a powerful technique to investigate proteins in living human cells at atomic resoluti...
The reaction of the Cu,Co derivative of bovine Cu,Zn superoxide dismutase with phenylglyoxal or buta...
In-cell NMR allows characterizing the folding state of a protein as well as posttranslational events...
We use NMR directly in live human cells to describe the complete post-translational maturation proce...
We use NMR directly in live human cells to describe the complete post-translational maturation proce...
An integrated approach which combines in-cell NMR spectroscopy with optical and X-ray fluorescence m...
The direct protein expression approach described in Chapter 4 is ideally suited for observing cellul...
Cellular structural biology methods are needed to characterize biological processes at atomic resolu...
The unfolding and refolding of a monomeric mutant of copper-zinc superoxide dismutase was investigat...
AbstractThe active site of the Cu,Zn superoxide dismutase from Escherichia coli in the oxidized Cu(I...
The stability and structural properties of the metalloprotein superoxide dismutase 1 (SOD1) are foun...
Many eukaryotic proteins exert their physiological function in specific cellular compartments. Prote...
The active site of the Cu,Zn superoxide dismutase from Escherichia coli in the oxidized Cu(II) state...
AbstractMany eukaryotic proteins exert their physiological function in specific cellular compartment...
The redox properties of cellular environments are critical to many functional processes, and are str...
In-cell NMR is a powerful technique to investigate proteins in living human cells at atomic resoluti...
The reaction of the Cu,Co derivative of bovine Cu,Zn superoxide dismutase with phenylglyoxal or buta...
In-cell NMR allows characterizing the folding state of a protein as well as posttranslational events...
We use NMR directly in live human cells to describe the complete post-translational maturation proce...
We use NMR directly in live human cells to describe the complete post-translational maturation proce...
An integrated approach which combines in-cell NMR spectroscopy with optical and X-ray fluorescence m...
The direct protein expression approach described in Chapter 4 is ideally suited for observing cellul...
Cellular structural biology methods are needed to characterize biological processes at atomic resolu...
The unfolding and refolding of a monomeric mutant of copper-zinc superoxide dismutase was investigat...
AbstractThe active site of the Cu,Zn superoxide dismutase from Escherichia coli in the oxidized Cu(I...
The stability and structural properties of the metalloprotein superoxide dismutase 1 (SOD1) are foun...
Many eukaryotic proteins exert their physiological function in specific cellular compartments. Prote...
The active site of the Cu,Zn superoxide dismutase from Escherichia coli in the oxidized Cu(II) state...
AbstractMany eukaryotic proteins exert their physiological function in specific cellular compartment...
The redox properties of cellular environments are critical to many functional processes, and are str...
In-cell NMR is a powerful technique to investigate proteins in living human cells at atomic resoluti...
The reaction of the Cu,Co derivative of bovine Cu,Zn superoxide dismutase with phenylglyoxal or buta...